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首页> 外文期刊>Trends in Ecology & Evolution >Enhanced FRT and Postfault Recovery Control for MMC-HVDC Connected Offshore Wind Farms
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Enhanced FRT and Postfault Recovery Control for MMC-HVDC Connected Offshore Wind Farms

机译:强化MMC-HVDC连接海上风电场的FRT和后退恢复控制

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摘要

Modular Multilevel Converter based High Voltage Direct Current (MMC-HVDC) connected offshore wind farms could suffer serious challenges: DC overvoltage during a fault and post-fault DC voltage restoration. In this paper, to mitigate DC overvoltage, a two-stage voltage drop control scheme is proposed for offshore MMC to realize a fast active power reduction, by coordinating with a voltage-dependent active current control of individual wind turbines. The voltage drop depths are designed by considering the offshore de-loading efficiency and the stability of WTs. To improve the post-fault DC voltage recovery performance, an adaptive voltage rise control scheme is proposed to coordinate the recovery of onshore and offshore active power. The recovery trajectory of DC voltage is formulated and further employed to design the onshore active power ramp rate for uninterrupted operation of WTs. Case studies have been conducted on two test systems to validate the proposed method.
机译:基于模块化的多电平转换器的高压直流(MMC-HVDC)连接的海上风电场可能遭受严重的挑战:在故障和故障后直流电压恢复期间DC过电压。 在本文中,为了缓解DC过电压,提出了一种用于近海MMC的两级电压降控制方案,以通过与各个风力涡轮机的电压相关的主电流控制协调来实现快速的有效功率降低。 通过考虑近海脱载效率和WTS的稳定性,设计了电压降深度。 为了提高故障后直流电压恢复性能,提出了一种自适应电压上升控制方案,以协调陆上和海上有源电力的恢复。 制定了DC电压的恢复轨迹,并进一步用于设计用于WTS不间断运行的陆上有源功率斜坡速率。 在两个测试系统中进行了案例研究以验证提出的方法。

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