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HB and FB MMC Based Onshore Converter in Series-Connected Offshore Wind Farm

机译:串联海上风电场中基于HB和FB MMC的陆上变流器

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In contrast to the traditional high-voltage direct current (HVdc) based offshore wind farms, series-connected offshore wind farms do not require transformers, voltage source converters (VSCs), and platforms in offshore, thereby significantly decreasing costs. In this study, the onshore converter, which is based on the half-bridge (HB) modular multilevel converter (MMC), and full-bridge (FB) MMC, is proposed to reduce the costs and power loss of the series-connected offshore wind farm. In this type of onshore converter, the dc voltage of the HB-MMC is controlled to be the rated dc voltage, while the dc voltage of FB-MMC can vary from negative rated dc voltage to positive rated dc voltage. With the variable dc voltage of the FB-MMC, the dc-link current of the series-connected offshore wind farm can be controlled at will. Moreover, the dc-link current control strategies are proposed to reduce the power loss of the offshore wind farm. The capacitor voltage balance control, which is suitable for FB-MMC with variable dc voltage, is proposed to ensure the normal operation of the onshore converter. Finally, simulation and experimental results verify the feasibility of the proposed onshore converter and the corresponding control algorithm.
机译:与传统的基于高压直流(HVdc)的海上风电场相比,串联的海上风电场不需要海上的变压器,电压源转换器(VSC)和平台,从而大大降低了成本。在这项研究中,基于半桥(HB)模块化多电平转换器(MMC)和全桥(FB)MMC的岸上转换器被提出,以降低串联海上平台的成本和功率损耗风电场。在这种岸上转换器中,将HB-MMC的直流电压控制为额定直流电压,而FB-MMC的直流电压可以从负额定直流电压变化为正额定直流电压。利用FB-MMC的可变直流电压,可以随意控制串联海上风电场的直流链路电流。此外,提出了直流母线电流控制策略以减少海上风电场的功率损耗。提出了适用于可变直流电压的FB-MMC的电容器电压平衡控制,以确保在岸转换器的正常运行。最后,仿真和实验结果验证了所提出的岸上变流器和相应控制算法的可行性。

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