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STUDY OF PARTICLE SWARM FOR OPTIMAL POWER FLOW IN IEEE BENCHMARK SYSTEMS INCLUDING WIND POWER GENERATORS

机译:包含风力发电机的IEEE基准系统中最优电源的粒子群算法研究

摘要

AN ABSTRACT OF THE THESIS OF Mohamed A. Abuella, for the Master of Science degree in Electrical and Computer Engineering, presented on May 10, 2012, at Southern Illinois University Carbondale. TITLE:STUDY OF PARTICLE SWARM FOR OPTIMAL POWER FLOW IN IEEE BENCHMARK SYSTEMS INCLUDING WIND POWER GENERATORS MAJOR PROFESSOR: Dr. C. Hatziadoniu, The aim of this thesis is the optimal economic dispatch of real power in systems that include wind power. The economic dispatch of wind power units is quite different of conventional thermal units. In addition, the consideration should take the intermittency nature of wind speed and operating constraints as well. Therefore, this thesis uses a model that considers the aforementioned considerations in addition to whether the utility owns wind turbines or not. The optimal power flow (OPF) is solved by using one of the modern optimization algorithms: the particle swarm optimization algorithm (PSO). IEEE 30-bus test system has been adapted to study the implementation PSO algorithm in OPF of conventional-thermal generators. A small and simple 6-bus system has been used to study OPF of a system that includes wind-powered generators besides to thermal generators. The analysis of investigations on power systems is presented in tabulated and illustrative methods to lead to clear conclusions.
机译:穆罕默德·阿布埃拉(Mohamed A. Abuella)论文摘要,获得电气和计算机工程理学硕士学位,于2012年5月10日在伊利诺伊州南部大学Carbondale举行。标题:包括风电发电机在内的IEEE基准系统中最优电源流的粒子群研究主要教授:C. Hatziadoniu博士,本论文的目的是在包括风电在内的系统中对有功功率进行最佳的经济分配。风力发电机组的经济分配方式与传统的热力装置完全不同。此外,考虑因素还应考虑风速和操作约束的间歇性。因此,本文使用的模型除了公用事业是否拥有风力涡轮机外,还考虑了上述考虑因素。最佳潮流(OPF)通过使用一种现代优化算法来解决:粒子群优化算法(PSO)。已将IEEE 30总线测试系统改编为研究常规热力发电机OPF中的PSO实现算法。一个小型且简单的6总线系统已用于研究该系统的OPF,该系统除了热力发电机外还包括风力发电机。用表格和说明性方法介绍了对电力系统调查的分析,以得出明确的结论。

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    Abuella Mohamed A.;

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