Computer Aided Power Systems Analysis 2nd Edition by George Kusic – Ebook PDF Instant Download/Delivery: 1420061070, 9781420061079
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Product details:
ISBN 10: 1420061070
ISBN 13: 9781420061079
Author: George Kusic
Computer Aided Power Systems Analysis 2nd Table of contents:
1. Central Operation and Control of Power Systems
1.1 General
1.2 Control Center of a Power System
1.3 Digital Computer Configuration
1.4 Automatic Generation Control for a Power System
1.4.1 Area Control Error
1.4.1.1 CPS1, 1 Minute Average
1.4.1.2 CPS2, 10 Minute Average
1.4.1.3 Disturbance Conditions
1.5 Operation without Central Computers or AGC
1.6 Parallel Operation of Generators
1.7 Network Power Flows
1.7.1 Oversimplified Power Flow (dc Power Flow)
1.8 Area Lumped Dynamic Model
Problems
References
2. Elements of Transmission Networks
2.1 Phasor Notation
2.2 Symmetrical Component Transformation
2.2.1 Floating Voltage Base Per-Unit Systems
2.3 Overhead Transmission Line Representation
2.3.1 Inductance of Long Parallel Conductors
2.3.2 Balanced Three-Phase Lines
2.3.3 Unbalanced Lines
2.3.4 Capacitance of Transmission Lines
2.3.5 General Method to Determine Aerial Transmission Line Parameters
2.4 Transformer Representation
2.4.1 Wye–Delta and Phase-Shift Transformers
2.4.2 Multiple-Winding Transformers
2.5 Synchronous Machine Representation
2.5.1 Steady-State Synchronous Machine Equivalent
2.5.1.1 Short-Circuit Characteristics
2.5.2 Transient Time-Frame Synchronous Machine Equivalent
2.5.3 Subtransient Time-Frame Synchronous Machine Equivalent
Problems
References
3. Bus Reference Frame
3.1 Linear Network Injections and Loads
3.2 Bus Impedance Matrix for Elements without Mutual Coupling
3.2.1 Adding a Tree Branch to Bus p
3.2.2 Adding a Tree Branch to the Reference
3.2.3 Adding a Cotree Link between Buses p and q
3.2.4 Adding a Cotree Link from Bus p to Reference
3.3 The Bus Admittance Matrix
3.3.1 Bus Impedance Matrix for Elements with Mutual Coupling
3.4 Inversion of the YBUS Matrix for Large Systems
3.4.1 Tinney’s Optimally Ordered Triangular Factorization
3.4.1.1 Tinney’s Schemes for Near-Optimal Ordering
3.4.2 Several Iterative Methods for Linear Matrices
3.4.2.1 Gaussian Iteration
3.4.2.2 Gauss-Seidel Iteration
Problems
References
4. Network Fault and Contingency Calculations
4.1 Fault Calculations Using ZBUS
4.1.1 Approximations Common to Short-Circuit Studies
4.2 Fault Calculations Using the YBUS Table of Factors
4.3 Contingency Analysis for Power Systems
4.3.1 Contingency Analysis for Power Systems
4.3.2 Contingencies Using ZBUS in a Superposition Method
4.3.3 ZBUS Line Contingency Method
4.4 Using the YBUS Table of Factors for Contingencies
4.4.1 Double Contingencies Using YBUS Table of Factors (Balanced Case)
Problems
References
5. Power Flow on Transmission Networks
5.1 Slack Bus
5.2 ZBUS Formulation for Load-Flow Equations
5.3 Gauss or Gauss-Seidel Iteration Using YBUS
5.4 Newton-Raphson Iterative Scheme Using YBUS
5.4.1 Approximations to the Jacobian in the Newton-Raphson Method
5.5 Adjustment of Network Operating Conditions
5.6 Operational Power Flow Programs
Problems
References
6. Generator Base Power Setting
6.1 Economic Dispatch of Generation without Transmission Line Losses
6.2 Economic Dispatch of Generation with Line Losses
6.3 On-Line Execution of the Economic Dispatch
6.4 Day-Ahead Economic Dispatch with a Variable Number of Units On-Line
6.5 Power Transmission Line Losses for Economic Dispatch
6.6 Utilizing the Load-Flow Jacobian for Economic Dispatch
6.7 Economic Exchange of Power between Areas
6.7.1 Economy A Program
Problems
References
7. State Estimation from Real-Time Measurements
7.1 The Line Power Flow State Estimator
7.2 State Estimation and Noisy Measurements
7.3 Monitoring the Power System
7.4 Determination of Variance Σ to Normalize Measurements
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Tags: George Kusic, Computer, Systems Analysis


