Transmission & Distributionas.xlsx
Transcript of Transmission & Distributionas.xlsx
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Name of faculty memberRemarks with
signature
Name of the Subject
Subject Code
Proposed Lectures to bedelivered:
Theory Marks
Sessional Marks
Total Marks
Classes starts on
Measurement Methodology
Classes On
Unit Lecture No. Topic to be coveredReference
Book
Date of
coverage
1 , 2 & 3
Examples and application of open
loop and close loop systems.
4 & 5 Brief idea of multivariable control system
8 & 9 Differential equations
10 & 11 block diagram reduction technique
12 & 13 signal flow graph method
14 & 15Transient
response analysis
16 , 17 & 18 Steady state error & error constants
19 & 20Dynamic error and dynamic error
coefficient
21 &22 Performance Indices
23 , 24 & 25 Bode plot
Design specification in frequency domain
and
their co-relation with time domain.
Class performance + Class test + Assignment + Attendance
Monday to Saturday
II
III
Brief idea of Z-transform & digital control
systems6 & 7
26 , 27 & 28
I
Teaching Plan 2011 - 2012(Even Semester)
VIKRAM SINGH
CONTROL SYSTEM
6EC5
54
80
20
100
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29 , 30 & 31 Absolute stability and relative stability
32 & 33 Rouths stability criterion
34 & 35 Hurwitz criterion
36 , 37 &38 Root locus method of analysis
39 , 40 &41 Polar plots, Nyquist stability criterion
42 , 43 &44 M and N loci,Nicholas charts
45 &46Concepts of state, state variable and state
model
47 & 48State models for linear continuous time
systems
49 & 50Brief idea of state variable analysis in
discrete time domain
51 & 52Transfer functions, Solution of state
equation
53 & 54 Concepts of controllability & observability
1 control system NAGRATH
2 control system MANKE
V
Reference Books:
IV
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Name of faculty member
Remarks
with
signature
Name of the Subject
Subject Code
Proposed Lectures to be
delivered:
Theory Marks
Sessional Marks
Total Marks
Classes starts on
Measurement Methodology
Classes On
Unit Lecture No. Topic to be coveredReference
Book
Date of
coverage
1 introduction
2 , 3 & 4 PCM
6DPCM
7 delta modulation,
8 & 9Signal to quantization noise ratio in PCM and
delta modulation
10 ADM, T1 Carrier System
11 Matched filter detection.
12 Error probability in PCM system.
13 & 14 Numerical Problem
15 introduction
16 , 17 & 18 Line coding
19 Inter symbol interference20 Pulse shaping
21 Nyquist criterion
22 Raised cosine spectrum
23 Numerical Problem
5 Uniform and Non-uniform quantization.
II
I
Teaching Plan 2011 - 2012(Even Semester)
VIKRAM SINGH
DIGITAL COMMUNICATION
6EC 4
54
80
20
100
Class performance + Class test + Assignment + Attendance
Monday to Saturday
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24 introduction
25 & 26 Geometric interpretation of signals
27 Orthogonalization
28 & 29 ASK modulation & demo. Techniques
30 & 31 BPSK modulation & demo. Techniques
32 & 33 BFSK modulation & demo. Techniques34 & 35 QPSK modulation & demo. Techniques
36 &37 MSK modulation & demo. techniques
38 & 39 Calculation of error probabilities.
40 Numerical Problem
41 Amount of Information, Average Information,
42 Entropy, Information rate
43Increase in Average information per bit by
coding
44 Shannon's Theorem and Shannon's bound
45 Capacity of a Gaussian Channel
46 BW-S/N trade off
47 Numerical Problem
48 Coding and decoding of Information
49 Hamming code
50 Single Parity-Bit Code
51 Linear Block code
52 cyclic code53 convolutional code.
54 Numerical Problem
1 Digital communication systemsimon
haykin
2 Digital communication systemsanjay
sharma
Reference Books:
III
IV
V
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Remarks
Name of the
Subject
Subject Code
Proposed no of
Lectures to be
delivered:
Theory Marks
Sessional Marks
Total Marks
Classes starts on
Measurement
Methodolo
Classes On
UnitLecture
No.Topic to be covered Reference Book Date of coverage
Supply systems
1 Basic network of power system 1
2 Transmission and distribution voltage 1
3 effect of system voltage on size of conductor and losses 1
4 Comparison of DC 2- wire, DC 3- wire 1
5 1- phase AC and 3- phase AC (3- wire and 4- wire) syste 1
Distribution Systems
6 Primary and secondary distribution systems 1
7 feeder, distributor and service mains 1
8 Radial and ring- main distribution systems 1
9 & 10 Kelvins law for conductor size 1
Mechanical features of overhead lines
11 Conductor material and types of conductor 1
12 & 13 Conductor arrangements and spacing 1
14 & 15 Calculation of sag and tension 1
16 supports at different levels 1
17 & 18 effect of wind and ice loading 1
19 & 20 stringing chart and sag template 1
21 Conductor vibrations and vibration dampers 1
Teaching Plan 2013 - 2014(Odd Semester)
Ankur Sharma
Transmission & Distribution of Electrical Power
5EE5
54
80
20
100
16/07/2012
I
Mix of class test, surprising test, Assignment
Monday to Saturday
II
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Parameters of Transmission Lines
22 , 23 & 24Resistance inductance and capacitance of overhead
lines1
25 & 26 effect of earth, line transposition 1
27 & 28 Geometric mean radius and distance 1
29 & 30
Inductance and capacitance of line with symmetrical
and unsymmetrical spacing 1
31 & 32Inductance and capacitance of double circuit lines
1
33 Skin and proximity effects. 1
34 & 35Equivalent circuits and performance of short and
medium transmission lines1
36 ,37 & 38 Generalized ABCD line constants 1
39equivalent circuit and performance of long
transmission line1
40 Ferranti effect 1
41 Interference with communication circuits 1
42 Power flow through a transmission line 1
43Corona: Electric stress between parallel conductors
1
44Disruptive critical voltage and visual critical voltage
1
45 Factors affecting corona 1
46 Corona power loss. Effects of corona 1
Insulators
47Pin, shackle, suspension, post and strain insulators
1
48 Voltage distribution across an insulator string 1
49grading and methods of improving string efficiency
1
Underground Cables
50Conductor, insulator, sheathing and armoring materials
1
51 Types of cables 1
52Insulator resistance and capacitance calculation,
Electrostatic Stress1
53 reduction of maximum stresses, Causes of breakdown 1
54Thermal rating of cable, Introduction to oil filled & gas
filled cables1
1Generation,Transmission & Distribution of Electrical
Power By Bakshi & BakshiReference Books:
III
V
IV