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Study on Operation Characteristics of Offshore Wind Farm Integrated to Weak AC Systems via VSC-HVDC

机译:VSC-HVDC集成到弱交流系统的海上风电场运行特性研究

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VSC-HVDC has the ability to supply power to weak systems and is a common grid connection method for offshore wind farms. However, the operating characteristics of offshore wind farms connected to weak receiving end AC systems via VSC-HVDC remain to be clarified. This paper established a model of an offshore wind farm based on DFIG connected to a weak receiving end system via VSC-HVDC, and analyzed the VSC steady-state operating range and its influencing factors. And the change rule of the theoretical value of the system critical short-circuit ratio was summarized. On this basis, the influence of the access of doubly-fed wind turbines on the short-circuit ratio was discussed. The critical short-circuit ratio under different output conditions of the wind farm was obtained by using the control variable method of increasing the equivalent reactance of the receiving end system and the output of the wind farm. Finally, a simulation is carried out based on the PSCAD/EMTDC, and the results show that the strength of the receiving end systems is a key factor affecting the grid-connected capacity of offshore wind power. Taking appropriate reactive power compensation measures can improve the safe and stable operation of the system.
机译:VSC-HVDC能够为弱系统供电,是海上风电场的通用网格连接方法。然而,通过VSC-HVDC连接到弱接收端AC系统的海上风电场的操作特性仍然澄清。本文建立了基于VSC-HVDC连接到弱接收端系统的DFIG的海上风电场的模型,并分析了VSC稳态操作范围及其影响因素。总结了系统临界短路比的理论值的变化规则。在此基础上,讨论了双馈风力涡轮机对短路比的影响。通过使用增加接收端系统的等效电抗和风电场的输出来获得风电场不同输出条件下的临界短路比。最后,基于PSCAD / EMTDC进行模拟,结果表明,接收端系统的强度是影响海上风电网电网电网的关键因素。采取适当的无功补偿措施可以提高系统的安全和稳定运行。

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