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Voltage analysis of distribution systems with DFIG wind turbines

机译:DFIG风力涡轮机分配系统的电压分析

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摘要

Wind energy is becoming the most viable renewable energy source mainly because of the growing concerns over carbon emissions and uncertainties in fossil fuel supplies and the government policy impetus. The increasing penetration of wind power in distribution systems may significantly affect voltage stability of the systems, particularly during wind turbine cut-in and cut-off disturbances. Currently, doubly fed induction generator wind turbine (DFIG-WT) is the most popular wind turbine. This paper investigates the issues of voltage stability improvement and grid-loss reduction of distribution systems which include DFIG-WTs under unbalanced heavy loading conditions. Simulation studies are carried out in IEEE 34-bus test system using DIgSILENT software to examine these issues during steady-state and transient operations of the system. Optimal locations of the WTs are determined based on this analysis. A new index (system unbalanced voltage variance) is proposed to evaluate system unbalanced voltage. The dynamic impacts between WTs and motor loads are also examined.
机译:风能正成为最可行的可再生能源,主要是因为对化石燃料供应中的碳排放和不确定性的越来越令人担忧和政府政策推动。在分配系统中的风力发电的普及率越来越大,可能会显着影响系统的电压稳定性,特别是在风力涡轮机切入和切断干扰期间。目前,双馈感应发电机风力涡轮机(DFIG-WT)是最受欢迎的风力涡轮机。本文调查了在不平衡重载条件下包括DFIG-WT的分配系统的电压稳定性改善和水栅损失问题的问题。使用DigSilent软件在IEEE 34总线测试系统中进行仿真研究,以检查系统的稳态和瞬态操作期间的这些问题。基于该分析确定WT的最佳位置。提出了一种新的索引(系统不平衡电压方差)以评估系统不平衡电压。还检查了WTS和电机负载之间的动态冲击。

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