'Analysis for EMI/RFI Mapping of Auxiliary Electric ...EQUIPMENT ROOM EMI/RFI MAPPING OVERVIEW 3.0...
Transcript of 'Analysis for EMI/RFI Mapping of Auxiliary Electric ...EQUIPMENT ROOM EMI/RFI MAPPING OVERVIEW 3.0...
ENCLOSURE
ANALYSIS FOR EMI/RFI MAPPINGOF
AUXILIARY ELECTRICEQUIPMENT ROOM
FORTENNESSEE VALLEY AUTHORITY'S
WATTS BAR NUCLEAR PLANTUNIT 1
PREPARED BY: WESTINGHOUSE ELECTRIC CORPORATIONPROCESS CONTROL DIVISION200 BETA DRIVEPITTSBURGH, PA 15238-2987
9408240138 940812PDR ADOCK 05000390Ai PDR
EMI/RFI MAPPING DATA ANALYSIS OF THEAUXILIARY EQUIPMENT ROOM
FORTENNESSEE VALLEY AUTHORITY'S
WATTS BAR NUCLEAR PLANT-UNIT 1
Written By:
Reviewed By:
Approved By:
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WATTS BAR EJII/RFI TESTS TEST REPORT
ABSTRACT
The following report provides data concerning current EMI/RFIfields that exist in the Auxiliary Electric Equipment Room atWatts Bar Unit 1 and compares these fields to those generatedduring EMI/RFI type testing of the Eagle-21 Process ProtectionSystem.
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WATTS BAR EMI/REX TESTS TEST REPORT
TABLE OF CONTENTS
Section Description
TOC Table of Contents
1 Introduction
2 Eagle-21 Process Protection System InitialRFI Tests
3 Watts Bar Auxiliary Electric Equipment RoomEMI/RFI Mapping Overview
4 CE01 Test Results
5 CE03 Test Results
6 CE07 Test Results
7 REXX Test Results
8 RE01.Test Results
9. RE02/RE02.1 Test Results
'10 Theoretical Analysis of Eagle-21 Susceptibilityto 0 to 30 Mhz EMI/RFI
11 Conclusion
Appendixes
A References
B National Technical Systems (NTS) Test Report ofInstallation Electromagnetic Interference (EMI)Mapping of Auxiliary Electric Equipment RoomFor TVA's Watts Bar Station For WestinghouseElectric Corporation, Process Control Division,200 Beta Drive, Pittsburgh, PA 15238
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SECTION 1: INTRODUCTION
1.0 INTRODUCTION
This report, used in conjunction with the National Technical System(NTS) Report (Appendix B), forms the basis for the as installedEMI/RFI conditions for the Eagle-21 Process Protection System atthe Watts Bar Nuclear Plant Unit 1.
Data provided by the National Technical Systems tests, along withspecial theoretical analysis, and initial Eagle-21 EMI/RFI testdata is used to provide a margin of operation between detectedEMI/RFI fields at Watts Bar and injected EMI/RFI fields..,that maycause the system to fail trip actuation conditions.
This report uses data obtained by National Technical Systems testsperformed at the Watts Bar site from May 3 - 6, 1994. All thetests were performed in accordance with NTS procedure 31590-95M,Revision 0. The EMI test points were jointly established by NTSand TVA. At each point detectors were rotated to ensure that worstcase field strengths were detected. The test equipment used togather this data was capable of detecting emissions from 0 to 1GHz.
The references used to evaluate the data are listed in Appendix A.The actual EMI/RFI Test Report from NTS is included in Appendix B.
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SECTION 2: EAGLE-21 PROCESS PROTECTION SYSTEMINITIAL RFI TESTING
2.0 EAGLE-21 PROCESS PROTECTION SYSTEM INITIAL RFI TESTS
The Eagle-21 Process Protection System Radio Frequency Tests were
performed in an anechoic chamber at the University of Michigan in
1988. The testing was done to demonstrate system operability
before, during, and after the adverse noise conditions were
applied.
The description of the tests and the test results are contained in
WCAP-11733 Noise, Fault, Surge, and Radio Frequency Interference
Test Report for Westinghouse Eagle-21 Process Protection Upgrade
System dated June 1988. This WCAP was approved by TVA Watts Bar in
letter number W-6643 dated September 12, 1988.
2.1 INITIAL TEST RESULTS
The- initial tests performed on the Eagle-21 Process Protection
System injected radiated fields into the cabinet under test. The
fields were radiated using both vertical and horizontal polarized
antennas. The system was subjected to RFI fields of 3 V/M and 10
V/M from 20 MHz to 1 GHz.
Radiated emissions for the tests at Watts Bar are measured in
dBuV/m, dBpT, and dBuA units. The dBuV/m must be converted to the
-injected field strength of Volts/meter which was used during the
initial tests of the Eagle-21 Process Protection System. The
following formula was used to convert between the two units of
measure:
dBuV/m = 20 log (Volts/meter) / (1 uv)
Using the injected field strengths, the following dBuV/m values aredetermined from the formula:
129.54 dBuV/m = 20 log (3 V/m) / (1 uV)
140 dBuV/m = 20 log (10 V/m) / (1 uV)
At 129.54 dBuV/m, five frequencies caused Trip Output Failures
(TOF). All of these frequencies are in the 160 to 200 Mhz range.
At 140 dBuv, numerous frequencies caused TOF conditions. Figure 1
shows a simplified plot of the injected fields and the areas where
TOF conditions occurred.
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3 V/M Horizontal and Vertical polarized
TOF.............................................................
lI l l
20600400300200100
MHz
10 V/M Horzontal and Vertical polarized
TOF......................
20700600500400300200100
MHz
700
Figure 1: EAGLE-21 ERI SUSCEPTIBILITY
In light of the above data, it is critical that attention be givento the frequency spectrum and dBuv/m levels when comparing measured
fields and tested fields. For example, a measured 139 dBuV/m field
is a high level. However, when that field occurs at 600 Mhz it can
be dismissed as not affecting the operation of the Eagle-21 ProcessProtection System, because no trip outputs failed when subjected toa 140 dBuV field at 600 Mhz.
Although it appears from Figure 1 that many failures can occur inthe Eagle-21 Process Protection System over a fairly broad band of
frequencies, it should be noted that none of the fields measured at
Watts Bar are above the TOF threshold within the susceptiblefrequencies for the Eagle-21 Process Protection System.
Each Section of this report details a composite of the worst case
frequencies and their amplitude and the worst case conditions.
The RFI Tests on the Eagle-21 Process Protection System wereperformed in accordance with _SAMA Standard PMC 33.1-1978. The
entire frequency range from 20 MHz to 1 GHz was radiated at 3 V/Mand 10 V/M field strengths.
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.. . . . . . . . . .. . ........,,. ....,. . . . . .......... ,
....... ....... :
.. ... .: ...........
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'.' ........
... ..........-
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Two types of tests were performed. The first test was a modulationtest where a computer controlled the sweep of a frequency generatorthrough 40 data points per octave and 10 seconds at each point.The second test was a keying test where the frequency generator iskeyed on and off to simulate a transmitter being keyed on and off.The generator was cycled on and off at a one second interval.
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SECTION 3: WATTS BAR AUXILIARY ELECTRICEQUIPMENT ROOM EMI/RFI MAPPING OVERVIEW
3.0 EMI/RFI MAPPING OVERVIEW
The Eagle-21 Process Protection System is located within cabinetsinstalled in the Auxiliary Electric Equipment Room at the Unit 1Watts Bar Nuclear Plant.
The purpose of the EMI/RFI Map is to determine the electromagneticfields that equipment will be exposed to, as installed. At WattsBar, the Eagle-21 Process Protection System was already installedand operational at the time the mapping tests were performed.
This is the first time that EMI/RFI mapping was completed while theEagle-21 Process Protection System was installed. Other sitelocations have mapped their equipment rooms with the old protectionsystem racks before the Eagle-21 installation. Thus, the Watts BarEMI/RFI data includes radiations that may be caused by the Eagle-21Process Protection System (e.g. switching power supplies,oscillators from clocks on computer cards, etc.).
The EMI/RFI mapping data at Watts Bar was collected during HotFunctional testing of the plant. Although the plant was not atpower (Mode 0), the operating conditions of the room and equipmentwere as close to operating conditions as reasonably obtainable.
3.1 TEST PROCEDURES
NTS procedures and testing methods are in accordance withNTS/Northeast's Quality Manual and NTS/Northeast's StandardOperating Procedure N-4. These ensure that the program complieswith the applicable provisions of 10CFR, Part 21 and Part 50,Appendix B.
