Voltage Stability Study for Dynamic Load with Modified Orthogonal Particle Swarm Optimization

碩士 === 國立中山大學 === 電機工程學系研究所 === 99 === The thesis use capacitors, Static Synchronous Compensator (STATCOM) and wind generator to get optimal voltage stability for twenty-four-hour dynamic load by compensating real/reactive power. In the thesis, Modified Orthogonal Particle Swarm Optimizer (MOPSO) is...

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Main Authors: Wu-Cheng Lin, 林武鉦
Other Authors: Whei-Min Lin
Format: Others
Language:zh-TW
Published: 2011
Online Access:http://ndltd.ncl.edu.tw/handle/42482696909114738763
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spelling ndltd-TW-099NSYS54420372015-10-19T04:03:18Z http://ndltd.ncl.edu.tw/handle/42482696909114738763 Voltage Stability Study for Dynamic Load with Modified Orthogonal Particle Swarm Optimization 應用改良式直交粒子群最佳化演算法求解動態負載電壓穩定之研究 Wu-Cheng Lin 林武鉦 碩士 國立中山大學 電機工程學系研究所 99 The thesis use capacitors, Static Synchronous Compensator (STATCOM) and wind generator to get optimal voltage stability for twenty-four-hour dynamic load by compensating real/reactive power. In the thesis, Modified Orthogonal Particle Swarm Optimizer (MOPSO) is proposed to find the sitting and sizing of capacitors, STATCOM and wind generator, and integrate Equivalent Current Injection (ECI) algorithm to solve Optimal Power Flow (OPF) to achieve optimal voltage stability. The algorithm uses MOPSO to renew STATCOM and wind turbine sizing Gbest with multiple choices and Taguchi orthogonal array, which improves Particle Swarm Optimizer (PSO) without falling into the local optimal solution and searches optimal voltage stability of power system by load balancing equation and inequality constraints. Average Voltage Variation (AVV) and Average Voltage Drop Variation (AVDV) are proposed as objective function to calculate whole system voltage variations, and convergence test of MOPSO. The IEEE 33 Bus distribution system and Miaoli-Houlong distribution system were used for simulation to test the voltage control during peak and off-peak periods of Taipower. Compensation of real/reactive power was used to get optimal system voltage stability for each simulated case. Whei-Min Lin 林惠民 2011 學位論文 ; thesis 103 zh-TW
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description 碩士 === 國立中山大學 === 電機工程學系研究所 === 99 === The thesis use capacitors, Static Synchronous Compensator (STATCOM) and wind generator to get optimal voltage stability for twenty-four-hour dynamic load by compensating real/reactive power. In the thesis, Modified Orthogonal Particle Swarm Optimizer (MOPSO) is proposed to find the sitting and sizing of capacitors, STATCOM and wind generator, and integrate Equivalent Current Injection (ECI) algorithm to solve Optimal Power Flow (OPF) to achieve optimal voltage stability. The algorithm uses MOPSO to renew STATCOM and wind turbine sizing Gbest with multiple choices and Taguchi orthogonal array, which improves Particle Swarm Optimizer (PSO) without falling into the local optimal solution and searches optimal voltage stability of power system by load balancing equation and inequality constraints. Average Voltage Variation (AVV) and Average Voltage Drop Variation (AVDV) are proposed as objective function to calculate whole system voltage variations, and convergence test of MOPSO. The IEEE 33 Bus distribution system and Miaoli-Houlong distribution system were used for simulation to test the voltage control during peak and off-peak periods of Taipower. Compensation of real/reactive power was used to get optimal system voltage stability for each simulated case.
author2 Whei-Min Lin
author_facet Whei-Min Lin
Wu-Cheng Lin
林武鉦
author Wu-Cheng Lin
林武鉦
spellingShingle Wu-Cheng Lin
林武鉦
Voltage Stability Study for Dynamic Load with Modified Orthogonal Particle Swarm Optimization
author_sort Wu-Cheng Lin
title Voltage Stability Study for Dynamic Load with Modified Orthogonal Particle Swarm Optimization
title_short Voltage Stability Study for Dynamic Load with Modified Orthogonal Particle Swarm Optimization
title_full Voltage Stability Study for Dynamic Load with Modified Orthogonal Particle Swarm Optimization
title_fullStr Voltage Stability Study for Dynamic Load with Modified Orthogonal Particle Swarm Optimization
title_full_unstemmed Voltage Stability Study for Dynamic Load with Modified Orthogonal Particle Swarm Optimization
title_sort voltage stability study for dynamic load with modified orthogonal particle swarm optimization
publishDate 2011
url http://ndltd.ncl.edu.tw/handle/42482696909114738763
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