论文标题
关于不同电压不平衡指标在分配系统优化中的影响
On the Impact of Different Voltage Unbalance Metrics in Distribution System Optimization
论文作者
论文摘要
随着单相,屋顶太阳PV安装的渗透量的增加,每一相负载和相关电压不平衡的相对变化将增加。高压不平衡可能会增加网络损失并导致三相设备(如电动机负载)故障。但是,太阳能光伏面板通过逆变器连接到网格,这可以提供反应性支持,并可能减轻这些负面影响。在本文中,我们使用三相交流最佳功率流(OPF)制剂,使用太阳能PV逆变器的反应能力最大程度地减少电压不平衡。在考虑降低电压不平衡的行动时,重要的是要认识到,IEC,NEMA和IEEE等各种组织在功率质量标准中提供了对电压不平衡的不同和部分不一致的定义。本文使用电压不平衡目标和约束的不同组合分析了不同电压不平衡指标的影响。对于我们的分析,对两个不平衡的低压分布网络进行了优化方案。我们观察到,最大程度地减少一个标准定义的电压不平衡实际上可能会增加电压不平衡,如另一种标准所定义,可能导致设备损坏。我们还观察到,最大程度地减少电压不平衡并不总是会导致网络损失降低。但是,可以通过最大程度地减少损失,同时对电压不平衡的多个定义执行限制,从而实现了较低的网络损耗的电压不平衡。
With increasing penetrations of single-phase, rooftop solar PV installations, the relative variations in per-phase loading and associated voltage unbalance are expected to increase. High voltage unbalance may increase network losses and lead to failure of three-phase equipment such as motor loads. However, solar PV panels are connected to the grid through inverters, which can provide reactive power support and may mitigate some of these negative effects. In this paper, we utilize a three-phase AC optimal power flow (OPF) formulation to minimize voltage unbalance using reactive power from solar PV inverters. When considering actions to reduce voltage unbalance, it is important to recognize that various organizations such as IEC, NEMA and IEEE provide different and partially inconsistent definitions of voltage unbalance in their power quality standards. This paper analyzes the impact of the different voltage unbalance metrics using different combinations of voltage unbalance objectives and constraints. For our analysis, the optimization scheme is tested on two unbalanced low-voltage distribution networks. We observe that minimizing voltage unbalance defined by one standard might actually increase voltage unbalance as defined by another standard, potentially resulting in equipment damage. We also observe that minimizing voltage unbalance does not always lead to lower network losses. However, considerable reduction in voltage unbalance with low network losses can be achieved by minimizing the losses while simultaneously enforcing limits on multiple definitions of voltage unbalance.