NG-ODU-XODU-IPA-070041-Typical MOT-Rev4.0.doc

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Approved code 1 Approved w ith com m ents code 2 R ejected code 3 R eview ed w ith com m ents code 4 N o com m ent code 5 TEPN G review com m ent and/or Approvalshallnot be assum ed to indicate either responsability or liability for accurancy and com pleteness of this docum ent or to alter any contract Term s & C onditions. D ate: The docum ent is returned w ith code R eserved to C O M PANY Remarks: This document is the property of TOTAL and must not be reproduced, stored or disclosed without permission from COMPANY. OML100 [ODUDU & FSO UNITY] ICSS – SYSTEM Upgrade Detailed Engineering SMR/SOR/SIN nbr. S0R-100-09-001 PCS Standard Functions Implementation-Typical MOT page: 1/53 COMPANY ref. number NG-ODU-XODU-IPA-070041 Rev. Status Rev. date Discipline INS 1.0 IFR 11-Nov-14 Doc. Type PRC CONTRACTOR ref: NG-ODU-XODU-IPA-070041 -- -- -- (Syst.) Unit XX_GEMU PCS Standard Function Implementation- Typical MOT

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1.0 28-1-15 Issued for Review Waqar Ahmad Sohail Khan Kashif Ijaz

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TABLE OF CONTENTS

1. Introduction................................................................................................................................... 5

1.1. Document Scope........................................................................................................5

1.2. Reference Documents................................................................................................5

1.3. Abbreviations.............................................................................................................6

2. Motor Standard Function.........................................................................................7

2.1. Scope......................................................................................................................... 7

2.2. General Description of Function.................................................................................72.2.1. List of Main Functions......................................................................................................72.2.2. Existing System Block Diagram.......................................................................................72.2.3. New System Block Diagram.............................................................................................8

2.3. Interface Descriptions..............................................................................................102.3.1. General Description.......................................................................................................10

2.4. Detailed Description of Functions............................................................................112.4.1. MAN/CASCADE Mode.....................................................................................................112.4.2. Maintenance Inhibition...................................................................................................112.4.3. Analogue Output Fault Status........................................................................................12

2.5. Tuning Parameters And Variables............................................................................13

2.6. Representation and animation description (HMI).....................................................132.6.1. Events And Values To Be Recorded...............................................................................132.6.2. Alarm Handling..............................................................................................................132.6.3. Control Display..............................................................................................................142.6.4. Display Schemes............................................................................................................152.6.5. Faceplate.......................................................................................................................162.6.6. Animation of the “hand” symbol....................................................................................19

2.7. Organic Analysis......................................................................................................192.7.1. PCS: MOT.......................................................................................................................192.7.2. PCS: MOT-ST..................................................................................................................30

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LIST OF FIGURES

Figure 1: Existing System Block Diagram...........................................................................................8Figure 2: Function block ST16...............................................................................................................9Figure 3: Function block MC-2...............................................................................................................9Figure 4: Function block LC64.............................................................................................................10Figure 5: Function block CALCU..........................................................................................................10Figure 6: Function block PBS10C........................................................................................................10Figure 7: Interface MOT........................................................................................................................11Figure 8: Control Display......................................................................................................................15

Figure 9: MOT Run/Stop Status...........................................................................................................17

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Figure 10: Maintenance Inhibit...........................................................................................................18Figure 11: MOT in Inhibition.................................................................................................................19Figure 12: Animation of Hand Signal.................................................................................................20Figure 13: MOT Smart Part...................................................................................................................23Figure 14: Smart Part MOT-BK............................................................................................................23Figure 15: Sequence Table..................................................................................................................29Figure 16: MOT Logic Detail.................................................................................................................30Figure 17: MOT-BK.................................................................................................................................30Figure 18: SmartParts Overview.........................................................................................................32

