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Medium frequency transformer based configuration for voltage source converter based offshore wind farm

机译:基于中频变压器的基于电压源转换器的海上风电场配置

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The biggest challenge for existing offshore wind farms is the bulky and costly offshore substation. Series-connected offshore wind farm configuration, on the other hand, featuring no offshore substation, is getting increased attention in the research. In this study, a medium frequency transformer (MFT)-based configuration is proposed for such series-connected offshore wind farms. The proposed configuration consists of two parts, offshore and onshore. The modular multilevel converter (MMC) is employed at onshore, while the offshore part is composed of numbers of series-connected wind turbine-based systems. Each wind turbine-based system consists of a medium-voltage permanent magnet synchronous generator, a passive three-phase rectifier, and a modular MFT-based converter. By contrast to the commercial offshore wind farm, the proposed configuration features low cost thanks to the series-connected structure; by contrast to configurations in the literature, the present configuration features high power density, high reliability and flexibility thanks to the adoption of the modular MFT-based converter. Apart from fulfilling traditional control objectives (maximum power point tracking, dc-link voltage control, and reactive power regulation), this work endeavors to ensure evenly distributed power and voltage sharing among the constituent modules given the cascaded structure of the MFT-based converter. Finally, simulated results are provided to verify its performance.
机译:现有海上风电场的最大挑战是庞大而昂贵的海上变电站。另一方面,没有海上变电站的串联海上风电场配置在研究中得到了越来越多的关注。在这项研究中,针对此类串联海上风力发电场,提出了一种基于中频变压器(MFT)的配置。提议的配置包括海上和陆上两部分。陆上采用模块化多电平转换器(MMC),而海上部分则由许多串联的基于风力涡轮机的系统组成。每个基于风力涡轮机的系统均由一个中压永磁同步发电机,一个无源三相整流器和一个基于模块化MFT的转换器组成。与商业海上风电场相比,由于采用了串联结构,因此建议的配置具有低成本的特点。与文献中的配置相比,由于采用了模块化的基于MFT的转换器,因此本配置具有高功率密度,高可靠性和灵活性。除了实现传统的控制目标(最大功率点跟踪,直流链路电压控制和无功功率调节)以外,鉴于基于MFT的转换器的级联结构,这项工作还努力确保组成模块之间的功率和电压平均分配。最后,提供了仿真结果以验证其性能。

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