Power System Small Signal Stability Analysis and Control

Power System Small Signal Stability Analysis and Control
Author: Debasish Mondal,Abhijit Chakrabarti,Aparajita Sengupta
Publsiher: Academic Press
Total Pages: 420
Release: 2020-02-20
Genre: Technology & Engineering
ISBN: 9780128177693

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Power System Small Signal Stability Analysis and Control, Second Edition analyzes severe outages due to the sustained growth of small signal oscillations in modern interconnected power systems. This fully revised edition addresses the continued expansion of power systems and the rapid upgrade to smart grid technologies that call for the implementation of robust and optimal controls. With a new chapter on MATLAB programs, this book describes how the application of power system damping controllers such as Power System Stabilizers and Flexible Alternating Current Transmission System controllers—namely Static Var Compensator and Thyristor Controlled Series Compensator —can guard against system disruptions. Detailed mathematical derivations, illustrated case studies, the application of soft computation techniques, designs of robust controllers, and end-of-chapter exercises make it a useful resource to researchers, practicing engineers, and post-graduates in electrical engineering. Considers power system small signal stability and provides various techniques to mitigate it Offers a new and straightforward method of finding the optimal location of PSS in a multi-machine power system Includes MATLAB programs and simulations for practical applications

Power System Small Signal Stability Analysis and Control

Power System Small Signal Stability Analysis and Control
Author: Debasish Mondal,Abhijit Chakrabarti,Aparajita Sengupta
Publsiher: Academic Press
Total Pages: 420
Release: 2020-02
Genre: Technology & Engineering
ISBN: 9780128177686

Download Power System Small Signal Stability Analysis and Control Book in PDF, Epub and Kindle

Power System Small Signal Stability Analysis and Control, Second Edition analyzes severe outages due to the sustained growth of small signal oscillations in modern interconnected power systems. This fully revised edition addresses the continued expansion of power systems and the rapid upgrade to smart grid technologies that call for the implementation of robust and optimal controls. With a new chapter on MATLAB programs, this book describes how the application of power system damping controllers such as Power System Stabilizers and Flexible Alternating Current Transmission System controllers-namely Static Var Compensator and Thyristor Controlled Series Compensator -can guard against system disruptions. Detailed mathematical derivations, illustrated case studies, the application of soft computation techniques, designs of robust controllers, and end-of-chapter exercises make it a useful resource to researchers, practicing engineers, and post-graduates in electrical engineering. Considers power system small signal stability and provides various techniques to mitigate it Offers a new and straightforward method of finding the optimal location of PSS in a multi-machine power system Includes MATLAB programs and simulations for practical applications

Small signal stability control and dynamic performance of power systems

Small signal stability  control and dynamic performance of power systems
Author: M.J Gibbard,D.J. Vowles,P. Pourbeik
Publsiher: University of Adelaide Press
Total Pages: 686
Release: 2015-07-15
Genre: Technology & Engineering
ISBN: 9781925261035

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A thorough and exhaustive presentation of theoretical analysis and practical techniques for the small-signal analysis and control of large modern electric power systems as well as an assessment of their stability and damping performance.

Small Signal Analysis of Power Systems

Small Signal Analysis of Power Systems
Author: M. A. Pai,D. P. Sen Gupta,K. R. Padiyar
Publsiher: Alpha Science Int'l Ltd.
Total Pages: 308
Release: 2004
Genre: Electric power systems
ISBN: 1842652060

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Power system oscillations without a big disturbance occur spontaneously in a power system and if they are not damped out properly may lead to grid failure. In this book we examine the methodology to study this phenomenon from several angles. Modeling the system to investigate these oscillations is given top priority along with physical interpretation of the phenomenon. The book covers low frequency 1-3 Hz as well as sub synchronous oscillations in the 10-50 Hz range. The latter are called torsional oscillations. Design of Power system stabilizers as well as damping techniques for sub synchronous oscillations are discussed. Modeling and design of FACTS devices is included. The small signal analysis of multimachine systems along with the selective computation of Eigen value(s) of interest in a large system is presented.

Small Signal Stability Analysis of Power Systems Integrated with Variable Speed Wind Generators

Small Signal Stability Analysis of Power Systems Integrated with Variable Speed Wind Generators
Author: Wenjuan Du,Haifeng Wang,Siqi Bu
Publsiher: Springer
Total Pages: 354
Release: 2018-09-03
Genre: Technology & Engineering
ISBN: 9783319941684

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This book reviews and examines how power system low-frequency power oscillations and sub-synchronous oscillations may be affected by grid connection of wind power generation. Grid connection of wind power generation affects the power system small-signal stability and has been one of the most actively pursued research subjects in power systems and power electronics engineering in the last ten years. This book is the first of its kind to cover the impact of wind power generation on power system low-frequency oscillations and sub-synchronous oscillations. It begins with a comprehensive overview of the subject and progresses to modeling of power systems and introduces the application of conventional methods, including damping torque analysis, modal analysis and frequency-domain analysis, presented with detailed examples, making it useful for researchers and engineers worldwide.

Small Signal Stability Control and Dynamic Performance of Power Systems

Small Signal Stability  Control and Dynamic Performance of Power Systems
Author: Michael & Pourbeik Gibbard (Pouyan & Vowles, David),Pouyan Pourbeik,David Vowles
Publsiher: Unknown
Total Pages: 135
Release: 2015-07-01
Genre: Electronic Book
ISBN: 1925261026

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Small Signal Stability Modelling and Optimization of Microgrids

Small Signal Stability Modelling and Optimization of Microgrids
Author: Simon Eberlein
Publsiher: BoD – Books on Demand
Total Pages: 250
Release: 2021-08-31
Genre: Technology & Engineering
ISBN: 9783754338674

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The stability of power systems and microgrids is compromised by the increasing penetration with power electronic devices, such as wind turbines, photovoltaics and batteries. A simulation and optimization environment for such low-inertia systems is created. It is investigated how accurate the models need to be to capture the prevailing modes. An evolutionary algorithm tailored to optimization problems with computationally intensive fitness evaluation is proposed in order to optimized the controller parameters of grid-forming and grid-supporting distributed generators. It becomes apparent that microgrids dominated by grid-forming inverters are very stable systems when well-designed and optimized controllers are used. Model simplifications, such as the neglect of inner control loops of inverters, must be examined carefully, as they can lead to an inaccurate stability assessment.

Power System Stability Response and Control Using Small Signal Analysis

Power System Stability Response and Control Using Small Signal Analysis
Author: Mark Germanos
Publsiher: Unknown
Total Pages: 150
Release: 2015
Genre: Eigenvalues
ISBN: OCLC:936118553

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Small signal stability analysis involves the investigation of small perturbation impacts in the operating point of power systems on system stability. Small signal stability is typically related to the generator and load properties. The purpose of this investigation is to examine the effects of small disturbances on system stability and determine the best locations to place power system stabilizers in order to avoid instability due to these disturbances. This will be accomplished by evaluating the eigenvalues and eigenvectors of the linearized differential and algebraic equations of the system. These calculations facilitate determination of the so called participation factors, which will then be used to identify the relevant modes of the system that are pushing the system towards instability. Finally, best locations for power system stabilizers to minimize the effects of these dominant modes and to stabilize the system will be identified. IEEE 39 Bus test system will be used to illustrate the stability analysis as well as the effective stabilization of the system by proper placement of power system stabilizers for various power system contingencies.