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Operation Characteristics Analysis Of Sending-End Regional Power Grid Integrated With Large-Scale Wind Power

机译:大型风电并网的发端区域电网运行特性分析

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Large-scale wind power is integrated into one regional power grid in western China, as well as local thermal power. When the power generated is enough for the local grid, the extra will be sent outside. Based on one regional power grid named HM power grid, this paper mainly analysis its operation characteristics. Firstly, transmission limit of wind power in HM power grid is simulated by restriction of N−1 fault in main transformers, based on which system's instability modes are compared when considering different locations of thermal units used in peak load regulation. Secondly, in order to alleviate the sever voltage fluctuation caused by wind power fluctuation, a new fixed-flexible combined reactive power control method is proposed. Thirdly, the consequences on power system caused by wind farms trip-off are analyzed. Aiming at preventing power system from over-voltage, an effective approach is presented by regulating reactive power compensation devices.
机译:大型风电和本地火电被整合到中国西部的一个区域电网中。当所产生的电力足以满足本地电网的需求时,多余的电力将被发送到外部。本文基于一种称为HM电网的区域电网,主要分析了其运行特性。首先,通过限制主变压器的N-1故障,模拟了HM电网中风电的传输极限,并在考虑峰值负载调节所使用的热电单元的不同位置时,比较了系统的不稳定模式。其次,为减轻风电波动引起的严重电压波动,提出了一种新的定-柔联合无功控制方法。第三,分析了风电场跳闸对电力系统的影响。为了防止电力系统过电压,提出了一种通过调节无功功率补偿装置的有效方法。

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