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list of TABLESTable 1: Reference Documents.............................................................................................................6Table 2: Tuning Parameters.................................................................................................................14Table 3: Alarm Handling.......................................................................................................................14Table 4: Control Display.......................................................................................................................15Table 5: Display Scheme......................................................................................................................16Table 6: DI-MOT......................................................................................................................................20Table 7: DO-MOT....................................................................................................................................20Table 8:DO-MOT-BK...............................................................................................................................21Table 9: Switches-MOT.........................................................................................................................21Table 10: Swiches( Parameters of PMI- PBS10C).............................................................................22Table 11: Block Parameters.................................................................................................................23Table 12: MOT: MMXXXXY MC-2 Block Parameters.........................................................................25Table 13: MOT-BK: BBXXXXY MC-2 Block parameters....................................................................26Table 14: MOT ST1-MMXXXXY ST16 Block parameters..................................................................27Table 15: MOT LC1-MMXXXXY LC64 Block parameters..................................................................27Table 16: MOT CL1-MMXXXXY Calculation block parameters.......................................................28Table 17: MOT PM1-MMXXXXY PBS10C block parameters............................................................28Table 18: Hardwired IO.........................................................................................................................31Table 19: Annunciator...........................................................................................................................31Table 20: Print Message.......................................................................................................................31Table 21 Switches..................................................................................................................................31Table 22: PBS10C...................................................................................................................................32Table 23: Blocks Parameters & Variables.........................................................................................33Table 24: MOT-ST SI-1 block parameters..........................................................................................33Table 25: MOT-ST ST1-MMSSSSY ST16 Block parameters.............................................................34Table 26: MOT-ST LC1-MMSSSSY LC64 Block parameters...........................................................34Table 27: MOT-ST CL1-MMSSSSY Calculation block parameters.................................................35Table 28: MOT-ST...................................................................................................................................35Table 29: Sequence Chart....................................................................................................................36

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1. Introduction

The oil fields Odudu, together with Afia, Ime and Edikan are located on OML 100. These fields were developed by TEPNG in the conventional offshore area (water depth: 70m) in the period 1993-1995 which makes them about 15 years old.

OML 100 fields are developed with a manned central complex comprising a process platform (ODP1) bridged linked to the wellhead platform (ODD1). Three unmanned satellites AFD1, IMD1 and EDD1 are tied back to the central complex. The liquids of three satellite fields (Afia, Ime and Edikan) are piped to ODP1 and onwards to FSO UNITY. The central complex also handles the oil production from two other blocks, OML 102 (Ofon) and OML 99 (Amenam). This makes ODP1/ODD1 a production hub for OML 99, OML 100 and OML 102. Its unavailability would have a major impact on TEPNG production, therefore all safety issues on ODP1/ODD1 shall be treated as highly critical. Odudu offshore field is located 102km south-east of Port Harcourt. It is accessible by boat and Helicopter.

1.1. Document Scope

This document defines and details the MOT standard function developed for the OML100 Upgrade Project PCS System. It further specifies their implementation methodology.

This document would form the basis of the software and hardware design philosophy and thus adheres to the TEPNG General Specifications and project specific requirements. This document defines the MOT standard functions and objects and specifies their implementation.

1.2. Reference Documents

S. No. Document Number Title

1 GS-EP-INS-150Design method for system

configuration standard functions

2 GS-EP-INS-196 Input & Output Standard Functions

3 GS-EP-INS-197 Process Standard Functions

4 GS-EP-INS-198Safety and Fire & Gas Standard

Functions

Table 1: Reference Documents

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1.3. Abbreviations

AI Analogue Input AUT Auto Mode D/B/S Duty/Back-up/Standby DI Digital Input DO Digital Output ESD Emergency Shut-Down FGS Fire and Gas System MMI Man Machine Interface ICSS Integrated Control and Safety System MAN Manual Mode MI Maintenance Inhibition MOT-BK High voltage Motor with circuit Breaker MOT-ST Motor Status PCS Process Control System PSS Process Shutdown System PU Pumping Unit SSS Safety Shutdown System

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2. Motor Standard Function

2.1. Scope

This document describes functions to be performed by Motor typical. The three following typical will be used:

MOT: Low voltage motor and High voltage motor with fuse contactor (P ≤ 1,5MW) MOT-BK: High voltage motor with circuit breaker (P > 1,5MW) MOT-ST: Motor status only

2.2. General Description of Function

2.2.1. List of Main Functions

Handling of field inputs and outputs with status and discrepancy detection Interface with high level Standard Function (e.g. Pumping Unit). Operator commands: Start/Stop, Maintenance inhibition Maintenance monitoring (running time, start-up counter) Maintenance Inhibition treatment Invalidity Treatment

2.2.2. Existing System Block Diagram

Figure 1: Existing System Block Diagram

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In existing system the flow from field is first acquired, processed and then sent to the fault treatment block for the fault status check. In case of an IO fault, a fault status is generated from this block. The processed value goes to the flow measurement block. After the flow measurement the output goes to the correction algorithm. Pressure and temperature values are fed to the correction algorithm for calculating the compensation. A fall back temperature and pressure is also maintained in case of maintenance or fault on the respective transmitters.

