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Optimal siting and sizing of SSSC using improved harmony search algorithm considering non-smooth cost functions

机译:考虑不光滑成本函数的改进和谐搜索算法优化SSSC选址和规模

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Static Synchronous Series Compensator (SSSC) is an elegant member of Flexible Alternating Current Transmission Systems (FACTS) devices. SSSC can be used to control the active and reactive power flows of transmission lines. In this paper, improved harmony search algorithm (IHS) is applied to determine the optimal location and parameter settings of SSSC in power systems. The optimal power flow (OPF) problem is solved with and without incorporating of SSSC in power systems considering the valve point loading effect and the prohibited operating zones of generation units. A simple model of SSSC based on power injection approach is implemented into OPF algorithm. The main advantage of the simplified model is avoiding any modifications in the original structure of Jacobian matrix. Consequently, the complexities of OPF algorithm are reduced. In addition, the resistance of SSSC is considered in this model. The OPF solution with the simplified SSSC model using IHS optimization technique are validated based on the standard IEEE 30-bus test system. The comparative study with conventional harmony search (HS) and other techniques demonstrates the superiority of the developed OPF solution using IHS algorithm.
机译:静态同步串联补偿器(SSSC)是柔性交流输电系统(FACTS)设备的优雅成员。 SSSC可用于控制传输线的有功和无功潮流。本文采用改进的和声搜索算法(IHS)来确定电力系统中SSSC的最佳位置和参数设置。考虑到阀点负载效应和发电机组的禁止运行区域,在有或没有将SSSC纳入电力系统的情况下,均可解决最佳潮流(OPF)问题。在OPF算法中实现了一种基于功率注入方法的SSSC简单模型。简化模型的主要优点是避免对Jacobian矩阵的原始结构进行任何修改。因此,降低了OPF算法的复杂度。此外,在该模型中考虑了SSSC的电阻。基于IHS优化技术的具有简化SSSC模型的OPF解决方案已基于标准IEEE 30总线测试系统进行了验证。与常规和声搜索(HS)和其他技术的比较研究证明了使用IHS算法开发的OPF解决方案的优越性。

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