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首页> 外文期刊>International journal of electrical power and energy systems >A control strategy of converters based on constant extinction area for UHVDC system under hierarchical connection
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A control strategy of converters based on constant extinction area for UHVDC system under hierarchical connection

机译:基于分层连接下UHVDC系统恒定消光区的转换器控制策略

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摘要

The Ultra High Voltage Direct Current (UHVDC) systems under hierarchical connection, while improving the voltage support and current assimilative capacity of the receiving-end system, also bring new challenges to the security and stability of the power grid. An AC short-circuit fault at the receiving-end system can easily induce commutation failures (CFs) of the high-end and low-end converter at the same time, which seriously affects the stability of the system. Therefore, it is urgent to study the coordinated control strategy for the commutation failures of UHVDC systems under hierarchical connection. This paper analyzes the coupling mechanism and CFs characteristics of the high-end and low-end converters of a UHVDC system under hierarchical connection. Based on the commutation area theory of the three-phase full-wave bridge circuit, a coordinated control strategy is proposed to suppress CFs of the non-faulty layer converter of the UHVDC system under hierarchical connection. It can reserve enough extinction area for the non-faulty layer converter after an AC system failure occurs, thus preventing the occurrence of commutation failure. Finally, based on PSCAD/EMTDC, Zhundong-Wannan ?1100 kV UHVDC was built and the effectiveness of the proposed control strategy was simulated and verified. The simulation results show that the proposed control strategy can effectively suppress the simultaneous commutation failure of inverter station converters when symmetrical faults and asymmetrical faults of different levels occur in the receiving-end grid. This has important engineering significance for improving the stability of the DC transmission system.
机译:超高压直流(UHVDC)系统在等级连接下,同时提高了接收端系统的电压支撑和电流同化能力,对电网的安全性和稳定性带来了新的挑战。接收端系统的AC短路故障在同时容易诱导高端和低端转换器的换向故障(CFS),这严重影响了系统的稳定性。因此,迫切需要研究分层连接下UHVDC系统的换向故障的协调控制策略。本文分析了等级连接下UHVDC系统高端和低端转换器的耦合机制和CFS特性。基于三相全波桥电路的换向区域理论,提出了一种协调控制策略来抑制分层连接下UHVDC系统的非故障层转换器的CFS。它可以在发生AC系统故障后保留足够故障层转换器的足够消光区域,从而防止发生换向失败。最后,基于PSCAD / EMTDC,建立了Zhundong-Wannan?1100 kV UHVDC,建立并验证了拟议控制策略的有效性。仿真结果表明,当在接收端网格中发生不同电平的对称故障和不对称断层时,所提出的控制策略可以有效地抑制逆变器站转换器的同时换向故障。这具有重要的工程意义,用于提高直流传动系统的稳定性。

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