The tests performed at Watts Bar are two general categories. Thefirst category is conducted emissions as defined in MIL-STD-462.The second category is radiated emissions as defined in MIL-STD-462.
The following tests were performed at the Watts Bar Site:
Conducted Emissions, Method CE01, Power and Signal Leads, 30Hz to 15 KHz, Common and Differential Mode
Conducted Emissions, Method CE03, Power and Signal Leads, 15KHz to 50 MHz, Common and Differential Mode
Conducted Emissions, Method CE07, Power and Signal Leads,Switching Transients, Time Domain, Common and DifferentialMode
Radiated Emissions, Method REXX, DC Magnetic Field
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Radiated Emissions, Method RE01, 30 Hz to 50 KHz
Radiated Emissions, Method RE02, 14 KHz to 1 GHz
Radiated Emissions, Method RE02.1, Hand-Held Radio Profile
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SECTION 4: CEO i TEST RESULTS
4.0 CE01 OVERVIEW
Test CEOl is a measure of conducted radiation on both power leadsand signal leads. Several data points are measured in selectedcabinets. The cabinets selected were determined by NTS and TVApersonnel.
The first test utilizes a current probe connected around the powerfeed to the cabinet and measures the relative field strengths from30 Hz to 15 KHz in dBuA. The selected cabinets are detailed inSection 4 of the NTS Test Report in Appendix B.
The field strength-in dBuA can be converted to Peak Current by thefollowing formula:
dBuA = 20 log (peak current)/(1 uA)
.707 Peak Current = RMS Current
Because of the relationship between field strength and current, itis expected that the cabinet with the highest measured current flowwill have the highest CE01 emissions. It is also expected that 60Hz (Supply frequency) and the third and fifth harmonics of 60 Hzwill be fields detected in the test.
The second set of CE01 tests has the current probe connected on.selected signal leads in the cabinet and measures the conductedemissions from 30 to 15 KHz in dBuA. The actual signal leadstested are detailed in section 4 of the NTS test report in AppendixB.
4.1 CEO1 TEST RESULTS
The first CE01 tests were conducted on power leads in eight of thefourteen racks installed at Watts Bar. The worst case conditionswere detected in rack 1-R-5. Because different racks havedifferent levels at different frequencies, Figure 2 was developedto show a relative plot of worst case field strengths. This figuredoes not show variances (valleys between peaks), but assumes aworst case smooth transition between all the peaks.
Figure 3 shows the actual detected plots for Rack 1-R-5. From theplot it can be determined, by using the above formula, that the RMSvalue for current in the power lead is about 7 Amps RMS.
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Figure 2: CE01 COMPOSITE WORST CASE CONDUCTED EMISSIONS
Figure 2 was generated from data taken from a current probe on the
ac input power leads for the designated cubicles. The data is from
on a narrow band measurement.
Figure 3 is a plot from measurements of the ac power leads for Rack
1-R-5. This plot differs from the composite in Figure 2 because
figure 2 is a, plot of the peaks of Figure 3. This figure only
shows a continuous plot of peak points along the detected spectrum,
while Figure 3 shows the complete spectrum.
The CE01 test measures the field strengths between 30 Hz and 15
KHz. These levels can be compared to the susceptibility of the
circuit boards, cables, and digital circuitry to these low
frequency fields.
Section 10 of this report shows the susceptibility of the Eagle-21
System to the low frequency spectrum as demonstrated by the
theoretical analysis referenced there.
All the detected fields at Watts Bar are well below the calculated
threshold-where-outputs may be affected.
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150
DbUA
.001 .01 .015.0001
MHz
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Figure 3: RACK 1-R-5 ACTUAL CE01 DETECTED EMISSIONS
4.2 CEO1 CONDUCTED EMISSIONS - SIGNAL LEADS
The second part of the CE01 test is to measure the conducted field:strengths on predetermined signal leads. Section 4 of the NTSreport (Appendix B) details those signal leads tested. Twelve ofthe fourteen racks had at least one set of signal leads tested.
All of the measured signal lead emissions are well below thesusceptibility threshold as measured in the power line test fromthe first part of CE01.
Because the power line measurements are acceptable and are athigher measured levels, the signal line tested emissions are alsoacceptable.
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5 May 1994 I9B:K5BNAT1 ?NAL TECHNICRL SYSTEMShp EHIS ION LEVEL[ d uRl PERK
Frpirvwr'y rMwzi a
TEST REPORT
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dBuA150
110
d BuA
90
70
.0001
MHz
Figure 4: CE01 SIGNAL LEAD WORST CASE EMISSIONS
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SECTION 5: CE03 TEST RESULTS
5.0 CE03 TEST OVERVIEW
The CE03 tests measured the same points as the CE01. The
difference is the frequency spectrum of the tested emissions.
The frequency spectrum is 15 KHz to 50 MHz. Both narrowband and
broadband measurements were made.
When comparing CE01 to CE03, it appears that CE03 measurements
shift. CE01 15 KHz emissions are in the 70 dBuA range. For CE03
tests, the 15 Khz measurements for narrowband is from 15 to 90 dBuA
and ,the broadband.measurements are-in the 100 to 150 dBuA range.
This apparent shift at 15 Khz is due to the actual bandwidth being
measured. The CE01 uses 1.5 Khz as a narrowband bandwidth. The
CE03 test uses 3 KHz as the narrowband bandwidth. This difference
in bandwidth causes the apparent shift in the measured signal. If
the actual field being measured contained only a continuous wave
(CW) transmission, there would be no shift in the measured field
strength. As installed in the plant, the measured fields contain
many frequencies causing the apparent shift in signal strength.
5.1 CE03 TEST RESULTS
The broadband data show the strongest detected fields in Racks 1-R-
5, l-R-9, 1-R-11 and 1-R-12. These four racks are virtually equal
in measured field strengths.
Figure 5 is a composite of all the worst case peak detected
emissions. As before, this plot assumes a continuous level between
plotted points.Using the results of thetheoretical analysis
dBA from section 10, the160 worst case detected
signals are all well*S0 within acceptable
margins.110
There should be noeffect of conductedemissions in the 15 KHz
70 to 50 MHz range.
. 1 10 -0 Figure 6 shows theactual measured plot for
MHz 1-R-5 power lead
connections.
Figure 5: CE03 WORST CASE COMPOSITESIGNALS
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Rack 5 was chosen because this plot shows the one anomaly detectedin the test data.
A transient of 152 dBuA at about 1.8 MHz occurred 3.5 minutes afterthe start of the measurement on this rack. The origin of thistransient was not determined. This transient does not appear onany of the radiated emission tests or CE03 signal cable tests. Itappears only one time on the power lead test for Rack 5.
This transient of 152 dBuA results in approximately 28.15 Amps RMScurrent. From the analysis of section 10, the lowest digitalcircuitry susceptibility at 1.8 Mhz is about 157 dBuA. Althoughless than the worst case expected susceptibility, it is not morethan 6 dBuA less.
However, the expectedsusceptibility pointswere determined byassuming the cable wasadjacent to the circuit hp MTJ21,', CI¶ SYST 3 ay 1994 iIY2i
boards, no shielding was i5I -Sn m 1c PMT dCmused, and board design | Vj.SEY-JLJU STV iTTS MUR i 19E9-RC W
had no effect on PH111 I l QX No. I X 5
transient limitation. 1In the actual system, IJHshielding on cables is i I I i
used, no signal cables i !are within their own i A !,ii
conductor radius of the I T-board, and inherent I iboard design does limitthe effect of transients ';
because of filtersinstalled on the board _I I
with a 3dB point of 0.5 FREUENCY ndZI
Hz. Due to these designfactors, the extra 1dBuA can be obtained tomeet the 6 dBuA margin.
Figure 6: CE03 Rack 1-R-5 ACTUAL
5.2 CE03 SIGNAL LEAD TEST RESULTS
Like CE01, CE03 also measures the conducted field emissions onselected signal leads in various racks. All of these detectedfields are measured for narrowband and broadband emissions.
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TEST REPORTWATTS BA.R EXI/RF1 TESTS
WATEMI/RFI 12
All of the measured emissions are well below the detected powerlead test levels. Therefore, these emissions will not effectoperation of the Eagle-21 Process Protection System at Watts Bar.
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TEST RErPORTWATTS BAR EMIIRFI TESTS
WATEMI/RFI 1 3
SECTION 6: CEO7 TEST RESULTS
6.0 CE07 TEST OVERVIEW
Test CE07 measures the time that transients from equipment cyclesaffect the power feeds. A current probe is connected to the acpower feed in selected cabinets. All of the measurements taken atWatts Bar were done at a Steady State condition. No outputs orswitching devices sharing the instrumentation bus were switchedduring this test.
