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New approach for optimal UPFC placement using hybrid immune algorithm in electric power systems

机译:电力系统中使用混合免疫算法优化UPFC放置的新方法

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The unified power flow controller (UPFC) is one of the most promising flexible AC transmission systems (FACTS) devices for the load flow control. Simultaneous optimization of location and parameters for UPFCs is an important issue when a given number of UPFCs is applied to the power system with the purpose of increasing system loadability. This paper presents the application of hybrid immune algorithm (HIA) such as immune genetic algorithm (IGA) and immune particle swarm algorithm (IPSO) to find optimal location of UPFC to achieve optimal power flow (OPF). The overall cost function, the objective function in the OPF, includes the total active and reactive production cost function of the generators and installation cost of UPFCs and hence, should be minimized. The OPF constraints are generators, transmission lines and UPFCs limits. In power system, it may not always be possible to dispatch the contracted power transactions completely due to congestion of the corresponding transmission corridors. In this study simulations were performed on IEEE 14-bus and IEEE 30-bus test systems for different methods. Under all equality and inequality constraints, the HIA proposed approach minimized the objective function better than other methods such as GA, PSO, and IA; and as far as HIA methods were concerned, the IPSO algorithm gave better minimum cost than IGA method. Results of simulations are encouraging and could efficiently be employed for power system operations.
机译:统一潮流控制器(UPFC)是用于潮流控制的最有希望的灵活交流输电系统(FACTS)设备之一。当将给定数量的UPFC应用于电力系统以提高系统负载能力时,同时优化UPFC的位置和参数是一个重要的问题。本文提出了免疫遗传算法(IGA)和免疫粒子群算法(IPSO)等混合免疫算法(HIA)在寻找UPFC的最优位置以实现最优潮流(OPF)中的应用。总体成本函数(OPF中的目标函数)包括发电机的总有功和无功生产成本函数以及UPFC的安装成本,因此应将其最小化。 OPF约束是发电机,传输线和UPFC限制。在电力系统中,由于相应的输电通道的拥挤,不一定总是能够完全调度合同的电力交易。在这项研究中,针对不同方法在IEEE 14总线和IEEE 30总线测试系统上进行了仿真。在所有平等和不平等约束下,HIA提出的方法比诸如GA,PSO和IA的其他方法更好地最小化了目标函数;就HIA方法而言,IPSO算法比IGA方法具有更好的最小成本。仿真结果令人鼓舞,可以有效地用于电力系统运行。

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