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Power Flow Calculation Method of DC grid with Interline DC Power Flow Controller (IDCPFC)

机译:使用线间直流潮流控制器(IDCPFC)的直流电网潮流计算方法

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In recent years, flexible HVDC transmission technology gradually matures currently, which can not only achieve large capacity and long distance transmission, but also can maximize the use of renewable energy. However, the DC grid has less degrees of freedom than AC grid which restricts its power flow control ability. The DC power flow controller can effectively solve the problem of insufficient freedom of power flow control in DC grid, which is important for maintaining the safe and stable operation of the AC/DC hybrid system. There are several types of DC power flow controller, different power flow controller have different effects on DC grid. This paper studies the power flow calculation method of the DC grid with interline DC power flow controller. Firstly, this paper analyzes the working principle of the interline DC power flow controller. Then, deriving the methods of power flow calculation based on the traditional Newton-Raphson iteration. Finally, building a model in PSCAD for simulation and comparing the calculated results with the simulation results to verity the correctness of the method.
机译:近年来,灵活的高压直流输电技术目前逐渐成熟,不仅可以实现大容量长距离输电,而且可以最大限度地利用可再生能源。但是,直流电网比交流电网具有更少的自由度,这限制了它的潮流控制能力。该直流潮流控制器可以有效地解决直流电网中潮流控制自由度不足的问题,这对于维持AC / DC混合系统的安全稳定运行具有重要意义。直流潮流控制器有几种类型,不同的潮流控制器对直流电网的影响也不同。本文研究了带线间直流潮流控制器的直流电网潮流计算方法。首先,本文分析了线路间直流潮流控制器的工作原理。然后,推导了基于传统牛顿-拉夫森迭代法的潮流计算方法。最后,在PSCAD中建立用于仿真的模型,并将计算结果与仿真结果进行比较,以验证该方法的正确性。

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