6.1 CEO7 TEST RESULTS
All of the measured results are shown in the NTS Test Reportlocated in,Appendix-B. The graphical results shown in the reportwere obtained with a storage oscilloscope connected to a currentprobe on the power leads.
The major contributors to the measured levels shown on this displayare the switching power supplies used in the Eagle-21 ProcessProtection System. The wave shape and frequency are withinexpected levels as measured in the Qualification Units located atthe Westinghouse Process Control Division.
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TEST RESPORTWATTS BAR PHI 1RF1 TESTS
WATEMI/RFI 14
SECTION 7: REXX TEST RESULTS
7.0 REXX TEST OVERVIEW
The RE01 test is the first of the Radiated Emissions tests. The
purpose of RE01 is to measure the DC Magnetic Fields around the
racks in the Auxiliary Electric Equipment Room. Measurements are
in Gauss as detected by a Magnetic Instrumentation Gaussmeter. All
of these tests are in accordance with MIL-STD-1399, Section 070,
Part 1.
7.1 REXX TEST.RESULTS
The maximum detected DC field was located in the Right Rear. of Rack
l-R-9. This level was 4.0 Gauss. As a point of reference the
highest levels were measured at the front and rear of Racks 1-R-9,
1-R-10, and 1-R-11. These three racks are mounted adjacent to eachother.
All of the measured levels dropped to less than 0.5 Gauss within
2.0 inches of the Racks being tested.
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WATTS BAR EMI/RFI TESTS TEST REPORT
SECTION 8: RE01 TEST RESULTS
8.0 RE0l TEST OVERVIEW
The RE0l Test is a measurement of the radiated field between 30 Hzand 50 KHz. A loop antenna was utilized and rotated through itsaxis until the worst case levels were detected. The test dataacquisition system did a sweep between 30 Hz and 50 KHz to recordthe radiated emissions.
8.1 RE0l TEST RESULTS
The results of the tests are graphically displayed in the NTS TestReport in Appendix B and are recorded in dBpT (dB PicoTesla). Thisprovides a measurement of'the detected magnetic fields around theEagle-21 Process Protection System equipment. Figure 7 shows a plotof the composite worst case field strengths.
The worst case Racks d4T
were Racks l-R-9 Rearand l-R-28 Side. The 10highest emission was 110 1' ,dBpT at 180 Hz. Using
data from Section 10 and V0
c o n v e r t i n g t opicoTeslas, this point d8T
70is about 3.1 X 10E5picoTeslas. At the 180Hz location, thisprovides approximatelysix decades of margin 3.xE5 .1 O .01 .
from the worst casepredicted levels. MH
The twospikes at.l8 KHz Figure 7: RE01 COMPOSITE WORST CASEand 36 kHz are being EMISSIONSradiated from the MMICart when the CRT isenergized. Even at these levels, there is between three and fourdecades margin between the measured levels and the worst caseexpected levels. It should be noted that the MMI CRT is energizedonly during system testing. In fact, if the plant changesconditions during testing, (e.g. Bistables trip for reasons otherthan testing actuation) testing is administratively terminated andthe system returned to normal operations.
Ac Radiated Magnetic Fields will not effect operation of the Eagle-21 System at Watts Bar.
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SECTION 9: RE02/RE02. 1 TEST RESULTS
9.0 RE02/RE02.1 TEST OVERVIEW
The RE02 tests are a measure of the radiated fields between 14 KHz
and 1 GHz. The field strengths are measured in dBuV/m and show the
relative field strength of the entire frequency spectrum in the
area under test. The fields are measured in both narrowband and
broadband modes.
The RE02.1 portion of the test is specific to the hand-held radio
transmitters and repeater stations used at the Watts Bar Plant.
The Nuclear Regulatory Commission issued Information notice IE-83-
83 concerning the use of portable radio transmitters inside nuclear
power plants. This. notice recommends that portable radio use be
restricted for use in Instrumentation Rooms due to reported cases
of interference caused by their use.
At Watts Bar the Auxiliary Electric Equipment Room is designated as
a restricted area for radio use. However, radios are permitted
just outside the room. The RE02.1 test keys these radios and
measures the field strength of the signal inside the Auxiliary
Electric Equipment Room with the door closed.
9.1 RE02 TEST RESULTS
The broadband spectrum measurements provide the largest field
strength. Figure 8 shows a composite of the worst case emissions.
All of the worst case vbconditions are wellwithin the 6 dB margin 146
f or acceptableoperation.
The spikes in the 100 to200 MHz range are the
r a d i o repeatertransmitters on the
turbine deck and otherhand-held radios beingused in the plant.These signals were MH 1 M tz 100 lowdetected in theAuxiliary ElectricEquipment Room. Figure 8: RE02 COMPOSITE WORST CASE
Even at the worst caselevel of 110 dBuV/m,there is nearly"20 dB-margin between where injected levels caused
Trip failures,as defined in WCAP-11733, and the detected levels at
Watts Bar.
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TEST REPORTWATTS BAR EMI1RF1 TESTS
17WATEMI/RFI
The 130 dBuV/m injected levels caused trips at only specificfrequencies (See Figure 1). None of the frequencies used at WattsBar are in the range that caused trip output failures in theQualification test referenced in WCAP-11733.
9.2 RE02.1 TEST RESULTS
Four different hand-held radio transmitter frequencies were keyedat various locations outside the Auxiliary Electric Equipment Room.The field strengths for these specific carrier frequencies weremeasured within the room. The receiving antenna was rotatedthrough the X, Y, and Z axis to detect the worst case conditions.
The worst case conditions were 1 m from the stairway door when a
HT-1000 portable radio at 172.^1 MHz was keyed. This test conditionwas detected at about 117 dBuV/m field strength within the room.
This detected field strength still allows a 13 dB margin betweenpotential frequency disruption and actual detected field strength.Only six frequencies caused trip failures at the 130 dB injectionlevel. The actual Watts Bar frequency detected at this high levelis not one-of the six Trip Output Failure frequencies.
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SECTION 10: THEORETICAL ANALYSIS OF EAGLE-21SUSCEPTIBILITY TO 0 TO 30 MHZ EMI/RFI
10.0 ANALYSIS OVERVIEW
In 1992, in response to inquiries regarding the Eagle-21 ProcessProtection System's ability to withstand EMI/RFI fields between 0and 30 KHz, an analysis was performed delineating susceptibilitymargins in this frequency range. A report, STC REPORT 92-lSVO-EMIRFI-R1 was developed showing the results of this analysis.
This report concluded that Eagle-21 was not susceptible to 0 to 30Mhz EMI/RFI fields. The report assumed worst case conditions.Some of the conditions assumed were:
* No shielding to limit interference.* Maximum conductor lengths and loop areas* No common mode signal rejection* No filtering on system circuits* No design practices that would limit interference
10.1 TEST REPORT DATA
The report focused-three potential areas of susceptibility. Thefirst was the digital electronic circuits. It was assumed that aconductor causing interference was located such that the maximum
* afield was coupled into the circuits. The second was susceptibilityof the circuit board to magnetic interference. The third was thecabinet cables susceptibility to magnetic interference.
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19 TDH-060994
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Figure 9: DIGITALCURRENT CONDUCTOR.
ELECTRONICS SUSCEPTIBILITY TO NEARBY
Figure 9 shows the relationship of conductor current in RMS Amps tothe height of the conductor. Although four heights were used onlythe 1 cm height is plotted. Since it is the closest conductor, itprovides the worst case most limiting conditions.
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AMPS(RMS
1 OE91~ 0 8. . ... ... . .. . . ...... .. ... ..
1OE87 ...... . . . . .
10E7 . . . . . . . .. .
1 OE6 ..... .
1OE5 .... .
1OE4 ... . .
10E3 h-lcom -
lOE2 .m10O E .............. ........ .... ............ :. '....... .. . . . . .
Amps1OE-1 .2.. ..
1 OE-3
1 OE-41OE-5 ...:.. .
1HOER. ...1OE-7
10E2 10E3 10E4 10ES 10E6 10E7 10E8 10E9Hz
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Figure 10: WATTS BAR CE01 AND CE03 EMI/RFI PLOTS
Figure 10 places the measured fields from CE01 and CE03 onto the
susceptibility plot. It can be seen from the plot that even the
worst case plots are well within the predicted worst case failure
conditions.
