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Impact of wind farm and thyristor-switched series capacitors in voltage, active and reactive power in normal condition of network

机译:风电场和晶闸管开关串联电容器在正常网络中对电压,有功和无功功率的影响

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This paper aims are improving voltage profile and reducing the losses of active and reactive powers. For simulation purposes, the standard IEEE 14 buses network has been used. Response of the wind turbines in this network should be noted while losing the power network. With regard to the improvement of the voltage profile and reduction of the losses in critical buses, the reactive power resources, i.e. thyristor-switched series capacitors, are used on the mentioned circumstances. In this study, the required amount of wind turbines and thyristor-switched capacitors are placed, then the different conditions are individually and simultaneously considered using genetic algorithms with/without the wind turbines and thyristor-switched series capacitors in normal situation of the network. The results indicate that using thyristor-switched capacitors together with the wind farm can provide enough active and reactive power for the network which leads to an increase on the network capacity and a decrease on its losses using genetic algorithms.
机译:本文的目的是改善电压曲线并减少有功和无功功率的损耗。出于仿真目的,已使用标准IEEE 14总线网络。在失去电源网络的同时,应注意该网络中风力涡轮机的响应。关于改善电压曲线和减少关键总线中的损耗,在上述情况下使用了无功功率资源,即晶闸管开关串联电容器。在这项研究中,放置了所需数量的风力涡轮机和晶闸管开关电容器,然后在网络正常情况下,使用遗传算法在有/没有风力涡轮机和晶闸管开关串联电容器的情况下,分别并同时考虑了不同的条件。结果表明,将晶闸管开关电容器与风电场一起使用可以为网络提供足够的有功和无功功率,从而导致使用遗传算法增加网络容量并减少其损耗。

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