LQR tuning of power system stabilizer for damping oscillations

Power System Stabilizers (PSS) are added to excitation systems to enhance the dampingduring low frequency oscillations. In this paper, the design of PSS for single machine connected to aninfinite bus using optimal control techniques is considered. A method for shifting the unstable open-loop poles t...

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Main Author: Mustafa, Mohamad Wazir
Format: Conference or Workshop Item
Published: 2007
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Online Access:http://eprints.utm.my/id/eprint/14202/
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spelling my.utm.142022017-08-08T08:44:53Z http://eprints.utm.my/id/eprint/14202/ LQR tuning of power system stabilizer for damping oscillations Mustafa, Mohamad Wazir TK Electrical engineering. Electronics Nuclear engineering Power System Stabilizers (PSS) are added to excitation systems to enhance the dampingduring low frequency oscillations. In this paper, the design of PSS for single machine connected to aninfinite bus using optimal control techniques is considered. A method for shifting the unstable open-loop poles to optimum positions is presented. In each step of this approach, I solve a first-order or asecond-order linear matrix Lyapunov equation for shifting unstable pole. This presented methodyields a solution, which is optimal with respect to a quadratic performance index. The attractivefeature of this method is that it enables solutions to complex problem to be easily found withoutsolving any non-linear algebraic Riccati equation. The gain feedback is calculated one time only andit works over wide range of operating conditions. A comparison between the effect of the PSS basedon conventional approach, and the proposed Linear Quadratic Regulator (LQR ) is reported usingMATLAB/SIMULINK for simulation. 2007 Conference or Workshop Item PeerReviewed Mustafa, Mohamad Wazir (2007) LQR tuning of power system stabilizer for damping oscillations. In: Proceedings International Conference on Adaptive Science & Technology (ICAST 2007), 2007, Ghana.
institution Universiti Teknologi Malaysia
building UTM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Malaysia
content_source UTM Institutional Repository
url_provider http://eprints.utm.my/
topic TK Electrical engineering. Electronics Nuclear engineering
spellingShingle TK Electrical engineering. Electronics Nuclear engineering
Mustafa, Mohamad Wazir
LQR tuning of power system stabilizer for damping oscillations
description Power System Stabilizers (PSS) are added to excitation systems to enhance the dampingduring low frequency oscillations. In this paper, the design of PSS for single machine connected to aninfinite bus using optimal control techniques is considered. A method for shifting the unstable open-loop poles to optimum positions is presented. In each step of this approach, I solve a first-order or asecond-order linear matrix Lyapunov equation for shifting unstable pole. This presented methodyields a solution, which is optimal with respect to a quadratic performance index. The attractivefeature of this method is that it enables solutions to complex problem to be easily found withoutsolving any non-linear algebraic Riccati equation. The gain feedback is calculated one time only andit works over wide range of operating conditions. A comparison between the effect of the PSS basedon conventional approach, and the proposed Linear Quadratic Regulator (LQR ) is reported usingMATLAB/SIMULINK for simulation.
format Conference or Workshop Item
author Mustafa, Mohamad Wazir
author_facet Mustafa, Mohamad Wazir
author_sort Mustafa, Mohamad Wazir
title LQR tuning of power system stabilizer for damping oscillations
title_short LQR tuning of power system stabilizer for damping oscillations
title_full LQR tuning of power system stabilizer for damping oscillations
title_fullStr LQR tuning of power system stabilizer for damping oscillations
title_full_unstemmed LQR tuning of power system stabilizer for damping oscillations
title_sort lqr tuning of power system stabilizer for damping oscillations
publishDate 2007
url http://eprints.utm.my/id/eprint/14202/
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score 13.160551