2.2.3. New System Block Diagram

Function block ST16

This function block manages:

The interlock of the mode of the function block MC-2 in AUT mode in case of fault status (discrepancy, unavailability), inter start lock, trip from safety controller, or process lock (SDV not opened),

The automatic alarm masking by the maintenance inhibition, The generation of the unavailable alarm, The interdictions to put the function block MC-2 in calibration mode.

Figure 2: Function block ST16

Function block MC-2

The program uses the properties of the block to generate the discrepancy and the interlock of the motor. The operator calls the faceplate of this function block to start/stop the motor, according to the mode of the block.

Figure 3: Function block MC-2

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Function block LC64

This function block manages: The statuses of the following switches: Discrepancy, Fault status, Inter start lock and

the running/stopped status The new motor running command after the timer launching inhibition

Figure 4: Function block LC64

Function block CALCU

This function block manages: The start-up counter of the motor, the number of start-up is recorded in the

parameter P01, and the running time (Hour) of the motor is recorded in the parameter P03,

The display of the operation mark of the maintenance inhibition (frame of the faceplate displayed in yellow, with the label “INHIB” in the bottom of the faceplate, in case of maintenance inhibition activated)

The interdiction to switch on the function blocks MC-2 in simulation and tracking.

Figure 5: Function block CALCU

Function block PBS10C

This function block is used to record statuses of switches.

Figure 6: Function block PBS10C

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2.3. Interface Descriptions

2.3.1. General Description

Figure 7: Interface MOT

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2.4. Detailed Description of Functions

2.4.1. MAN/CASCADE Mode

2.4.1.1. MANUAL / AUTO mode

MAN/AUT mode is set by higher level automatic control (“pumping unit” typical, for example).

MAN/AUT mode is always set in MAN mode if there is not higher level automatic control (When no interlock is active in which case it is forced in AUT mode).

In Manual mode (MAN), the operator controls the start and the stop of the motor. In Automatic mode (AUT), the start and the stop of the motor is performed by upper

level.

2.4.1.2. START / STOP command

Start/Stop command is locked in Stop position in case of:

Safety trip, (MXSL status transmitted to the PCS) Unavailability status. Discrepancy status, Process interlock, (e.g. suction valve not opened ) Inter starts timer not elapsed (concerns HT motors) Inter motors start timer not elapsed (concerns HT motors depending on the same

D/B/S)

2.4.2. Maintenance Inhibition

Maintenance inhibition command is available for operator when the maintenance access level is set.When the maintenance inhibition is set to active:

Feedback running/stopped status switch is no more taken into account in internal status handling, but the animation is still showing the status.

Discrepancy and Unavailability alarms are inhibited. Alarms of I/O Invalidity (PCS) are inhibited.

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2.4.3. Analogue Output Fault Status

2.4.3.1. Motor status

HMI motor status is following the status input (running/stopped)

Internal Status is active:

if the maintenance inhibition status is not set, when the status input is active if the maintenance inhibition status is set, when the operating command status is

active

2.4.3.2. Discrepancy status

It indicates a discrepancy between the operating command and the feedback status, after a time delay (discrepancy timer).

Discrepancy timer is launched upon status change of the operating command. If there is a discrepancy, the command status is reset. The discrepancy status remains active till the alarm is acknowledged.

2.4.3.3. Fault status

This status includes

discrepancy status Unavailability status.

2.4.3.4. Unavailability status

Unavailable status is aligned with the unavailable input, which is active in normal situation: For Example, No electrical fault, no local emergency stop. This status remains active till its alarm is acknowledged.

2.4.3.5. Invalidity status

This status will report a hardware fault concerning associated I/O cards (field inputs/outputs).

