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Optimal Capacitor Allocation in Sub-Transmission Networks to Mitigate Overloading Considering Harmonic Resonance

机译:考虑谐波谐振的子传输网络中的电容器优化分配,以减轻过载

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In conventional electricity grids, although power plants can support the active power of loads, transmission and sub-transmission networks deal with overloading situations in the transformers caused by reactive power of loads. Hence, local reactive power compensation of loads by capacitor allocation is an important solution. In this paper, the genetic algorithm (GA) is employed for the optimal capacitor allocation then the transformer tap changing is used to regulate the voltage profile in the buses. The tap regulation can eliminate the over-voltage, which is produced by capacitors installation. Eventually, harmonic analysis is applied to prevent harmonic resonance in capacitor banks. For validating the efficiency of the proposed method, it is examined in the typical transmission and subtransmission networks. The simulations are done in DIgSILENT software using DIgSILENT Programming Language (DPL) that is interfaced with MATLAB software.
机译:在常规电网中,尽管发电厂可以支持负载的有功功率,但是输电和子传输网络可以应对由负载的无功功率引起的变压器过载情况。因此,通过电容器分配对负载进行局部无功补偿是一个重要的解决方案。在本文中,采用遗传算法(GA)来优化电容器分配,然后使用变压器抽头改变来调节母线中的电压曲线。分接头调节可以消除电容器安装产生的过电压。最终,应用谐波分析来防止电容器组中的谐波谐振。为了验证所提出方法的效率,在典型的传输和子传输网络中对其进行了检查。仿真是使用与MATLAB软件连接的DIgSILENT编程语言(DPL)在DIgSILENT软件中完成的。

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