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Voltage regulation in the douglas area using shunt capacitor banks and controllable shunt reactors

机译:使用并联电容器组和可控并联电抗器调节道格拉斯地区的电压

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Voltage regulation is one of the critical quality of supply aspects in any power system. Due to this requirement, voltages must almost always be kept within the utilities defined lower and higher limits. Loads that vary substantially between peak and off-peak times can results in voltages exceeding the upper limits when the load is low and exceeding the lower limits when the load is high. Due to these two extremes, the shunt capacitor banks may have to be installed in the case of low voltages, as well as shunt reactors in the case of high voltages. Traditionally, the two different shunt devices should be switchable to avoid worsening either extreme condition. This is however a difficult challenge as the switching activities of capacitor banks and reactors, may result in too many operations of switchgear, failure to switch when required by other parts of the network other than the busbar connected at, hunting activities between switching devices and transformer tap changers which may result in false alarms, tap changer lockouts, and trouble shooting of control equipment. This paper suggests the use of fixed shunt capacitor banks with one optimally placed controllable shunt reactor to regulate voltages in the concerned area of supply.
机译:电压调节是任何电源系统中供电的关键质量之一。由于这一要求,电压几乎必须始终保持在公用事业定义的上下限内。在高峰时间和非高峰时间之间变化很大的负载可能导致电压在负载低时超过上限,而在负载高时超过下限。由于这两个极端,在低压情况下可能必须安装并联电容器组,在高压情况下可能必须安装并联电抗器。传统上,两个不同的并联设备应该是可切换的,以免使任何一种极端情况恶化。但是,这是一个艰巨的挑战,因为电容器组和电抗器的开关活动可能会导致开关设备的操作过多,在网络的其他部分(连接的母线除外)要求时无法进行开关,开关设备和变压器之间的振荡活动分接开关可能会导致误报,分接开关锁定和控制设备故障排除。本文建议使用带有一个最佳放置的可控并联电抗器的固定并联电容器组来调节相关电源区域的电压。

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