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2.5. Tuning Parameters And Variables

Parameter Access LevelDiscrepancy timer pre-set value Maintenance

Inter starts timer (one per motor) MethodInter motors timer (one per set of motors of a same D/B/S) Method

Table 2: Tuning Parameters

2.6. Representation and animation description (HMI)

2.6.1. Events And Values To Be Recorded

Maintenance inhibit command Status (running/stopped) Available status Invalidity status Starting number Running time

2.6.2. Alarm Handling

Alarm Description Priority

Output Invalidity State Level 1

Table 3: Alarm Handling

Each Alarm will be active until it is acknowledged and the alarm condition disappeared

Flashing will be active until Alarm is acknowledged even though it returned healthy

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2.6.3. Control Display

S.NO General Specification Existing System New system

1

Figure 8: Control Display

PCXXXXY equipment label is hidden on operator requestPCXXXXY equipment label is used as target area for calling the safety view where the motor is implemented.The Command part on symbol of the equipment is used as target area for equipment faceplate command The Control part on symbol of the equipment is used as target area for Maintenance inhibition faceplate command

The symbol is used as target area for calling the maintenance view, where all the Process interlocks conditions are listed, Yellow color for the active interlock and otherwise in transparent(Hidden)

MYSSSSY instrument label appears on operator request (soft key). Symbol and MYSSSSY instrument tag are used as call-up area for the faceplate

display. Target area on the valve used to call the MOT faceplate display.

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Table 4: Control Display

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Wrong figure , choose an appropriate one.
Muhammad Asim Butt, 06/02/15,
Wrong figure choose an appropriate one like mentioned in the as per General Specifications
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2.6.4. Display Schemes

Display Description

Valve and Bar graph

Frames (Signaling and

Alarm)

General Specification

Existing System

New System

Opening > 5%

Fluid colour NA

Opening ≤ 5% White NA NA NA NA

Safety trip

See text animation here above

Signalling frame (external):White

NA

Output fault

See text animation here above

Alarm frame (internal) :

Red blinking before acknowledgement Red steady after acknowledgement

NA

Communication or

system faultWhite

Signalling frame : Magenta

Table 5: Display Scheme

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2.6.5. Faceplate

Following faceplate opens up when the “numeric value” target area is clicked

The operator calls the faceplate of this function block to set the mode of the Run/Stop function, according to the mode of the block.

Figure 9: MOT Run/Stop Status

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The operator calls the faceplate of this function block to set the maintenance inhibit function, according to the mode of the block.

Figure 10: Maintenance Inhibit

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Figure 11: MOT in Inhibition

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2.6.6. Animation of the “hand” symbol

A full yellow “hand” symbol is displayed near the valve when output value is available to the operator. When Cascade mode of the MOT is set, no hand symbol is shown.In case of output invalidity, the hand symbol is white and the frame is blinking yellow before acknowledgement and steady yellow after acknowledgement.

Figure 12: Animation of Hand Signal

2.7. Organic Analysis

2.7.1. PCS: MOT

2.7.1.1. Hardwired I/O

DI-MOT (MOT-BK Identical):

Tag Name Tag CommentBtn1 color

Btn2 color

Access Level

Tag Mark

MYHL-MMXXXXY RUN STATUS Yellow Yellow 5 3

MY-MMXXXXY AVAILABILITY Yellow Yellow 5 3

Table 6: DI-MOTDO-MOT:

Tag Name Tag CommentBtn1 color

Btn2 color

Access Level

Tag Mark

MXXHL-MMXXXXY START/STOP COMMAND Yellow Yellow 5 3

Table 7: DO-MOTDO-MOT-BK:

Tag Name Tag CommentBtn1 color

Btn2 color

Access Level

Tag Mark

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MXXH-BBXXXXY START COMMAND Yellow Yellow 5 3

MXXL-BBXXXXY STOP COMMAND Yellow Yellow 5 3

Table 8:DO-MOT-BK

2.7.1.2. Software I/O

Annunciator-MOT (MOT-BK Identical):

Label Tag comment DescriptionAccess Level

Tag mark

Alarm Level

MMXXXXY-AMY

MMXXXXY UNAVAILABLE

Unavailability

5 3 6

Switches

Switches-MOT (MOT-BK Identical):

Tag Name Tag Comment DescriptionBtn

ColorLeve

lTag Mark

MMXXXXY-MI

MAINTENANCE INHIB Maint. Inhibition Red 7 3

N5MMXXXX-SMV2 (1)

NEW RUNNING COMMAND

New motor command

Green 5 3

N5MMXXXX-SISL (1)

INTER-START LOCKMotors inter-start

lockGreen 5 3

Table 9: Switches-MOT

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Switches (Parameters of PM1-PBS10C)

Tag Name Description

PM1-MMXXXXY.PV02 SOP (Calculated Opened Status)

PM1-MMXXXXY.PV03 SCL (Calculated Closed Status)

