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Reliability impact for optimal placement of power factor correction capacitors considering transient switching events

机译:考虑瞬态切换事件的功率因数校正电容最佳放置的可靠性影响

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摘要

The power factor can be enhanced in many ways, one of which is a capacitor installation to correct the power factor at a particular location. While power factor correction capacitors are commonly used in power systems to generate Mvar at the bus, this could have an adverse reliability impact. To overcome this issue, a new optimal capacitor placement formulation is proposed, and the reliability, as well as the transient switching event impact, is assessed. The proposed formulation is included in the objective function, which is used to find the lowest cost based on many factors. The genetic algorithm optimisation technique is used to find the optimal minimised cost. The new formulation is applied to two test networks to assess its effectiveness. Moreover, the uncertainty impact and future system growth are considered to guarantee the robustness of the objective function. Finally, reliability calculations are added to the objective function to evaluate the capacitor installation impact on the power system.
机译:功率因数可以在许多方面增强,其中一个是电容器安装,以校正特定位置处的功率因数。虽然功率因数校正电容器通常用于动力系统以在总线上生成MVAR,但这可能具有不利的可靠性影响。为了克服这个问题,提出了一种新的最佳电容器放置配方,并评估可靠性,以及瞬态切换事件影响。所提出的制剂包括在目标函数中,用于找到基于许多因素的最低成本。遗传算法优化技术用于查找最佳最小化成本。新配方应用于两个测试网络以评估其有效性。此外,不确定的影响和未来的系统增长被认为是保证客观函数的稳健性。最后,将可靠性计算添加到目标函数中以评估电容器安装对电力系统的影响。

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