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Optimal setting of reactive compensation devices with an improved voltage stability index for voltage stability enhancement

机译:具有改善的电压稳定性指标的无功补偿装置的最佳设置,可提高电压稳定性

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摘要

Voltage stability improvement is an important issue in power system planning and operation. Voltage stability of a system depends on the network topology and settings of reactive compensation devices. This research first proposes an improved voltage stability index (IVSI) for network systems, and then presents an optimization method for reactive compensation devices settings. To solve the optimization problem, this work introduces the hybrid differential evolution (HDE) to determine tap settings of on-load tap changing (OLTC) transformers, excitation settings of generators or synchronous condensers (SCs), and locations with sizes of static var compensators (SVCs). The performance of this technique is verified using the IEEE 30-bus power flow test system. The results show that the proposed method using the improved voltage stability index and the optimization method is able to effectively enhance voltage stability of a system and reduce line losses.
机译:电压稳定性的提高是电力系统规划和运行中的重要问题。系统的电压稳定性取决于网络拓扑和无功补偿设备的设置。这项研究首先提出了一种用于网络系统的改进的电压稳定指数(IVSI),然后提出了一种无功补偿装置设置的优化方法。为了解决优化问题,这项工作引入了混合差分演化(HDE)方法来确定有载分接变换(OLTC)变压器的分接设置,发电机或同步电容器(SC)的励磁设置以及具有静态无功补偿器尺寸的位置(SVC)。使用IEEE 30总线功率测试系统验证了该技术的性能。结果表明,所提方法采用改进的电压稳定性指标和优化方法,能够有效提高系统的电压稳定性,减少线路损耗。

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