PM1-MMXXXXY.PV04 SRU (Calculated Running status)

PM1-MMXXXXY.PV05 SD (Discrepancy Status)

PM1-MMXXXXY.PV06 SDF (Default Status)

PM1-MMXXXXY.MV02 SFP (Free/Piloted)

PM1-MMXXXXY.MV04 SISL (Inter Start Lock)

PM1-MMXXXXY.MV08 MXSL (0=TRIP)

PM1-MMXXXXY.MV09 SPL (Proc. Lock: SDV)

PM1-MMXXXXY.MV10 SRIL(Resulting Interlock Command)

PM1-MMXXXXY.SWOP[1] Inter Motors Timer Testing Inhibition

PM1-MMXXXXY.SWOP[2] Inter Motors Timer Launching Inhibition

Table 10: Swiches( Parameters of PMI- PBS10C)

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2.7.1.3. Smart Parts Overview

MOT

Figure 13: MOT Smart Part

MOT_BK

Figure 14: Smart Part MOT-BK

2.7.1.4. Blocks Parameters And Variables

MOT (MOT-BK Identical):

Execution order

Tag NameModel Name

Tag CommentTag Mark

Alarm Level

Access Level

1 ST1-MMXXXXY ST16 BEFORE MC-2 3 16 62 MMXXXXY MC-2 TAGCOMMENT 3 5 33 LC1-MMXXXXY LC64 AFTER MC-2 3 16 64 CL1-MMXXXXY CALCU 3 16 55 PM1-MMXXXXY PBS10C SWITCHES 3 16 5

Table 11: Block Parameters

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2.7.1.5. Description of the function blocks

Function block PBS10C

This function block is used to record statuses of switches.

MOT: MMXXXXY MC-2 Block parameters:

Tag name Item CaptionAttribu

teMMXXXXY Operation Interlock Input(IL) NOMMXXXXY Answerback Input(IN) NOMMXXXXY Operation Output(OUT) NOMMXXXXY Tag Name YESMMXXXXY Model Name MC-2 NOMMXXXXY Tag Comment YESMMXXXXY Tag Mark Aux.1 NOMMXXXXY Lvl 3 NOMMXXXXY Switch Position Label RUN,,STOP,RUN NOMMXXXXY Label Direct NOMMXXXXY Upper Window YESMMXXXXY Button Color/Top Background Color NOMMXXXXY Button Color/Bottom Background Color NOMMXXXXY Display FV bar No NOMMXXXXY Upper Equipment Name YES

MMXXXXYInput Signal Conversion/Input Signal

Conversion2-position Status

InputNO

MMXXXXYInput Signal Conversion/Direction of

AnswerbackDirect NO

MMXXXXY Release Answerback Check MaskPV=MV or MTM

TimeoutNO

MMXXXXY Answerback Check Both Sides NOMMXXXXY Alarm Level User(5) NOMMXXXXY Input Open Alarm Both NOMMXXXXY Output Open Alarm Yes NOMMXXXXY Bad Connection Alarm No NOMMXXXXY Inching/Full-stroke Time Width NOMMXXXXY Serial Startup Group NOMMXXXXY Answerback Tracking Yes NOMMXXXXY Interlock Input Signal Direction Direct NO

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MMXXXXY Output when interlock status is true Close NOMMXXXXY Hold output when interlocked Invalid NO

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MMXXXXYModify pulsive output when interlock status

true.Status Output NO

MMXXXXYFallback operation on the abnormal answer-

backNONE NO

MMXXXXYOutput Signal Conversion/Output Signal

Conversion2-position Status

OutputNO

MMXXXXYOutput Signal Conversion/Output Action

DirectionDirect NO

Table 12: MOT: MMXXXXY MC-2 Block Parameters

MOT-BK: BBXXXXY MC-2 Block parameters:

Tag name Item CaptionAttribu

teBBXXXXY Operation Interlock Input(IL) NOBBXXXXY Answerback Input(IN) NOBBXXXXY Operation Output(OUT) NOBBXXXXY Tag Name YESBBXXXXY Model Name MC-2 NOBBXXXXY Tag Comment YESBBXXXXY Tag Mark Aux.1 NOBBXXXXY Lvl 3 NOBBXXXXY Switch Position Label RUN,,STOP,RUN NOBBXXXXY Label Direct NOBBXXXXY Upper Window YESBBXXXXY Button Color/Top Background Color NOBBXXXXY Button Color/Bottom Background Color NOBBXXXXY Display FV bar No NOBBXXXXY Upper Equipment Name YES

