DG对加拿大基准农村配电网电压不平衡的影响

A. Papachristou, A. Awad, D. Turcotte, Steven Wong, A. Prieur
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引用次数: 3

摘要

配电网是向负载供电的三相系统。虽然,理想情况下,网络上每个点的负载将在三个阶段中平均分配,但实际情况并非如此。三相电压和电流因此是不平衡的,因为在每个阶段的负载大小不同。单相分布式发电(DG)的集成,例如安装在二级电网的光伏(PV)单元,给配电网的电压不平衡增加了更多的挑战。本文通过模拟研究了DG对加拿大基准农村配电网电压不平衡的影响。考虑到电压不平衡的标准限值、工作电压限值和馈线的热额定值,可以集成到配电网中的DG的最大渗透水平是确定的。研究了不同配置的稳压器和DG。仿真结果表明,电压不平衡系数(VUF)随着三相DG的集成而降低,特别是当DG的高穿透水平位于主馈线末端附近时。在不违反任何限制的情况下,最多24兆瓦的三相DG可以连接到主馈线,这是总峰值负荷的154%。还发现,单相DG的最大尺寸可以至少是给定节点在任何单相侧向的峰值负载的3倍。
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Impact of DG on Voltage Unbalance in Canadian Benchmark Rural Distribution Networks
Distribution networks are three-phase systems supplying electricity to loads. While, ideally, the load at each point of the network would be equally distributed among the three phases, this is not the case in practice. The three-phase voltages and currents are thus unbalanced due to the different magnitudes of loads at each phase. The integration of single-phase distributed generation (DG), e.g., photovoltaic (PV) units installed at secondary networks, adds more challenges to the voltage unbalance in distribution networks. This paper investigates through simulations the impact of DG on the voltage unbalance in Canadian benchmark rural distribution networks. The maximum penetration levels of DG that can be integrated into distribution networks are determined taking into consideration the standard limits of voltage unbalance, operating voltage limits, and thermal ratings of the feeder. Different configurations of voltage regulators and DG are studied. Simulation results showed that the voltage unbalance factor (VUF) decreases with the integration of three-phase DG especially when high penetration levels of DG are located close to the end of the main feeder. Up to 24 MW of three-phase DG can be connected to the main feeder, which is 154% of the total peak load, without violating any of the limits. It was also found that the maximum size of a single-phase DG can be at least 3 times the peak load of a given node at any single-phase lateral.
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