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Research on Dynamic Reactive Power Compensation Configuration of High Proportion New Energy Grid

机译:高比例新能源电网动态无功补偿配置研究

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In order to enhance the dynamic reactive power support capacity of new energy grids and the ability of new energy to connect to the grid, increase the stability level of the transient voltage of the grid and reduce the risk of DC commutation failure. Therefore, a certain number of dynamic reactive power compensation devices are deployed in key stations of the power grid. By analyzing the transient voltage stability characteristics of new energy high-capacity power grids and the key links affecting voltage stability issues , a method for configuring dynamic reactive power compensation device based on voltage-reactive sensitivity to improve the transient voltage stability characteristics. An example simulation verification was performed in the Tibet Power Grid. Using the proposed method, the installation position of reactive power compensation was determined. With the goal of optimal control, the compensation device was determined by simulation as a synchronous capacitor and its rated capacity.
机译:为了增强新能源电网的动态无功支持能力和新能源接入电网的能力,提高电网暂态电压的稳定度,降低直流换相失败的风险。因此,一定数量的动态无功补偿装置部署在电网的关键站。通过分析新能源大容量电网的暂态电压稳定特性和影响电压稳定问题的关键环节,提出了一种基于电压无功灵敏度的动态无功补偿装置配置方法,以改善暂态电压稳定特性。在西藏电网中进行了示例仿真验证。使用所提出的方法,确定了无功补偿的安装位置。以最优控制为目标,通过仿真确定补偿装置为同步电容器及其额定容量。

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