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首页> 外文期刊>Bulletin of the Polish Academy of Sciences. Technical Sciences >Full-bridge MMC DC fault ride-through and STATCOM operation in multi-terminal HVDC grids
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Full-bridge MMC DC fault ride-through and STATCOM operation in multi-terminal HVDC grids

机译:全桥MMC DC故障骑行和STATCOM操作在多终端HVDC网格中

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摘要

This paper investigates a control structure to enhance the DC fault ride-through capability of a full-bridge modular multilevel converter (MMC) station, while ensuring a stable controlled operation as a STATCOM during DC faults without the need for fault isolation. Taking advantage of the switching states of a full-bridge submodule, a DC current controller is proposed, which provides the DC voltage reference for the modulation when a DC fault is detected. By changing the outer controllers strategy from DC voltage or active power control to converter energy control during a fault, the decoupling of the converter operation from the DC side dynamics is realized. In this paper, the focus is on the control methodology at all times of operation and the evaluation of the STATCOM control during a fault. To this end, extensive simulations were performed on a three-terminal high voltage direct current (HVDC) grid in radial configuration and a pole-to-pole DC fault case was investigated. The results showed that the AC voltage and current were controlled within limits at all times, while the full-bridge MMC was able to provide reactive power support to the AC grid. Moreover, using the proposed control methodology, the transients at the operation transition points between STATCOM and inverter/rectifier operation were minimized and the stations were able to safely ride through the fault.
机译:本文调查了控制结构,提升了全桥模块化多电平转换器(MMC)站的直流故障乘坐能力,同时确保在直流故障期间稳定的受控操作,而无需故障隔离。利用全桥模块的开关状态,提出了一种直流电流控制器,为检测到DC故障时,为调制提供了DC电压参考。通过在故障期间改变从DC电压或电源控制到转换器能量控制的外控制器策略,实现了从DC侧动态的转换器操作的去耦。在本文中,重点在于在一次运行时的控制方法和故障期间评估Statcom控制。为此,在径向配置中对三端高压直流(HVDC)网格进行广泛的模拟,并研究了极点直流故障情况。结果表明,AC电压和电流始终控制在极限内,而全桥MMC能够为AC电网提供无功功率支撑。此外,使用所提出的控制方法,最小化Statcom和逆变器/整流器操作之间的操作转换点处的瞬态,并且该站能够安全地乘坐故障。

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