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Investigation of the use of inverter control strategy instead of synchronous condensers at inverter terminal of an HVDC system

机译:研究使用逆变器控制策略代替高压直流输电系统逆变器终端上的同步电容器

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This paper presents a comparison of performance of traditionally used synchronous condensers (SCs) at inverter side HVDC terminal and a novel inverter control method. The novel controller has earlier demonstrated good responses with very weak inverter AC systems and widely changing AC system parameters. The aim of this research is to study if it is possible to offer adequate replacement for SC at weak HVDC-HVAC interconnection point. The simulation results on an actual HVDC system show excellent small signal responses, but the main obstacle for the application of the new control method could be increased probability of commutation failure. Subsequent tests show that in order to keep the same commutation failure probability, half of the SC must be maintained in normal operation. Further SC can also be disconnected, when the new control method is employed, however the nominal operating angle has to be somewhat increased. The cost benefit study is performed to analyze the financial benefits of the proposed project. It is concluded that, although the benefits are evident for the new HVDC links, the proposed replacement of SC may not be justifiable for the existing links.
机译:本文比较了逆变器侧HVDC端子上传统使用的同步电容器(SC)的性能,以及一种新颖的逆变器控制方法。新型控制器在较弱的逆变器交流系统和广泛变化的交流系统参数下已展示出良好的响应。这项研究的目的是研究是否有可能在弱的HVDC-HVAC互连点上为SC提供足够的替代品。在实际的高压直流输电系统上的仿真结果显示出极好的小信号响应,但是应用新控制方法的主要障碍可能是增加换向失败的可能性。随后的测试表明,为了保持相同的换向失败概率,正常运行中必须保持一半的SC。当采用新的控制方法时,也可以断开其他SC,但是必须稍微增加标称工作角度。进行成本效益研究以分析拟议项目的财务效益。结论是,尽管对于新的高压直流输电线路而言,好处是显而易见的,但对于现有的输电线路,建议的更换SC可能是不合理的。

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