It should be recalled that the apparent shift in amplitude at the
15 KHz is the result of a change in the bandwidth being measured
between the CE01 and the CE03 test.
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AMPS(RMS
1 OE9
10E8
1 OE7
10E6
1 OE5
1 OE4
10E3
1 0E210
Amps 1
1bE-1
IOE-2
1 OE-3
1OE-4
I E-5
10E-6
1OE-7
10E2 10E3 10E4 1OE5 1OE6 10E7 10E8 1OE9Hz
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Figure 11: CIRCUIT BOARD SUSCEPTIBILITY
Figure 11 shows the Board Susceptibility to magnetic interferenceand the detected fields at the Watts Bar Auxiliary Equipment Room.
WATEMI/RFI
BETA (PICO TESLAS)
10E16
... .......... ......... .. . ........
l0E 14 .. . .. t. .........
.BOARD SUSCEPTIBILITY....
10E12 .
1 0 E 10 . .. . .......... . ......
BETA10E8
1 E6 ..... ...
.,, ....... .A. . ........ . ... ..... ........
10E4
10E2 \
10E2 10E3 10E4 10E5 10E6 10E7 10E8 10E9
Hz
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Figure 12:;CABLE SUSCEPTIBILITY
Figure 12 shows the Cable Susceptibility and the fields detected atthe Watts Bar Auxiliary Electric Equipment Room.
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BETA (PICO TESLAS)
1OE16 .. . . ..:.
10E14 . .. . . . . .
. ...... ... ... . ...
l O E 1 2 .......................
10E12 .i . . . .... .
BETA CABLE SUSCEPTIBILIT(1 OE8
.... .. . ..A... ..... ............ ....10E6
10OE4
.. \. ....... . ..... .. .. .. .. ... . ..
10E2 ...
1OE2 1OE3 1OE4 10E5 10E6 1OE7 10E8 10E9
Hz
- j
TEST REPORTWATTS BAR EMIIRFI TESTS
WATEMI/RFI 2 3
WATTS BAR EMI/RF TESTS TEST REPORT
SECTION 11: CONCLUSIONS
11.0 CONCLUSIONS
Based on the data from the NTS Report and STC REPORT 92-1SVO-
EMIRFI-RlSTC, it is the conclusion of Westinghouse Electric
Corporation, Process Control Division that the Eagle-21 Process
Protection System in Watts Bar Nuclear Plant Unit 1 meets current
EMI/RFI standards and will not be adversely effected by EMI/RFI as
installed.
TDH-0609942 4WATEMI/RFI
WATTS BAR EMIIRFI TESTS
APPENDIX A: REFERENCES
STC REPORT 92-lSVO-EMIRFI-RlSTC, Theoretical Analysis of EMIIRFISusceptibility of the Digital Electronics of the Eagle-21 Equipmentto be Installed at Zion Unit #1. Westinghouse ElectricCorporation, March 12, 1992.
Test Report 31590-95M, Revision 0. Test Report For Point OfInstallation Electromagnetic Interference (EMI) Mapping OfAuxiliary Electric Equipment Room For TVA's Watts Bar Station ForWestinghouse Electric Corporation Process: Control. Division,. -200...Beta Drive Pit.tsburgh,_.PA.A15238, National Technical Services, May5, 1994.
Test Report 60012-93M, Test Report For Electromagnetic Interference(EMI) Mapping Of Auxiliary Electric Equipment Room, Zion Station,Unit #1, National Technical Services, March 9, 1992.
- FundamentalsOf Electric Circuits. David A. Bell. Reston PublishingCompany. 1984.
WCAP-11733 Noise, Fault, Surge, and Radio Frequency InterferenceTest Report for Westinghouse Eagle-21 Process Protection UpgradeSystem. Westinghouse Power Systems. June 1988.
WATEMI/RFI
TEST REPORT
2 5 TDH-060994
WATTS BAR EMI/REX TESTS TEST REPORT
APPENDIX B: National Technical Systems (NTS)Test Report of
Installation Electromagnetic Interference(EMI) Mapping of AuxiliaryElectric Equipment Room
For TVA's Watts Bar StationFor
Westinghouse Electric Corporation,Process Control Division,
200 Beta Drive, Pittsburgh, PA 15238
TDH-060994
TEST REFPORTWATTS BAR EKI1RFI TESTS
WATEMI /RFI 2 6
NATIONAL TECHNICAL SYSTEMSTRANSDUCER TABLETransducer Title : LOG PERIODIC S/N 714
* Sign of Trans. : PLUS- Freq Interpolat. : LOG
Number of Points : 37
Point
123456789
10111213141516171819202122232425262728293031323334353637
Trans FactorFrequency (MHz)---------------
290325350375400425450475500525550575600625650675700725750775800825850875900925950975100011001200130014001500160017001800
*- X-[ -- X
16.5171717.31717.418.418.518.919.119.820.420.920.921.42120.821.221.222.222.723.424.123.723.523.4242424.625.925.827.527.329.931.230. 132. 8
/#97 National Technical Systems
TEST REPORT FOR POINT OFINSTALLATION ELECTROMAGNETICINTERFERENCE (EMD MAPPING OF
AUXILIARY ELECTRIC EQUIPMENT ROOM FORTVA'S WATTS BAR STATION
FOR
WESTINGHOUSE ELECTRIC CORPORATIONPROCESS CONTROL DIVISION
r
J
/2z9-Test Report 31590-95MWRevision 0
TEST REPORT FOR POINT OFINSTALLATION ELECTROMAGNETICINTERFERENCE (EMI) MAPPING OF
AUXILIARY ELECTRIC EQUIPMENT ROOM FORTVA'S WATTS BAR STATION
FOR
WESTINGHOUSE ELECTRIC CORPORATIONPROCESS CONTROL DIVISION
200 BETA DRIVEPITTSBURGH, PA 15238
IPurchase Order No. PA 19288Interdivision MJO No. 60429-95N
Prepared by:
IndependentReviewer:
Reviewed andApproved by:
Martin J. Metcg( EMC Manage VLPApoe ignatoryNTS/Northeast533 Main Street, Acton, MA 01720
NTS/Northeast
IL4. rapManager, Nuclear Services
Date 5- _ / -Y
Date 5_-31-__ f
Date /3 j Iq
MJM/sml/3 159095M. WES
0- SECTION
1.0 PROGRAM SCOPE
2.0 APPLICABLE DOCUMENTS
3.0 GENERAL REQUIREMENTS
4.0 APPLICABLE FIGURES
5.0 TEST REQUIREMENTS
6.0 TEST PROCEDURE
7.0 TEST EQUIPMENT LIST
8.0 ANTENNA/PROBE CORRECTION FACTORS
Report No. 31590-95M
Page No. i
TABLE OF CONTENTS
PAGE NOS.
1-1
2-1 to 2-2
3-1
4-1 to 4-6
5-1 to 5-4
6-1 to 6-168
7-1 to 7-2
8-1 to 8-5
Z2�9�F
1.0 PROGRAM SCOPE
This test report presents the data collected and describes the methods used for point of
installation electromagnetic interference mapping of the Auxiliary Electric Equipment Room at
TVA's Watts Bar Nuclear Power Plant. Testing was performed in accordance with NTS Test
Procedure No. 31590-95M, Revision 0.
1.1 Mapping - Point of Installation
The Westinghouse Eagle 21 Reactor Protection System (RPS) has had susceptibility
testing performed on it. The EMI point of installation mapping presents the actual EMI
profile the RPS system is exposed to, as installed, and will be used to determine whether
the susceptibility testing was performed at the appropriate levels.
The EMI point of installation mapping consisted of test points whose locations were
determined by agreement between NTS and TVA personnel to insure that the actual Worst
Case EMI Noise Profile for electric and magnetic field emissions was mapped. At each test
point, the field strengths were measured in the X, Y, and Z axes and recorded in the
orientation that presented the worst case emissions level. The frequency range for this
testing was from DC to 1 GHZ.
After test completion, verification of a 6 db margin (minimum) between the RPS
System susceptibility test levels and the Auxiliary Electric Equipment Rooms' Point of
Installation Emissions Noise Profile should be performed. If a determination is made that
the 6 db (minimum) margin does not exist, further susceptibility testing should be performed
on the RPS System, at adequate levels to insure that a 6 db margin exists.