BBXXXXYInput Signal Conversion/Input Signal

Conversion2-position Status Input NO

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BBXXXXYInput Signal

Conversion/Direction of Answerback

DIRECT Direct NO

BBXXXXYRelease Answerback

Check Mask0

PV=MV or MTM Timeout

NO

BBXXXXY Answerback Check BOTH Both Sides NOBBXXXXY Alarm Level 5 User(5) NOBBXXXXY Input Open Alarm HL Both NOBBXXXXY Output Open Alarm YES Yes NOBBXXXXY Bad Connection Alarm NO No NO

BBXXXXYInching/Full-stroke Time

Width0 NO

BBXXXXY Serial Startup Group 0 NOBBXXXXY Answerback Tracking YES Yes NO

BBXXXXYInterlock Input Signal

DirectionDIRECT Direct NO

BBXXXXYOutput when interlock

status is trueOFF Close NO

BBXXXXYHold output when

interlockedNO Invalid NO

BBXXXXYModify pulsive output when interlock status

true.STATUS Status Output NO

BBXXXXYFallback operation on the

abnormal answer-backNO NONE NO

BBXXXXYOutput Signal

Conversion/Output Signal Conversion

2PL2-position Pulsive

OutputNO

BBXXXXYOutput Signal

Conversion/Output Action Direction

DIRECT Direct NO

Table 13: MOT-BK: BBXXXXY MC-2 Block parameters

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MOT ST1-MMXXXXY ST16 Block parameters (MOT-BK ST1-BBXXXXY identical)

Tag name Item Caption AttributeST1-MMXXXXY Tag Name YESST1-MMXXXXY Model Name NO

ST1-MMXXXXY

Tag CommentBEFORE MC-

2NO

ST1-MMXXXXY

Tag Mark 3 Aux.1 NO

ST1-MMXXXXY

Lvl 6 6 NO

ST1-MMXXXXY

Upper Equipment Name

YES

ST1-MMXXXXY

Alarm Level 16 User(16) NO

ST1-MMXXXXY

Scan Period Basic Scan Basic Scan NO

ST1-MMXXXXY

Processing Timing/Start Timing

TPeriodic Execution

Type(T)NO

ST1-MMXXXXY

Processing Timing/Output Timing

EOutput Each Time

Conditions are Satisfied(E)

NO

ST1-MMXXXXY

Cxx Conditions YES

ST1-MMXXXXY

Axx Actions YES

Table 14: MOT ST1-MMXXXXY ST16 Block parameters

MOT LC1-MMXXXXY LC64 Block parameters (MOT-BK ST1-BBXXXXY identical)

Tag name Item Caption AttributeLC1-MMXXXXY Tag Name YESLC1-MMXXXXY Model Name NOLC1-MMXXXXY Tag Comment NOLC1-MMXXXXY Tag Mark Aux.1 NOLC1-MMXXXXY Lvl 6 NOLC1-MMXXXXY Upper Equipment Name YESLC1-MMXXXXY Alarm Level User(16) NOLC1-MMXXXXY Scan Period Basic Scan NO

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LC1-MMXXXXY Processing Timing/Start Timing Periodic Execution Type(T) NOLC1-MMXXXXY Xyy YES

Table 15: MOT LC1-MMXXXXY LC64 Block parameters

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MOT CL1-MMXXXXY Calculation block parameters (MOT-BK ST1-BBXXXXY identical)

Tag name Item Caption AttributeCL1-MMXXXXY Tag Name YESCL1-MMXXXXY Model Name NOCL1-MMXXXXY Tag Comment NOCL1-MMXXXXY Tag Mark Aux.1 NOCL1-MMXXXXY Lvl 5 NOCL1-MMXXXXY Processing Timing/Start Timing Periodic Execution NOCL1-MMXXXXY Upper Equipment Name YESCL1-MMXXXXY Alarm Level User(16) NOCL1-MMXXXXY Input Open Alarm No Alarm NOCL1-MMXXXXY Bad Connection Alarm Yes NOCL1-MMXXXXY Alias YES

Table 16: MOT CL1-MMXXXXY Calculation block parameters

MOT PM1-MMXXXXY PBS10C block parameters (MOT-BK ST1-BBXXXXY identical)

