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Study on Operation Characteristics of UHVDC Power System with Hierarchical Connection to AC Grid

机译:分级并网交流电网特高压直流输电系统的运行特性研究

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The UHVDC quasi-steady-state equations of the hierarchical connection mode are proposed in this paper. Then the operation characteristics of UHVDC power system with hierarchical connection to AC grid are analyzed. The AC/DC system fault interaction mechanism of UHVDC hierarchical control has been analyzed and simulated with the practical power grid cases. The results show that the hierarchical connection mode can effectively improve the stability of AC/DC systems. Furthermore, the impacts of DC restart and continuous commutation failure on AC/DC transmission capability have been simulated with practical power grid cases. The results show that for areas without strong reactive power supply, hierarchical connection mode can improve voltage stability, and enhance the transmission capacity of the DC system. It has proven that using hierarchical connection mode in the UHV DC receiving-end grid can improve the voltage support ability of UHV DC system, and reduce the commutation failure risk.
机译:提出了分级连接方式的特高压直流准稳态方程。然后分析了分级接入交流电网的特高压直流输电系统的运行特性。在实际电网案例中,对特高压直流分级控制的交直流系统故障相互作用机理进行了分析和仿真。结果表明,分层连接方式可以有效提高交直流系统的稳定性。此外,已经在实际的电网案例中模拟了直流重启和连续换向失败对交流/直流传输能力的影响。结果表明,对于无功功率不强的区域,分层连接方式可以提高电压稳定性,增强直流系统的传输能力。实践证明,在特高压直流接收端电网中采用分层连接方式,可以提高特高压直流系统的电压支持能力,降低换向失败的风险。

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