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Power flow control devices in DC grids

机译:直流电网中的潮流控制设备

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A HVDC grid based on voltage source converters (VSC) is an attractive solution for the grid-integration of offshore renewable energy, interconnection of AC grids, facilitation of power markets, and energy emergency support. However, the power flow within the DC grids is determined by the line resistance, and cannot be fully controlled by the VSCs only. Thus, Power flow control of DC grids are needed not only to realize the economic operation and power markets, but also to prevent overload of DC lines in post-fault conditions. Three types of control devices, DC transformer, the variable resistor and series voltage source, are presented to achieve the power flow control. The topologies and modeling of these control devices are presented. Their control performance is evaluated through simulations using a 5-terminal DC grid. Their effectiveness, feasibility, and applications are discussed. Through the preliminary comparison, the series voltage source is considered as the best solution in terms of the rating, power losses, and control performance.
机译:基于电压源转换器(VSC)的HVDC电网对于海上可再生能源的电网整合,AC电网的互连,电力市场的便利化以及能源应急支持而言,是一种有吸引力的解决方案。但是,DC电网内的功率流由线路电阻确定,不能仅由VSC完全控制。因此,不仅需要实现直流电网的潮流控制,以实现经济运行和电力市场,而且还需要防止故障后条件下直流线路过载。提出了三种控制设备,即直流变压器,可变电阻器和串联电压源,以实现潮流控制。介绍了这些控制设备的拓扑和建模。通过使用5端子DC电网的仿真评估了它们的控制性能。讨论了它们的有效性,可行性和应用。通过初步比较,就额定值,功率损耗和控制性能而言,串联电压源被认为是最佳解决方案。

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