Report No. 31590-95M
Page No. 1-1
2.0 APPLICABLE DOCUMENTS
IEC Standard 801-3 International Electrotechnical Commission IEC Standard,Edition 1, dated 1984
SAMA PMC33.1-1978 Electromagnetic Susceptibility of Process ControlInstrumentation, Scientific Apparatus Makers Association
MIL-STD-461C Electromagnetic Emission and Susceptibility Requirements forthe Control of Electromagnetic Interference, dated 4 August1986
MIL-STD-462 Electromagnetic Interference Characteristics Measurement of,dated 31 July 1967
MIL-STD-463 Definitions and System of Units, Electromagnetic Interferenceand Electromagnetic Compatibility Technology.
MIL-STD-45662A Calibration Systems Requirements dated 1 August 1988
DI-EMCS-80201 Electromagnetic Interference Test Report
MIL-STD-1399 Interface Standard for Shipboard Systems, DC MagneticSection 070, Part 1 Field Environment, dated 26 February 1979
Code of Federal Regulations, Title 10, Part 50, Appendix B,Quality Assurance Criteria for Nuclear Power Plants and FuelReprocessing Plants
Code of Federal Regulations, Title 10, Part 21, Reporting ofDefects and Noncompliance
NTS/Northeast Quality Manual, Revision 3, dated 14 July1992
IE Information Use of Portable Radio Transmitters Inside NuclearNo. 83-83 Plants
NTS Interdivision Form, dated 08 March 1994
Westinghouse Document Purchase Order, EMI Mapping, dated 07 February 1994No. PA19288
Report No. 31590-95M
Page No. 2-1
2.0 APPLICABLE DOCUMENTS (continued)
NTS Procedure No.3 1590-95M
Test Procedure for Point of Installation (EMI) Mapping ofAuxiliary Electric Equipment Room for TVA's Watts BarStation, Revision 0, dated 25 April 1994
Report No. 31590-95M
Page No. 2-2
3.0 GENERAL TEST REQUIREMENTS
3.1 Test Subcontractors
All testing was performed by NTS personnel.
3.2 Plant Operations Interface and Site Work Controls
Manipulation or operation of plant equipment was performed in accordance with
TVA approved procedures by TVA personnel. All connections of test equipment probes to
operable plant components or wiring were made by TVA personnel. The TVA test
coordinator obtained plant operation permission prior to connection of test equipment
probes.
Report No. 31590-95M
Page No. 3-1
. 4.0 APPLICABLE FIGURES
4.1 Description
The Auxiliary Electric Equipment Room is located at TVA's Watts Bar Nuclear
Plant, in Spring City, Tennessee. The equipment room's physical layout is depicted in
Figure 4-1 and shows all permanent equipment. The use of hand-held radios is prohibited
within the equipment room, but their use is allowed outside the equipment room and some
amount of this energy penetrates into the equipment room and is considered as part of the
Auxiliary Electric Equipment Room environment.
4.2 Identification
The Auxiliary Electric Equipment room equipment is listed in Figure 4-2.
4.3 Operation
0 The Auxiliary Electric Equipment Room was in operation on the test dates of May
3 through 6, 1994 during Hot Functional Testing (HFT) which was occurring during this
period.
Report No. 31590-95M
Page No. 4-1
_b?�Z47
i , -
- i'*!Rt- -,1 - - I I9 I
2 I - -I a I, - I - I., tj .7 ; - ; i ,, 2
t i -1 7.( - - I - A - - --
-. ', - -,I
9.' ___ I.
.~~- t-4 w
!J.I~L~ - -s LLLL - - |
- I
FIGURE 4-1: AUXILIARY ELECTRIC EQUIPMENT ROOM PHYSICAL LAYOUT
Report No. 31590-95M
Page No. 4-2
1- .1: 1-~ r Ii
3 1IS I2< 1
7-. -
-A_, 7 I
. , ffJQr I z
29 i qz i~
*1l I S so
FIGURE 4-2: AUXILIARY ELECTRIC EQUIPMENT ROOMEQUIPMENT LIST IDENTIFICATION
The following EMI noise sources were tested for their impact on the Auxiliary Electric EquipmentRoom environment:
A) Radios
Frequency (MHz)Output Power
(Watts) Antenna Location
172.025173.050171.3875173.7625164.25(Fl)172. 1(F2)162.025(F1)164.25(F2)
505050506666
Repeater on Turbine Floor*Repeater on Turbine Floor*Repeater on Turbine Floor*Repeater on Turbine Floor*Motorola HT1000 Hand HeldMotorola HT1000 Hand HeldMidland 70-150B Hand HeldMidland 70-1SOB Hand Held
*These repeaters were evaluated during RE02 and during RE02.1 when hand held radios wereintentionally keyed.
Report No. 31590-95M
Page No. 4-3
FIGURE 4-2: AUXILIARY ELECTRIC EQUIPMENT ROOMEQUIPMENT LIST IDENTIFICATION
B) Equipment within the Point-of-Installation cabinets:
Protection Set IProtection Set IIProtection Set IIIProtection Set IV
I-R-1 thru 1-R-4I-R-5 thru I-R-81-R-9 thru 1-R-l1I-R-12, 1-R-13, and 1-R-28
Report No. 31590-95M
Page No. 4-4
FIGURE 4-2: AUXILIARY ELECTRIC EQUIPMENT ROOMEQUIPMENT LIST IDENTIFICATION
C) The following power leads/cables were measured during(CEOl/CE03/CE07) portion of the test program:
the conducted emissions
CABINET NO. TERMINAL POINTS TVA CABLE NO. VITAL INVERTERTVA DWG. NO. VITAL AC BOARDw DWG. NO. TVA DWG. NO.
1-R-1 TB-1X, 5 & 6 IPV16D 1-I45N1661-1 1-BD-235-1-D5D63347 SHT. 3 1-45W706-1
1-R-3 TB-3X,5 & 6 IPV825D 1-I45N1661-3 1 -BD-235- 1 -D5D63347 SHT. 7 1-45W706-1
1-R-5 TB-5X, 5 & 6 1PV135E 1-II45N1662-1 1 -BD-235-2-E5D63347 SH. 11 1-45W706-2
1-R-7 TB-7X, 5 & 6 IPV826E 1-II45N1662-3 1 -BD-235-2-E5D63347 SHT. 15 1-45W706-2
1-R-9 TB-9X, 5 & 6 1PV255F 1-III45N1663-1 1 -BD-235-3-F5D63347 SHT. 19 1-45W706-3
1-R-11 TB-11X, 5 & 6 1PV827F 1-11I45N1663-3 1 -BD-235-3-F5D63347 SHT.23 1-45W706-4
1-R-12 TB-12X, 5 & 6 IPV374G 1-IV45N1664-1 1-BD-235-4-G5D63347 SHT.25 1-45W706-4
1-R-28 TB-28X, 5 & 6 1PV828G 1-IV45N1664-3 1 -BD-235-4-G5D63347 SHT.29 1-45W706-4
D) The following signal leads/cables were during the conducted emissions (CE03/CE07) portionof the test program (see next page):
E) The largest loads in the area are the Plant Air Compressors, which are immediatelyadjacent to the Auxiliary Electric Equipment Room. The compressors were cyclingnormally during all testing.
Report No. 31590-95M
Page No. 4-5
AI-7CABINET NO. TERMINAL POINTS IDENTIFICATION
I-R-1 TB"A" 10 & 11 Flow Sensor (containment)TB"A" 4 & 5 Pressure Sensor (containment)TB"A" 1 & 2 Pressurizer Pressure Sensor (containment)
I1-R-2 TB"C" 7 & 8 Pressure Transducer (aux. bldg.)TB"B" 1 - 4 RTD Loop I (containment)TB"E" 1 - 4 RTD Loop 2 (containment)TB"C" 4 & 5 NIS (control room)
1-R-3 TB"D" 1 & 2 RWST Est. TankTB"C" 1 & 2 Boric Acid Tank Lvl.TB"B" 10 & 11 Anulus - containment pressureTB"A" 4 & 5 Steam Pressure Flow (vault)TB"B" 1 & 2 Feedwater Flow Loop 4 (aux. bldg.)TB"A" O& I I Steam Pressure (vault)
1-R-4 TB"A" 1 O& 1 I Steam Pressure (containment)TB"B" 7 & 8 Turbine Impulse PressureTB"A" 7 & 8 Steam PressureTB"B" I & 2 FW Flow (aux. bldg.)TB"A" 1 & 2 FW Flow (aux. bldg.)TB"A" 4 & 5 Steam Flow (containment)TB"C" 1 & 2 Sump Lvl. (containment)
1-R-5 TB"B" 1 & 2 RCFTB"C" I & 2 WR Pressure (containment)
I-R-6 TB"B" 1 - 4 RTD Loop 3 (containment)TB"E" I - 4 RTD Loop 4 (containment)
. TB "G" 10 & 11 RCS Pressure1-R-7 TB"A" 1 & 2 Feedwater Flow Loop I (aux. bldg.)