Tag name Item Caption AttributePM1-MMXXXXY Tag Name YESPM1-MMXXXXY Model Name NOPM1-MMXXXXY Tag Comment NOPM1-MMXXXXY Tag Mark Aux.1 NOPM1-MMXXXXY Lvl 5 NOPM1-MMXXXXY Upper Equipment Name YESPM1-MMXXXXY Alarm Level User(16) NOPM1-MMXXXXY Bad Connection Alarm Yes NO

Table 17: MOT PM1-MMXXXXY PBS10C block parameters

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2.7.1.6. Sequence table

MOT ST16 processing (MOT-BK identical)

Figure 15: Sequence Table

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2.7.1.7. Logic detail

MOT

Figure 16: MOT Logic Detail

MOT-BK

Figure 17: MOT-BK

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2.7.2. PCS: MOT-ST

2.7.2.1. Hardwired I/O

DI

Tag NameTag Mark

Access Level

Btn1 color

Btn2 color

Description

MyhL-MMSSSSY 3 5 Green Green Run Status

MY-MMSSSSY 3 5 Green Green Availability

Table 18: Hardwired IO2.7.2.2. Software I/O

Annunciator

Label Tag comment DescriptionAccess Level

Tag mark

Alarm Priority

MMSSSSY-AMYMMSSSSY

UNAVAILABLEUnavailabili

ty5 3 6

Table 19: AnnunciatorPrintout Messages

Label Tag comment Description

%%PMMSSSSYR MMSSSSYR RUN Command Run

%%PMMSSSSYS MMSSSSYS STOP Command Stop

Switches

Tag Name Tag Comment Description Btn Color Tag Mark Level

MMSSSSY-MI MAINTENANCE INHIB Maint. Inhibition Red 7 7

Table 21 Switches

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Table 20: Print Message

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PBS10C:

PBS10C parameters Tag Comment

PM1-MMSSSSY.PV04 SRU (Calculated Running status)

PM1-MMSSSSY.PV05 SD (Discrepancy Status)

PM1-MMSSSSY.PV06 SDF (Fault Status)

PM1-MMSSSSY.MV02 SFP (Free/Piloted)

PM1-MMSSSSY.MV04 SIS (Inter Start Lock)

PM1-MMSSSSY.MV08 MXSL (0=TRIP)

PM1-MMSSSSY.MV09 SPL (Proc. Lock: SDV)

PM1-MMSSSSY.MV10 SRIL(Resulting Interlock Command)

PM1-MMSSSSY.SWOP[1] Inter Motors Timer Testing Inhibition

PM1-MMSSSSY.SWOP[2] Inter Motors Timer Launching Inhibition

Table 22: PBS10C2.7.2.3. SmartParts Overview

MOT_ST

Figure 18: SmartParts Overview

Blocks Parameters & Variables

Execution order

Tag NameModel Name

Tag CommentTag Mark

Alarm Level

Access Level

1 ST1-MMSSSSY ST16 BEFORE SI-1 3 16 6

2 LC1-MMSSSSY LC64 AFTER SI-1 3 16 6

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3 CL1-MMSSSSY CALCU 3 16 5

4 PM1-MMSSSSY PBS10C SWITCHES 3 16 5

5 MMSSSSY SI-1 TAGCOMMENT 3 5 7

Table 23: Blocks Parameters & Variables

2.7.2.4. Description Of The Function Blocks

MOT-ST SI-1 block parameters

Tag name Item Caption AttributeMMSSSSY Run Status NOMMSSSSY Tag Name YESMMSSSSY Model Name SI-1 NOMMSSSSY Tag Comment YESMMSSSSY Tag Mark Aux.1 NOMMSSSSY Lvl 5 NOMMSSSSY Scan Period Basic Scan NOMMSSSSY Switch Position Label RUN,,STOP,RUN NOMMSSSSY Label Direct NOMMSSSSY Status Change Message Bypass Yes NOMMSSSSY Upper Window YESMMSSSSY Upper Equipment Name YESMMSSSSY Direction of Answerback Direct YESMMSSSSY Alarm Level User(7) NOMMSSSSY Input Open Alarm Both NOMMSSSSY Bad Connection Alarm YES NO

