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基于模块化多电平变换器的高压直流输电故障特性与控制保护

DOI: 10.13336/j.1003-6520.hve.2015.07.043, PP. 2428-2434

Keywords: 柔性直流输电,模块化多电平变换器,风电并网,卸荷负载,故障特性,控制保护

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Abstract:

风电并网基于模块化多电平变换器的高压直流输电(MMC-HVDC)交流电网侧发生短路故障,故障点交流电压的降低会使受端系统传输有功功率的能力下降,而风场侧功率传输基本不受影响,送端和受端有功功率出现差额,直流系统电压将持续上升,威胁系统安全。此外,如果MMC中部分子模块发生故障将导致换流器不能正常工作。为此,首先提出了可在直流侧并联安装采用统一控制的分散式小型卸荷负载来消耗直流系统无法消除的功率差额,从而维持直流系统电压的恒定;其次研究分析了换流器子模块故障特性,并提出了一种换流器子模块故障冗余保护策略。基于PSCAD/EMTDC仿真验证,通过将多余的能量消耗在分散式小型卸荷负载上,有效地抑制了直流过电压,保证整个柔性直流输电系统在故障期间短时运行,最大限度地保持功率的传输;采用子模块冗余保护策略可使换流器具有一定的故障容错能力,不因一个或少数几个子模块的故障影响整个装置的运行,提高了系统可靠性。

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