College Code REAP: 1031,   CMAT: 302
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Course Outcomes:

 

CO1: Analyze power flows to resolve computational issues in Large-scale Power Systems.

  • Reiterate structure and components of power system to formulate Bus Admittance Matrix.
  • Apply numerical methods (Gauss-Seidel and Newton-Raphson) to solve power flow equations

CO2: Evaluate the impact of stability constraints in synchronous grids;

  • Analyze swing Equations of a SMIB (synchronous machine connected to an infinite bus)
  • Apply Equal Area Criterion on power angle curve for steady-state & transient stability analysis.
  • Execute Fault analysis for loss of synchronism in a SMIB.
  • Analyze the effect of generation rescheduling and series compensation of transmission lines on stability.

CO3: Control the frequency and voltage by applying different methods .

CO4: Acquire the knowledge of preventive and emergency control actions

  • Monitor and control the Energy centre through SCADA systems
  • Estimate different States of power system and assess power system security
  • Analyze contingency

CO5: Acquire knowledge about the Regulatory framework, ancillary services, power system economics and power management.

  • Analyze and design different Electricity Market Models
  • Implement demand side management in the prospect of optimum utilization of electrical energy by dynamic pricing strategy

 

Mapping Matrix of CO's and PO's

 

COs

PO1

PO2

PO3

PO4

PO5

PO6

PO7

PO8

PO9

PO10

PO11

PO12

PSO1

PSO2

CO1

3

3

3

2

-

-

-

-

-

-

-

2

3

-

CO2

3

3

3

2

-

-

-

-

-

-

-

2

3

-

CO3

3

3

3

2

-

-

-

-

-

-

-

2

3

2

CO4

3

3

3

2

-

-

-

-

-

-

-

2

3

2

CO5

3

3

3

-

-

3

3

3

-

-

2

3

3

2

Avg

3

3

3

2

-

3

3

3

-

-

2

2

3

2

 

 

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