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Enhancement of Available Transfer Capability using Particle Swarm Optimization technique with Interline Power flow Controller

机译:使用带线间潮流控制器的粒子群优化技术增强可用传输能力

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Deregulation of the electricity industry throughout the world aims at creating a competitive market to trade electricity, which generates a host of new technical challenges to market participants and power system researchers. The benefits of deregulate market are cheaper electricity, efficient capacity expansion planning, cost minimization, more choice and better services. For better transmission services support and full utilization of transmission assets, one of the major challenges is to accurately gauge the transfer capability remaining in the system for further transactions, which is termed Available Transfer Capability (ATC). It is crucial to develop an appropriate ATC determination methodology that enables one to evaluate the realistic transmission transfer capability by accounting for all related important requirements. The insertion of FACTS devices in electrical systems seems to be a promising strategy to enhance ATC. In this thesis, the ATC is calculated using AC Power Transfer Distribution Factors (ACPTDF) method. Then the calculated ATC is enhanced by incorporating Interline Power Flow Controller (IPFC).Real Coded Particle Swarm Optimization technique (PSO) is employed to obtain the optimal settings of IPFC. The work has been carried out on IEEE 30 bus systems in MATLAB 7.10.0 for bilateral transaction and the results obtained are quite encouraging.
机译:全世界电力行业的放松管制旨在建立一个竞争性的电力交易市场,这给市场参与者和电力系统研究人员带来了许多新的技术挑战。放松市场管制的好处是更便宜的电力,有效的容量扩展计划,最小化成本,更多的选择和更好的服务。为了获得更好的传输服务支持和传输资产的充分利用,主要挑战之一是准确评估系统中剩余的传输能力以进行进一步的交易,这被称为可用传输能力(ATC)。开发适当的ATC确定方法至关重要,该方法使人们能够通过考虑所有相关的重要要求来评估实际的传输传输能力。在电气系统中插入FACTS设备似乎是增强ATC的有前途的策略。本文采用交流输电分配系数法(ACPTDF)计算ATC。然后结合线间潮流控制器(IPFC)来增强计算出的ATC。采用实数编码粒子群优化技术(PSO)来获得IPFC的最优设置。该工作已在MATLAB 7.10.0中的IEEE 30总线系统上进行了双边交易,所获得的结果令人鼓舞。

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