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The exhaustive list of topics in Computer Control Of Power Systems in which we provide Help with Homework Assignment and Help with Project is as follows:

  • Concepts:
    • Evolution of electric power systems
    • Structure  of power systems.
    • Various Types of Analysis and Time Scales.
    • Tools for Analysis.
    • Network Analyzer(NA), Transient Network Analyzer(TNA).
    • Digital Simulations.
  • General Background:
    • Review of network representation of power systems.
    • Three-phase power systems.
    • Steady state power flow and Short circuit studies.
  • Evolution of Automation:
    • Functions of Supervisory Control and Data Acquisition (SCADA) .
    • Energy Management Systems (EMS).
    • Real time computational requirements.
  • Concept of System Security:
    • State transition diagram.
    • Various states of power system operation.
    • Preventive control
    • Emergency Control and Restorative Control.
  • Power System State Estimation:
    • Network Topology.
    • Data structure Design
    • Topology Processing Algorithms.
    • Formulation of state estimation problem.
    • Various algorithms for state estimation.
    • Bad data detection and identification
    • Network observability.
    • Sample System Studies.
  • Static Security Analysis:
    • Types of Contingencies.
    • Contingency Methods and their Limitations.
    • Contingency Selection-Multiple criteria.
    • Security Analysis- various criteria.
    • Sample System Studies- Practical Aspects.
    • Advanced Topics.
    • Network Sensitivity Factors.
    • Concept of Relative Electrical Distances (RED).
  • Generation Control:
    • Generation model, Load model and Tie-line model.
    • Automatic Generation Control (AGC).
    • Limitations of conventional power flow models.
    • Online Power Flow Model.
    • Inclusion of Generation
    • Load and Tie-line characteristics.
    • Flat-Frequency Control
    • Flat-tie-line Control
    • Flat-tie-line-bias Control.
    • Examples of Power Flow in Interconnected Power Systems.
  • Active Power Dispatch:
    • Objectives of Active  Power Optimization.
    • Security oriented Dispatch.
    • Short term Load forecasting.
    • Unit commitment.
    • Alleviation of Network Overloads.
    • Sample System Studies.
  • Reactive Power Control:
    • Reactive Power Sources and Sinks.
    • Static Voltage Stability.
    • Methods of Static Voltage Stability Evaluation.
    • L-index Method.
    • Objective of Reactive Power Optimization.
    • Improvement of Voltage Stability.
    • Sample System Studies.