Damping of electromechanical oscillations using power system stabilizers

Includes bibliographical references. === This thesis deals with the damping of electromechanical oscillations using Power System Stabilizers (PSS). The thesis focuses on three problems associated with the damping of these oscillations, namely the determination of the optimal locations of the PSS, th...

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Main Author: Ahmed, Shaheen Sooleman
Other Authors: Petroianu, Alexander
Format: Doctoral Thesis
Language:English
Published: University of Cape Town 2014
Subjects:
Online Access:http://hdl.handle.net/11427/9644
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spelling ndltd-netd.ac.za-oai-union.ndltd.org-uct-oai-localhost-11427-96442020-12-10T05:11:02Z Damping of electromechanical oscillations using power system stabilizers Ahmed, Shaheen Sooleman Petroianu, Alexander Electrical Engineering Includes bibliographical references. This thesis deals with the damping of electromechanical oscillations using Power System Stabilizers (PSS). The thesis focuses on three problems associated with the damping of these oscillations, namely the determination of the optimal locations of the PSS, the determination of the best control structure of the PSS and the design of robust PSS. We develop two new methods for determining the optimal locations of the PSS. These two methods are based on Total Modified Coupling Factors (TMC) and optimization by Simulated Annealing (SA). The TMC is a measure of the damping influence of each machine pair on several power system modes. The TMC incorporates the effect of the performance and the type of excitation system of the generator. The method based on TMC is tested on a nine-bus benchmark network. In the method based on SA, we formulate the PSS placement problem as a discrete nonlinear optimization problem. The objective function corresponds to the damping of the electromechanical modes of the system. In this method, the placement is performed simultaneously for all PSS. Using SA, we obtain a placement scheme which guarantees that the undesired poles can be controlled with finite control energy. As a result of the optimization formulation, the method based on SA is computationally more intensive than the method based on TMC. We demonstrate the method based on SA on two networks namely, a seven-bus network and a 35-bus equivalent of the Eskom network. The problem of determining the control structure for damping of the electromechanical oscillations is composed of three aspects namely, the type of feedback, the type of signal and the type of control. 2014-11-15T19:35:49Z 2014-11-15T19:35:49Z 1995 Doctoral Thesis Doctoral PhD http://hdl.handle.net/11427/9644 eng application/pdf University of Cape Town Faculty of Engineering and the Built Environment Department of Electrical Engineering
collection NDLTD
language English
format Doctoral Thesis
sources NDLTD
topic Electrical Engineering
spellingShingle Electrical Engineering
Ahmed, Shaheen Sooleman
Damping of electromechanical oscillations using power system stabilizers
description Includes bibliographical references. === This thesis deals with the damping of electromechanical oscillations using Power System Stabilizers (PSS). The thesis focuses on three problems associated with the damping of these oscillations, namely the determination of the optimal locations of the PSS, the determination of the best control structure of the PSS and the design of robust PSS. We develop two new methods for determining the optimal locations of the PSS. These two methods are based on Total Modified Coupling Factors (TMC) and optimization by Simulated Annealing (SA). The TMC is a measure of the damping influence of each machine pair on several power system modes. The TMC incorporates the effect of the performance and the type of excitation system of the generator. The method based on TMC is tested on a nine-bus benchmark network. In the method based on SA, we formulate the PSS placement problem as a discrete nonlinear optimization problem. The objective function corresponds to the damping of the electromechanical modes of the system. In this method, the placement is performed simultaneously for all PSS. Using SA, we obtain a placement scheme which guarantees that the undesired poles can be controlled with finite control energy. As a result of the optimization formulation, the method based on SA is computationally more intensive than the method based on TMC. We demonstrate the method based on SA on two networks namely, a seven-bus network and a 35-bus equivalent of the Eskom network. The problem of determining the control structure for damping of the electromechanical oscillations is composed of three aspects namely, the type of feedback, the type of signal and the type of control.
author2 Petroianu, Alexander
author_facet Petroianu, Alexander
Ahmed, Shaheen Sooleman
author Ahmed, Shaheen Sooleman
author_sort Ahmed, Shaheen Sooleman
title Damping of electromechanical oscillations using power system stabilizers
title_short Damping of electromechanical oscillations using power system stabilizers
title_full Damping of electromechanical oscillations using power system stabilizers
title_fullStr Damping of electromechanical oscillations using power system stabilizers
title_full_unstemmed Damping of electromechanical oscillations using power system stabilizers
title_sort damping of electromechanical oscillations using power system stabilizers
publisher University of Cape Town
publishDate 2014
url http://hdl.handle.net/11427/9644
work_keys_str_mv AT ahmedshaheensooleman dampingofelectromechanicaloscillationsusingpowersystemstabilizers
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