TB"B" 1 & 2 Feedwater Flow Loop 3 (aux. bldg.)TB"A" 10 & 11 Steam Pressure (vault)TB"A" 4 & 5 Steam Flow
1-R-8 TB"A" 1 & 2 Feedwater Flow Loop 2 (aux. bldg.)TB"A" 7 & 8 Steam Pressure (containment)TB"B" 7 & 8 Turbine Impulse Pressure
1-R-9 TB"A" 7 & 8 RCS Flow1-R-10 TB"D" 8 - 11 RHR Pump RTD
TB"D" 1 -4 Pressurizer RTD1-R-ll TB"A" 7 & 8 Steam Generator Level Loop 1
TB"A" 10 & 11 Steam Generator Level Loop 2TB"A" 1 & 2 Steam Generator Level Loop 3TB"A" 4 & 5 Steam Generator Level Loop 4
1-R- 13 TB"D" 1 - 4 Pressure Vapor Temp. RTDTB"D" 8 - 11 RHR Pump Discharge Temp. RTD
1-R-28 TB"A" 7 & 8 Boric Acid Tank
Report No. 31590-95M
Page No. 4-6
. 5.0 TEST REQUIREMENTS
5.1 Qualitv Assurance
All work conducted for this program was performed in accordance with the
requirements of NTS/Northeast's Quality Manual, Revision 3, dated July 14, 1992, and
NTS/Northeast Standard Operating Procedure N-4, Revision 0, dated March 19, 1990,
ensuring the program's compliance to the applicable provisions of 10 CFR, Part 21 and Part
50, Appendix B.
5.2 Testing
NTS performs a majority of its EMI testing for the military in accordance with MIL-
STD-461 and MIL-STD-462. NTS is accredited by the National Institute of Standards and
Technology (NIST) under the NVLAP program, to perform testing to these specifications
(NVLAP Lab Code #0347). Full details of the accreditation are available upon request.
The following tests was performed at TVA's Watts Bar Nuclear Plant.
5.2.1 Conducted
* Conducted Emissions, Method CE01, Power and Signal Leads, 30 Hz to 15 KHz,Common and Differential Mode
* Conducted Emissions, Method CE03, Power and Signal Leads, 15 KHz to 50 MHz,Common and Differential Mode
* Conducted Emissions, Method CE07, Power and Signal Leads, Switching Transients,Time Domain, Common and Differential Mode
Report No. 31590-95M
Page No. 5-1
5.0 TEST REQUIREMENTS (continued)
5.2 Testing (continued)
5.2.1 Conducted (continued)
When performing common mode conducted emissions measurements on signal cables, the
current probe was placed around as many conductors as possible in the cable bundle.
Similarly, when performing common mode measurements on power leads, the probe was
placed around as many conductors as possible including the ground wire (where applicable).
When performing differential mode conducted emissions measurements on signal
leads, the current probe was placed around the conductors in the cable bundle that are most
exposed to electric and magnetic fields. These are typically the conductors that break out
of the bundle and run the greatest distance to the point of termination, and or signal leads
* in close proximity to power leads within the cabinet.
5.2.2 Radiated
* Radiated Emissions, Method REXX, DC Magnetic Field
* Radiated Emissions, Method REOI, 30 Hz to 50 KHz
* Radiated Emissions, Method RE02, 14 KHz to 1 GHz
* Radiated Emissions, Method RE02. 1, Hand-Held Radio Profile
When performing radiated emissions testing, the field strengths were measured in the
X, Y and Z axis and recorded in the orientation that presents the worst case emissions level.
Report No. 31590-95M
Page No. 5-2
* 5.0 TEST REQUIREMENTS (continued)
5.3 Post Measurement Data Analvsis (Emission Tests)
The Hewlett Packard (HP) 8566S Automated Microwave Measurement System is
software controlled and is used for making automated commercial and military emissions
measurements. The EMI measurement system is comprised of a spectrum analyzer, RF
preselector, CPU, display unit, printer/plotter, disk drive, keyboard and control knob as
listed in Section 7.0.
The HP3 10 CPU controls the bandwidth and scanning speed of the spectrum analyzer
and ensures a continuous scan of all frequencies in the desired range.
The basic scheme of the measurement is that the CPU processes the trace data from
the spectrum analyzer at the end of a sweep, initiates the next sweep, and processes the data
from the previous sweep while the current sweep is occurring. Processing of trace data
involves corrections for transducer correction factor, preamplifier gain and external
attenuation and then plotting it on the display unit for visual feedback of the tests' progress.
Test results are displayed in log frequency format. Test results can be stored in the library
disc for future reference or creating a hard copy.
When measuring radiated emissions, the program will automatically signal the
spectrum analyzer to halt the measurement process when the upper frequency range limit
of the current antenna is reached. A message is then displayed on the Display unit
instructing the operator to change the antenna and/or amplifier for the next frequency sweep
range.
Report No. 31590-95M
Page No. 5-3
5.0 TEST REOUIREMENTS (continued)
5.3 Post Measurement Data Analysis (Emission Tests) (continued)
The system program consists of four major sections: the Test Library, the Data
Library, the Measurement section and the Test Setup table. The Test Setup table includes
the Transducer and Limit Libraries which are used for storing transducer factor values and
commonly used emission limits.
5.4 Narrowband/Broadband Discernment
The Narrowband/Broadband emissions determination is made by manually tuning to
the frequency of interest (center frequency) and recording the frequency and amplitude.
The analyzer or receiver will then be tuned over a range of +/- 2 Impulse
Bandwidths (IBW) around the center frequency.
A change in peak response of 3 db or less indicates a Broadband emission. Any
change of greater than 3 db indicates a Narrowband emission.
5.5 Measurement Accuracy
All measurements will be made in accordance with MIL-STD-462 and have the
following accuracies (Reference Section 7.0 - Test Equipment List).
A. Frequency Accuracy: Where specified limits are exceeded, the frequencyaccuracy of the measurements shall be accurate to within +0.1%.Verification with a frequency counter or other measuring device will berequired.
B. Amplitude Accuracy: Amplitude accuracy shall be +2 db.
Report No. 31590-95M
Page No. 5-4
6.0 TEST PROCEDURE
6.1 Conducted Emissions, Method CEOI. Power and Signal Leads. 30 Hz to 15 KHz
Requirements
Conducted emission measurements, from 30 Hz to 15 KHz, will be made in
accordance with the applicable portions of Test Method CEOI of MIL-STD-462. Reference
Section 6. 1, Test Setup.
Procedures
The Auxiliary Electric Equipment Room Environment was set up and operated as
specified in Section 4.0 of this report. An A.H. Systems Clamp-on Current Probe, Model
BCP-200/510, was connected to a Hewlett Packard Automated Microwave Measurement
System, Model 8566S through a 50-foot length of RG-214/U coaxial cable. The probe was
clamped around a selected power lead, within the RPS cabinet designated as "Phase" and
the frequency range was slowly swept from 30 Hz to 15 KHz, and plots were generated for
narrow band measurements.
The preceding procedure was then performed on the remaining power lead designated
as "Neutral", "Phase/Neutral Bundle" (including ground where accessible), and the
appropriate signal lead bundles (Reference Figure 4-2).
Sample Test Results
Test Results
CEOI Conducted Emissions, 30 Hz - 15 KHz Westinghouse ElectricCorporation will performanalysis for all tests.
Report No. 31590-95M
Page No. 6-1
,- I .n, ,5T IU I Tot;lFU lrIF
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0
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I :-''''!''''!'-'--Y''''' ---- -t------.- .-- ..-....... .......... -.------- ........ ...............C....MIL-STfl 4GIC PART 4 - CE-bi
WESTINGHOUSE MJO 31590-G9Mi........-- . ........... .- . . TVA WRTTS BAR UNIT1 RUX ELEC RM
REACTOR PROTECTION SET IRACK NO. 1-R-1 TD-1X.5
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5 May 1994 89:88 : 44h p NATIONAL TECHNICRL SYSTEMShp EMISSION LEVELE d~uRJ
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* 6.0 TEST PROCEDURE (continued)
6.2 Conducted Emissions, Method CE03. Power and Signal Leads, 15 KHz to 50NI~z
Requirements
Conducted emission measurements, from 15 KHz to 50 MHz, will be made in
accordance with the applicable portions of Test Method CE03 of MIL-STD-462. Reference
Section 6.2, Test Setup.
