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首页> 外文期刊>IEEE systems journal >A New Approach to Improve PV Power Injection in LV Electrical Systems Using DVR
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A New Approach to Improve PV Power Injection in LV Electrical Systems Using DVR

机译:使用DVR改善低压电气系统中PV功率注入的新方法

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摘要

With increasing photovoltaic (PV) penetration in low-voltage (LV) distribution networks, voltage violation during the peak PV generation period is one of the main power quality concerns. To minimize the PV power curtailment caused by voltage violations, this paper proposes a new approach utilizing one dynamic voltage restorer (DVR) at the secondary of an existing urban distribution transformer as a continuous voltage compensator with an accompanying control algorithm. The voltage compensation algorithm controls the DVR in real-time to prevent over-voltage and under-voltage at all network nodes, thereby maximizing PV injection and preventing equipment damage. The controller uses the equivalent line impedance of network to estimate the average voltage of load points without the need for any communication links for measuring load voltages. In this approach, the fixed tap changer of the distribution transformer is also optimally adjusted to minimize the DVR rating using a proposed offline optimization method. Simulation results on IEEE LV test feeder prove the ability of the DVR in maintaining all network node voltages within the allowable range in peak demand and peak PV generation periods with the benefit of injecting only a small amount of active and reactive power to the system, in contrast to alternative algorithms.
机译:随着光伏(PV)在低压(LV)配电网络中的渗透率不断提高,在峰值PV产生期间违反电压是主要的电能质量问题之一。为了最大程度地减少因违反电压而造成的PV功率削减,本文提出了一种新方法,该方法利用现有城市配电变压器次级的一个动态电压恢复器(DVR)作为连续电压补偿器,并附带一个控制算法。电压补偿算法实时控制DVR,以防止所有网络节点上的过压和欠压,从而最大程度地增加PV注入并防止设备损坏。控制器使用网络的等效线路阻抗来估计负载点的平均电压,而无需任何通信链路来测量负载电压。在这种方法中,还使用建议的离线优化方法对配电变压器的固定分接开关进行了最佳调整,以使DVR额定值最小。 IEEE LV测试馈线上的仿真结果证明DVR能够将所有网络节点电压保持在峰值需求和峰值PV生成周期的允许范围内,并且仅向系统注入少量有功功率和无功功率。与替代算法相反。

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