Table 24: MOT-ST SI-1 block parameters

MOT-ST ST1-MMSSSSY ST16 Block parameters

Tag name Item CaptionAttribute

ST1-MMSSSSY

Tag Name YES

ST1-MMSSSSY

Model Name NO

ST1-MMSSSSY

Tag Comment NO

ST1-MMSSSSY

Tag Mark Aux.1 NO

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ST1-MMSSSSY

Lvl 6 NO

ST1-MMSSSSY

Upper Equipment Name YES

ST1-MMSSSSY

Alarm Level User(16) NO

ST1-MMSSSSY

Scan Period Basic Scan NO

ST1-MMSSSSY

Processing Timing/Start Timing

Periodic Execution Type(T) NO

ST1-MMSSSSY

Processing Timing/Output Timing

Output Each Time Conditions are Satisfied(E)

NO

ST1-MMSSSSY

Cxx YES

ST1-MMSSSSY

Axx YES

Table 25: MOT-ST ST1-MMSSSSY ST16 Block parameters

MOT-ST LC1-MMSSSSY LC64 Block parameters

Tag name Item Caption AttributeLC1-MMSSSSY Tag Name YESLC1-MMSSSSY Model Name NOLC1-MMSSSSY Tag Comment NOLC1-MMSSSSY Tag Mark Aux.1 NOLC1-MMSSSSY Lvl 6 NOLC1-MMSSSSY Upper Equipment Name YESLC1-MMSSSSY Alarm Level User(16) NOLC1-MMSSSSY Scan Period Basic Scan NO

LC1-MMSSSSY Processing Timing/Start TimingPeriodic Execution

Type(T)NO

LC1-MMSSSSY Xyy YES

Table 26: MOT-ST LC1-MMSSSSY LC64 Block parameters

MOT-ST CL1-MMSSSSY Calculation block parameters

Tag name Item Caption AttributeCL1-MMSSSSY Tag Name YESCL1-MMSSSSY Model Name NOCL1-MMSSSSY Tag Comment NOCL1-MMSSSSY Tag Mark Aux.1 NO

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CL1-MMSSSSY Lvl 5 NOCL1-MMSSSSY Processing Timing/Start Timing Periodic Execution NOCL1-MMSSSSY Upper Equipment Name YES

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CL1-MMSSSSY Alarm Level 16 User(16) NOCL1-MMSSSSY Input Open Alarm NO No Alarm NOCL1-MMSSSSY Bad Connection Alarm YES Yes NOCL1-MMSSSSY Alias aliases YES

Table 27: MOT-ST CL1-MMSSSSY Calculation block parameters

MOT-ST PM1-MMSSSSY PBS10C block parameters

Tag name Item Caption AttributePM1-MMSSSSY Tag Name YESPM1-MMSSSSY Model Name NOPM1-MMSSSSY Tag Comment NOPM1-MMSSSSY Tag Mark Aux.1 NOPM1-MMSSSSY Lvl 5 NOPM1-MMSSSSY Upper Equipment Name YESPM1-MMSSSSY Alarm Level User(16) NOPM1-MMSSSSY Bad Connection Alarm Yes NO

Table 28: MOT-ST

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OML100 [ODUDU & FSO UNITY] ICSS – SYSTEM Upgrade

Detailed Engineering

SMR/SOR/SIN nbr.

S0R-100-09-001

PCS Standard Functions Implementation-Typical MOT page: 39/40

COMPANYref. number NG-ODU-XODU-IPA-070041

Rev. Status Rev. date Discipline INS

1.0 IFR 11-Nov-14

Doc. Type PRC

CONTRACTOR ref: NG-ODU-XODU-IPA-070041 -- -- -- (Syst.) Unit XX_GEMU

Page 40: NG-ODU-XODU-IPA-070041-Typical MOT-Rev4.0.doc

2.7.2.5. Sequence table ST1-MMSSSSY

MOT-ST ST16 processing

Table 29: Sequence Chart

This document is the property of TOTAL and must not be reproduced, stored or disclosed without permission from COMPANY.

OML100 [ODUDU & FSO UNITY] ICSS – SYSTEM Upgrade

Detailed Engineering

SMR/SOR/SIN nbr.

S0R-100-09-001

PCS Standard Functions Implementation-Typical MOT page: 40/40

COMPANYref. number NG-ODU-XODU-IPA-070041

Rev. Status Rev. date Discipline INS

1.0 IFR 11-Nov-14

Doc. Type PRC

CONTRACTOR ref: NG-ODU-XODU-IPA-070041 -- -- -- (Syst.) Unit XX_GEMU