Procedures
The Auxiliary Electric Equipment Room Environment was set up and operated as
specified in Section 4.0 of this report. An A. H. Systems Clamp-on Current Probe, Model
BCP-200/511, was connected to a Hewlett-Packard Automated Microwave Measurement
System, Model 8566S, through a 50' length of RG214/U coaxial cable. The current probe
was clamped around a selected power lead, within the RPS cabinet designated as "Phase",
and the analyzer swept over the frequency range from 15 KHz to 50 MHz, and plots were
generated for both Narrow and Broad Band measurements.
The preceding procedure was repeated with the current probe clamped around the
remaining leads designated as "Neutral", "Phase/Neutral Bundle" (including ground where
accessible), and the appropriate signal lead bundles (Reference Figure 4-2).
Sample Test Results
Test Results
CEO3 Conducted Emissions, 15KHz - 50 MHz Westinghouse ElectricCorporation will performanalysis for all tests.
Report No. 31590-95M
Page No. 6-37
ISOLATTIMI TPAti'lFCIFOF&F
ONCODUCTED EMIS'SIINS METfHLO CF_ Q FF, l
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125
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5 May 1994 15:31:02GRORDBRND
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40
20
5 May 1994 15:25:42NRRRWARND
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125
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.......... .... * ... .......... .... i
...................... .....
. 1
A76.0 TEST PROCEDURE (continued)
6.3 Conducted Emissions. Method CE07, Switching Transients. Time Domain
Requirements
Conducted emissions switching transients, time domain, will be measured in
accordance with the applicable portions of Test Method CE07 of MIL-STD-462, Reference
Section 6.3, Test Setup.
Procedures
The Auxiliary Electric Equipment Room Environment was set up and operated as
specified in Section 4.0 of this report. A Tektronix oscilloscope, Model TDS 520, and a
Stoddart Model 91550-1 current probe was connected to a selected power lead, designated
as "Phase". The time domain current measurement results were printed and stored on
electronic media.
The preceding procedure was repeated with the current probe connected to theremaining lead designated as "Neutral". (Reference Figure 4-2).
Report No. 31590-95M
Page No. 6-98
6.0 TEST PROCEDURE (continued)
6.3 Conducted Emissions. Method CE07. Switchin2 Transients. Time Domain(continued)
Sample Test Results
Test Results
CEO7 Conducted Emissions, Switching Transients,Time Domain
Westinghouse ElectricCorporation will performanalysis for all tests.
Report No. 31590-95M
Page No. 6-99
l A
CONDUCTED EMISSIONS) METHOD CE07
TEST SETUP
TYPICALTo0
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6.0 TEST PROCEDURE (continued)
6.4 Radiated Emissions. Method REXX. DC Magnetic Field
Requirements
Radiated emissions, DC Magnetic Field, will be measured in accordance with the
applicable portions of MIL-STD-1399, Section 070, Part 1. Reference Section 6.4, Test
Setup.
Procedures
The Auxiliary Electric Equipment Room Environment was set up and operated as
specified in Section 4.0 of this report. A Magnetic Instrumentation Gaussmeter, Model 912,
was set up with its measurement probe located in the "X axis" location of the units' probe
fixture. The measurement probe orientation was then changed through multiple axes until
a worst case level was detected. Measurements of the DC magnetic field were taken and
recorded on data sheets.
The remaining mapping locations were measured following the preceding procedure.
(Reference Figure 4-2).
Sample Test Results
Test Results
REXX Radiated Emissions, DC Magnetic Field Westinghouse ElectricCorporation will performanalysis for all tests.
Report No. 31590-95M
Page No. 6-117
POWRF ' I]UPCE
LIX \0 \fIW-ff . - --- Ih
TE STPROBE
GAUSSMETER
RADIATED EMISSIONS , METHID RE'/'SSFT IJP
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Test REXX-DC Magnetic Field Emissions
Purchase Order P° 2
Remarks Drop-off C.5= distance i
ATA SHEET
Date _ _ _ _ _ _ _ _ _ Page o of _
Specification NTS TP No. 3vSQOi- £.eso; 0
Model/Serial Number see below
Mode of Operation FKl Yh ciZ4 (
in inches to where source guass level is less
than 0.5 guass.
Location Level(guass Drop-off &.5 Remarks
/ - ^ - ____._____C . ____/__. _,__ _____
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Test Technician
Test Engineer-
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Acton Division533 Main StreetActon, MA 01720
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NationalTechnicalSystems
Job Number \ 5 5 15,
Customer XV - A fZ NUC(CLEAZ
TestSample U)M:T -I o, EzLpTrJC eap.
REXX-DC Magnetic Field EmissionsTest
Purchase OrderPA P I\I
Acton Uivision533 Main StreetActon, MA 01720
fkTA SHEET
Date SA01 2 Y Page 2_ of
Specification NTS TP No. 3'5qO45+ - e3 s'o" 0
Model/Serial Number see below
Modeof Operation PIC Jct , -EIcWc,-\. tLS Op64 c; X l
Drop-off 4.5= distance in inches to where source guass level is lessF-emarKs
than 0.5 guass.
Location Level(guass Drop-off d.5 Remarks
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6.0 TEST PROCEDURE (continued)
6.5 Radiated Emissions. Method REOI, AC Magnetic Field, 30 Hz to 50 KHz
Requirements
Radiated emissions, magnetic field, from 30 Hz to 50 KHz will be measured in
accordance with the applicable portions of Test Method RE01 of MIL-STD-462. Reference
Section 6.5, Test Setup.
Procedures
The Auxiliary Electric Equipment Room Environment was set up and operated as
specified in Section 4.0 of this report. An A. H. Systems Loop Sensor Antenna, Model
SAS-200/560, was placed in the "X axis" location of its antenna fixture. The output of the
loop antenna was connected to an HP Model 8566S, Automated Microwave Measurement
System, through a 50-foot length of RG214/U coaxial cable. The antenna orientation was
then changed through multiple axes until a worst case level was detected.
The spectrum analyzer swept over the frequency range from 30 Hz to 50 KHz and
plots were generated for the frequencies of maximum radiation.
The remaining mapping locations were measured following the preceding procedure.
(Reference Figure 4-2).
Sample Test Results
Test Results
REOI Radiated Emissions, AC Magnetic Field, Westinghouse Electric30 Hz - 50 KHz Corporation will perform
analysis for all tests.
Report No. 31590-95M
Page No. 6-121
0
a -- \ Pr tv'EP ?F prl i F[1\ I\
TE'ST AHT1TE'NIA
EMi METER
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WESTINGHOUSE MJO 31592-95M! ........ !-.--.--.--.... TVA WATTS DAR UNITI AUX ELEC PM
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TRANSIENT EMISSIONS OCCURING EVERY 26 SECONDS. THE
SOURCE OF THESE EMISSIONS UNKNOWN, BUT ARE NOT NOTED DURING
6C 1 1ETS
CE01 TESTS.
..... -MIL-STI 4GSC PART 4 - RE-21
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6.0 TEST PROCEDURE (continued)
6.6 Radiated Emissions, Method RE02. Electric Field. 14 KHz to I GHz
Requirements
Radiated emissions, from 14 KHz to 1 GHz, will be measured in accordance with
the applicable portions of Test Method RE02 of MIL-STD-462. Reference Section 6.6, Test
Setup.
Procedures
The Auxiliary Electric Equipment Room Environment was set up and operated as
specified in Section 4.0 of this report. The antennas used during the performance of this
test were as follows:
Frequency Antenna Coaxial Cable Polarization
.014-30 MHz Active Rod 25' of RG214/U Omni-Directional30 - 300 MHz Biconical 25' of RG214/U Vertical/Horiz.300 - 1000 MHz Log Periodic 25' of RG214/U Vertical/Horiz.
Measurements from 14 KHz to 1.0 GHz were performed using the appropriate
antenna with the corresponding coaxial cable connected to a Hewlett Packard Automated
Microwave Measurement System, Model 8566S. The antenna axis orientation was changed
until a worst case level was detected. Plots were generated for both narrow and broad band
measurements.
The remaining mapping locations were measured following the preceding procedure.
(Reference Figure 4-2).
Sample Test Results
Test Results
RE02 Radiated Emissions, 14KHz - 1 GHz Westinghouse ElectricCorporation will performanalysis for all tests.
