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A novel VSC HVDC active power control strategy to improve AC system stability

机译:一种新颖的VSC HVDC有功功率控制策略,可提高交流系统的稳定性

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Bulk power transfer requirements over long distances within a country or between neighboring countries as, well as a large growth in offshore wind farms, have increased the number of high voltage DC links. Apart from the controllable power flow function of HVDC systems, advanced controllers can be employed to extend their functionality for dynamic and transient stability improvement of AC systems. As an attempt to improve the influence of HVDC technology on AC system transient stability, this paper proposes a supplementary active power controller for the VSC HVDC grid side converter. The presented simulation results prove the effectiveness of the proposed method. Relatively large-sized dump loads have been installed within the power system for protective measures against a surplus of generated power. They are distributed over the network and they normally connect to the circuit when a trip signal is issued. DC choppers in HVDC systems as well as wind turbine converters, dump loads in synchronous generators and in wind turbines comprise these distributed dump resistive loads in the network. The effect of the DC chopper to improve active power controllability for improved transient stability has also been tested and verified through the simulations.
机译:一国内部或邻国之间远距离的大容量电力传输要求,以及海上风电场的大量增长,增加了高压直流链路的数量。除了HVDC系统的可控潮流功能外,还可以使用高级控制器来扩展其功能,从而改善AC系统的动态和瞬态稳定性。为了改善HVDC技术对交流系统暂态稳定性的影响,本文提出了一种用于VSC HVDC电网侧变流器的辅助有功功率控制器。仿真结果证明了该方法的有效性。在电力系统中已安装了相对较大的倾卸负载,以采取措施防止发电量过剩。它们分布在网络上,并且通常在发出跳闸信号时连接到电路。 HVDC系统以及风力涡轮机转换器中的直流斩波器,同步发电机和风力涡轮机中的倾卸负载包括网络中的这些分布的倾卸电阻负载。直流斩波器对改善有功功率可控性,改善瞬态稳定性的作用也已通过仿真进行了测试和验证。

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