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The Effect of Three-phase Voltage Imbalance at PCC on Solar Panel Output Power

机译:PCC三相电压不平衡对太阳能电池板输出功率的影响

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Photovoltaic generation is one of the promising renewable sources and is deployed in more and more power systems. Like other distributed generation, solar panels are connected to distribution systems instead of transmission systems. Distribution systems are inherently unbalanced, so the power flow studies must consider three phases. The interface between solar panel and distribution system is a DC-DC converter and an inverter, which are normally designed provided that the system is balanced. This paper analyses the output power of solar panel under both balanced and unbalanced PCC voltages and found the three-phase powers are not equal and unity power factor control cannot be realized when PCC voltages are unbalanced while the controller works well when PCC voltages are balanced. The results of simulation conform to the analysis. The work of this paper shows that simple P-Q solar panel models are not good for distribution system power flow studies, and present unity power factor controller does not work well for solar panel connected to distribution systems.
机译:光伏发电是有前途的可再生能源之一,并已部署在越来越多的电力系统中。像其他分布式发电一样,太阳能电池板连接到配电系统而不是传输系统。配电系统本质上是不平衡的,因此潮流研究必须考虑三个阶段。太阳能电池板和配电系统之间的接口是DC-DC转换器和逆变器,通常在系统平衡的情况下进行设计。本文分析了平衡和不平衡PCC电压下太阳能电池板的输出功率,发现三相功率不相等,当PCC电压不平衡时,三相PC的功率因数控制无法实现,而当PCC电压平衡时,控制器工作良好。仿真结果与分析吻合。本文的工作表明,简单的P-Q太阳能电池板模型不适用于配电系统功率流研究,并且当前的统一功率因数控制器不适用于连接至配电系统的太阳能电池板。

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