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Improved Neutral Current Compensation With a Four-Leg PV Smart VSI in a LV Residential Network

机译:LV住宅网络中的四腿PV智能VSI改善了中性点电流补偿

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Loads in low voltage (LV) residential areas are mainly single-phase types which are supplied from a delta/wye connected distribution transformer with a grounded neutral conductor creating a three-phase (3P) four-wire (4W) distribution system. The unbalanced single-phase load distributions in traditional 3P-4W LV networks cause significant neutral currents which can result in the overloading of the neutral conductor and electrical safety concerns for customers. In this paper, the dependency of the load generated neutral current on the distribution line variable zero sequence R/X ratios is developed, and a new decentralized robust active neutral compensation method is proposed using a multifunctional transformerless 3P four-leg (4L) photovoltaic (PV) smart voltage source inverter (SVSI). System stability is verified from the bode analysis and the improved neutral compensation is evaluated from the circuitry model analysis. Actual single-phase customer loads with real sun irradiance and temperature profiles are used with an urban 3P-4W LV network model from Australia and implemented in simulation using the PSCAD/EMTDC software to verify the efficacy of the proposed controller in real world distribution networks. Different transient faults analyses and point of common coupling dynamic voltage regulation are also performed and faster fault recovery, better neutral compensation, and optimized voltage profile are achieved from the designed PV-SVSI.
机译:低压(LV)住宅区中的负载主要是单相类型,由三角形/星形连接的配电变压器提供,该变压器带有接地的中性导体,从而形成三相(3P)四线(4W)配电系统。传统3P-4W低压网络中不平衡的单相负载分布会导致大量中性线电流,这可能会导致中性线过载,并给客户带来电气安全隐患。本文研究了负载产生的中性电流对配电线路可变零序R / X比的依赖关系,并提出了一种使用多功能无变压器3P四脚(4L)光伏技术的新型分散鲁棒有源中性补偿方法( PV)智能电压源逆变器(SVSI)。通过博德分析验证系统稳定性,并通过电路模型分析评估改进的中性补偿。具有实际太阳辐照度和温度曲线的实际单相客户负载与澳大利亚的城市3P-4W低压网络模型一起使用,并使用PSCAD / EMTDC软件在仿真中实现,以验证所提出的控制器在实际配电网络中的功效。还通过设计的PV-SVSI进行了不同的瞬态故障分析和公共耦合动态电压调节点,并实现了更快的故障恢复,更好的中性补偿和优化的电压曲线。

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