Report No. 31590-95M
Page No. 6-139
POD\1ER SOU'RE
\ ''
TES T ANT E N N A
EMI METER
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4 May 1994 09:12:19Rmo~nRRmn
MIL-STD 41 fc PART 4 - RE-02 .WESTINGHOUSEMJO 31592-95M
........... TH WHITTS EAR UNITI AUX ELEC PM I........ - 'REACTOR PROTECTION SET I
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6.0 TEST PROCEDURE (continued)
6.7 Radiated Emissions, Method RE02.1. Electric Field. Hand-held Radio Profile
Requirements
Radiated emissions, from 162.025 to 173.7625 MHz, will be measured in accordance
with the applicable portions of Test Method RE02 of MIL-STD-462. Reference Section 6.6,
Test Setup.
Procedures
The Auxiliary Electric Equipment Room Environment was set up and operated as
specified in Section 4.0 of this report. The radios were tested outside the Auxiliary Electric
Equipment room, at each of their operating frequencies, in a continuous communication and
keying communication mode of operation. The antennas used during the performance of this
test were as follows:
Frequency Antenna Coaxial Cable
30 - 300 MHz Biconical 25' of RG214/U
Measurements from 162.025 to 173.7625 MHz, were performed using the
appropriate antenna with the corresponding coaxial cable connected to a Hewlett Packard
Automated Microwave Measurement System, Model 8566S. The transmitting antenna axis
orientation (hand-held radio) was changed through multiple axes with the radio outside the
equipment room until a worst case level was detected. Other site specific radios and known
sources of noise were "keyed" or activated as much as feasible. Plots were generated for
narrow band measurements.
During testing for Protection Set III, the hand held radios were keyed from the
opposite side of the closed double doors.
Report No. 31590-95M
Page No. 6-157
6.0 TEST PROCEDURE (continued)
6.7 Radiated Emissions, Method RE02.1. Electric Field. Hand-held Radio Profile
Requirements (continued)
During testing for Protection Set IV, the hand held radios were keyed from the
opposite side of the stairwell door.
Sample Test Results
Test Results
RE02.l Radiated Emissions. Hand-Held Radio Profile Wie--tin vhna, cE I e c t r i cCorporation willperform analysisfor all tests.
Report No. 31590-95M
Page No. 6-158
NATIONAL TECHNICAL SYSTEMShp EMISSION LEVELE d~uV/WoJ130
PERK
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jigl
4 May 1994 13:3?:JB
.MIL-StD 49G PART 4 - PE-22iWESTINGHOUSE MJO 31590-95MTVR WATTS BAR UNITI AUX ELEC PMMIDLAND 70-15D HANDHELD FlPROT. SET III, PACK 1-P-li L PR
.............................................................................................................................. ................................................................................................................................
..................... ..............................................
,.. ................. ..............................................................................
................................................................................................. . . . . . . . . ......... - -- - - --
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leeFREQUENCY (MHz]
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7.0 TEST EQUIPMENT LIST
The test equipment listed in Section 7.0 of this test report is the actual test equipment that
was used during this test program. All test equipment was checked prior to testing to assure that
it is within calibration, and it was allowed sufficient warm-up time to guarantee measurement
accuracy.
Calibration is performed and checked on a routine basis in accordance with MIL-STD-
45662A, using standards traceable to the National Institute of Standards and Technology (NIST).
Report No. 31590-95M
Page No. 7-1
LIST GENERATED ON : 05/31/94
INV # DESCRIPTION MANUFACTURER MODEL #
NTS Equipment ListFOR MJO # 31590 -95M
SERIAL # RANGE ACCURACY CAL FREQ CAL DUE CAL(months) DATE STATUS
ML371 DIGITAL MULTIMETER
ML390 GAUSSMETER
ML565 AC-DC CURRENT PROBE
MW397 ATTENUATOR SET
WA331 CURRENT PROBE
WA453 CURRENT PROBE
WA454 CURRENT PROBE
RENTAL EQUIPMENT USED
RENTAL S/A, E/R INV #400723A
RENTAL RF P/S, E/R INV #502843D
RENTAL DSO, GE INV. #01617794
RENTAL BICONICAL ANTENNA
RENTAL LOG PERIODIC ANTENNA
FLUKE 75
MAGNETIC INST. 912
FLUKE Y8100
WEINSCHEL AS-6
STODDARD AIRCRAF 91550-1
ELECTROMETRICS PCL-30
ELECTROMETRICS PCL-11
TEK
A.H. SYSTEMS
A.H. SYSTEMS
34851569
24525
4165116
4975
785-103
1460
1123
HP8566B
HP85685A
TDS 520
0-1000VDC,0-750VAC,0-10A,
10 mG TO 100 KG
0-200 AMP
DC to 18 GHZ, 3,6,10,20,
10 KHZ TO 100 MHZ
9KHZ TO 110MHZ
20HZ TO 50KHZ
DCV:+/-(.5%RDG+
DC:+/-(.4%RDG+
0-200 Hz:+/-2%
3,6DB:+/- .3DB
N/A
N/A
N/A
500 MHZ
456
380
CALIBRATION ABBREVIATIONS
UWCE - USE WITH CALIBRATED EQUIPMENTCBU - CALIBRATE BEFORE USENOM - NOT USED FOR QUANTITATIVE MEASUREMENTSCAL - CALIBRATED
12
12
1 2
6
1 2
12
1 2
10/08/94
£08/25/94
09/23/94
08/25/94
06/17/94
11/30/94
11/30/94
02/10/95
01/05/95
03/29/95
CAL
CAL
CAL
CAL
CAL
CAL
CAL
CAL
CAL
CAL
PAGE NO. 7-2
8.0 ANTENNA/PROBE CORRECTION FACTORS
Report No. 31590-95M
Page No. 8-1
Z2�z��F
NATIONAL TECHNICAL SYSTEMSTRANSDUCER TABLETransducer Title : EMC PCL-11 SN 1123/DUE 11/30/94Sign of Trans. : PLUS. Freq Interpolat. : LOG
- Number of Points : 9
Frequency (MHz) Trans Factor
123456789
NATIONAL TECHNICALTRANSDUCER TABLETransducer Title :Sign of Trans.Freq Interpolat. :Number of Points :
2.E-5.0001.0005. 001.005.01.02.035.05SYSTEMS
EMC PCL-30 SNPLUSLOG13
5543.232.52713.88.54.32.31.5
1460/DUE 11/30/94
Frequency (MHz) Trans Factor
12345678
.9
10111213
NATIONAL TECHNICALTRANSDUCER TABLETransducer Title :Sign of Trans.Freq Interpolat. :Number of Points :
.01
.05
.1
.2
.3
.4
.613102050100SYSTEMS
23.19.12.7-2.7-5.3-7-9 . 2-10 .9-12.4-12.9-13.7-6.5-5. 6
STODDARD 91550-1 DUEPLUSLOG11
Frequency (MHz)
.01
.05
.1
.2
.3
.4
.61310100
Trans Factor
173.4-2 . 6-7.6-10.2-11.6-13-14-14.9-15.9-11.6
Point
Point
6/21/94
Point
123456789
1011
L
3 1 5 9 0
8 2
NATIONAL TECHNICAL SYSTEMSTRANSDUCER TABLETransducer Title : RENTAL LOOP ANTSign of Trans. ; PLUSO Freq Interpolat. :LOG
9 Number of Points : 12
Frequency (MHz) Trans Factor
123456789
101112
NATIONAL TECHNICALTRANSDUCER TABLETransducer Title :Sign of Trans.Freq Interpolat. :Number of Points :
2.E-55.E-5.0001.0002.0005.001.002.005.01.02.05.1SYSTEMS
RENTAL ACTIVEPLUSLOG8
------------
78.971.966.661.954.549.443.836.631.626.723.322.9
ROD S/N 610
Frequency (MHz)---------------
.01
.02
.05
.530405060
Trans Factor
-.7-1 .9-2.2-2.4-2.3-1.8-1.2-.6
3 1 5 9 0:
8 3
S/N 587
Point
Point
12345678
t
NATIONAL TECHNICAL SYSTEMSTRANSDUCER TABLETransducer Title : BICONICAL S/N 463
* Sign of Trans. : PLUS& Freq Interpolat. : LOG
Number of Points : 35
Point-----
123456789
1011121314151617181920212223242526272829303132333435
Frequency (MHz) Trans Factor--------------- ------------
20 13.625 1430 13.935 14.440 13.745 13.650 12.960 10.770 10.180 9.890 10.3100 10.2110 10.9120 11.4130 11.5140 12.1150 12.5160 12.9170 13.7180 14.2190 15.2200 15.8210 17220 17.7230 18.4240 19.2250 19.6260 19.5270 20280 20.8290 20.6300 22310 22.6320 23.5330 25.2
3 1.5 9 0
8 4