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首页> 外文期刊>IEEE Transactions on Industrial Electronics >Topology Design for Collector Systems of Offshore Wind Farms With Pure DC Power Systems
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Topology Design for Collector Systems of Offshore Wind Farms With Pure DC Power Systems

机译:具有纯直流电系统的海上风电场集热系统的拓扑设计

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摘要

This paper presents an analytical design method for the dc collector systems of offshore wind farms and proposes an improved topology to overcome the limitations of the conventional series–parallel (SP) topology. During a severe failure in the SP topology, bypassing the faulty units imposes overvoltage on fault-free units and leads to the disconnection of the series branch from the collector system. By providing auxiliary connection paths, the suggested topology reduces the overvoltage of the units and hence maintains fault-free units operational following a severe failure. Hence, the efficiency of a wind farm increases considerably upon any failure occurrence. To show the merits of the suggested topology, the captured power during a failure has been calculated and fairly compared with that of the conventional SP topology, considering the excess cost of the suggested topology due to additional connection paths. To investigate the performances of both topologies and their feasibility, a collector system including 12 wind turbine generators has been simulated in time domain software environment. Then, various failure scenarios have been investigated to evaluate the transient behavior of the dc collector system following slight and severe failures. The study results reveal the feasibility of the proposed topology as a promising structure for future dc collector systems.
机译:本文提出了一种用于海上风电场直流收集器系统的分析设计方法,并提出了一种改进的拓扑结构,以克服传统的串并联(SP)拓扑结构的局限性。在SP拓扑严重故障期间,绕开故障单元会在无故障单元上施加过电压,并导致串联支路与收集器系统断开连接。通过提供辅助连接路径,建议的拓扑结构可降低设备的过电压,从而在出现严重故障后保持无故障的设备运行。因此,一旦发生任何故障,风电场的效率就会大大提高。为了显示建议的拓扑的优点,考虑到由于额外的连接路径而导致的建议拓扑的额外成本,已计算出故障期间捕获的功率并将其与常规SP拓扑进行了合理比较。为了研究这两种拓扑的性能及其可行性,已在时域软件环境中模拟了一个包含12个风力涡轮发电机的收集器系统。然后,已经研究了各种故障情况,以评估轻微和严重故障后直流收集器系统的瞬态行为。研究结果表明,提出的拓扑作为未来直流收集器系统的有希望的结构的可行性。

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