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Impact of controlling zero sequence current in a three-phase four-wire LV network with PV units

机译:用光伏单位控制零序电流控制零序电流的影响

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The dynamic impacts of controlling zero sequence current in a three-phase four-wire low voltage (LV) distribution network with a four-leg voltage source inverter (VSI) and PV installations are investigated in this paper. The PV VSI is designed to control active power at unity power factor (p.f) with additional neutral and zero sequence current controls. Inherently, most of the three-phase four-wire LV distribution networks exhibit voltage unbalance characteristics due to the connection of single- and three-phase nonlinear loads as well as occurrence of asymmetrical faults in the networks. The control over zero sequence current can improve the inherent voltage unbalance in the LV networks. The transient characteristics of the unbalanced network are investigated utilizing a widely used software environment, PSCAD/EMTDC, for the Energex 11 kV/420 V distribution network in Brisbane, Australia. The performance of the designed four-leg VSI is compared with the traditional three-leg VSI experiencing different asymmetrical faults. The results show that, with the additional degree of freedom from the four-leg VSI, faster fault recovery and lower MVA requirement can be achieved for unbalanced LV networks.
机译:控制在三相四线低电压的零序电流与四桥臂电压源逆变器(VSI)和PV安装(LV)分配网络的动态影响本文进行了研究。该PV VSI被设计成在单位功率因数(疟原虫)与另外的中性和零序电流控制来控制有效功率。固有地,大部分的三相四线制低压配电网络的表现出由于单相和三相的非线性负载不对称故障的网络的连接,以及发生的电压不平衡的特性。过零序电流的控制可以提高在LV网络固有的电压不平衡。不平衡网络的瞬态特性进行了研究利用广泛使用的软件环境,PSCAD / EMTDC,为在澳大利亚布里斯班的Energex 11千伏/ 420V下的销售网络。所设计的四腿VSI的性能与传统的三足VSI经历不同的不对称故障比较。结果表明,与自由的从四个腿VSI附加程度,更快的故障恢复和下游MVA要求可以为不平衡LV网络来实现。

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