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Advances in Power System Modelling, Control and Stability Analysis

✍ Scribed by Frederico Milano


Publisher
The Institution of Engineering and Technology
Year
2016
Tongue
English
Leaves
496
Series
IET power and energy series 86
Category
Library

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✦ Synopsis


This book captures the variety of new methodologies and technologies that are changing the way modern electric power systems are modelled, simulated and operated. It combines theoretical aspects with practical considerations and benchmarks test systems and real-world applications. Part 1 presents research on power system modelling and includes applications of telegrapher equations, power flow analysis, discrete Fourier transformation and stochastic differential equations. Part 2 focuses on power system operation and control, and presents insights on optimal power flow, real-time control and state estimation techniques. Finally, Part 3 describes advances in the stability analysis of power systems and covers voltage stability, transient stability, time delays, and limit cycles.

With contributions from well-known authors who are accepted authorities in their respective fields, this is an important collection of high-quality papers summarizing state-of-the-art research. This is essential reading for researchers in academia and industry and advanced students in electric power systems modelling and control

✦ Table of Contents


Content: Part I: ModellingChapter 1: Telegrapher's equations for field-to-transmission line interactionChapter 2: An affine arithmetic-based methodology for uncertain power flow and optimal power flow analysesChapter 3: DFT-based synchrophasor estimation processes for Phasor Measurement Units applications: algorithms definition and performance analysisChapter 4: Modelling power systems with stochastic processes Part II: ControlChapter 5: Optimization methods for preventive/corrective control in transmission systemsChapter 6: Static and recursive PMU-based state estimation processes for transmission and distribution power gridsChapter 7: Real-time applications for electric power generation and voltage controlChapter 8: Optimal control processes in active distribution networks Part III: Stability AnalysisChapter 9: Time-domain simulation for transient stability analysisChapter 10: Voltage security in modern power systemsChapter 11: Small-signal stability and time-domain analysis of delayed power systemsChapter 12: Shooting-based stability analysis of power system oscillations Part IV: AppendicesAppendix A: Outlines of stochastic calculusAppendix B: Data of lines, loads and distributed energy resourcesAppendix C: Proofs and tools for DDAEsAppendix D: Numerical aspects of the probe-insertion technique

✦ Subjects


Réseaux électriques (Énergie) -- Modèles mathématiques.;Réseaux électriques (Énergie) -- Régulation.;Réseaux électriques (Énergie);Electric power systems -- Mathematical models.;Electric power systems -- Control.;Electric power system stability.


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