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On-line reactive power compensation schemes for unbalanced three phase four wire distribution feeders

机译:不平衡三相四线配电馈线的在线无功补偿方案

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A new reactive power compensation method is developed to reduce the negative and zero sequence components of load currents and to improve the load bus power factor of unbalanced three-phase four-wire distribution feeders. Negative and zero sequence currents may cause additional losses and damage to power systems. Load compensation at the load bus is an effective method to eliminate those undesired sequence currents. The compensation technique uses a Y-connected and a Delta -connected static reactive power compensators (SVCs) to give a different amount of reactive power compensation to each phase. The compensation formulas are very suitable for on-line control by measurement of phase voltages and currents in real time. The compensation effect can also be achieved even if one leg of the SVCs is out of service. In addition to balancing effect and power factor improvement at the load bus, the SVCs can also be used to support the load bus voltage and to maintain the substation feeder at unity power factor. Digital simulations are made with the load data measured from an 11.4 kV secondary substation feeder.
机译:开发了一种新的无功补偿方法,以减少负载电流的负序分量和零序分量,并提高不平衡三相四线配电馈线的负载母线功率因数。负序电流和零序电流可能会导致其他损耗并损坏电源系统。负载总线上的负载补偿是消除那些不需要的序列电流的有效方法。补偿技术使用Y型连接和Delta型连接的静态无功功率补偿器(SVC)为每个相提供不同量的无功功率补偿。补偿公式非常适合通过实时测量相电压和电流进行在线控制。即使SVC的一条腿停止工作,也可以实现补偿效果。除了平衡效果和改善负载母线上的功率因数外,SVC还可以用于支持负载母线电压并将变电站馈线保持在统一的功率因数。使用从11.4 kV二级变电站馈线测得的负载数据进行数字仿真。

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