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Series-DC connection of Offshore wind generating units - modeling, control and galvanic isolation

机译:海上风力发电机系列系列 - 模拟,控制和电流隔离

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This work proposes an air-core DC-DC solid state transformer to connect the wind turbines of an offshore wind farm in series with a DC transmission link. This emerging layout does not use a power transformer to increase the voltage from the offshore collector network to the transmission level, nor does it require a rectifier station to convert the electrical energy to DC. The diode-clamped rectifiers, connected to each permanent-magnet generator, are controlled to drain sinusoidal currents from the generators in order to extract the maximum power from the wind turbines. The air-core transformer, designed by means of a finite element software, ensures the galvanic isolation between the wind generator and the HVDC link. From the generator side, a single-phase full-bridge three-level inverter feeds the primary coil of the transformer, whereas the secondary coil is wound using by means of an XLPE-insulated cable. This paper also presents a strategy for designing the controllers that regulate the output voltage of each wind conversion unit. Results from digital simulations, obtained with PSCAD/EMTDC, are presented to validate the technical feasibility of the proposed DC-DC solid-state transformer scheme, as well as to demonstrate its performance under different operational conditions.
机译:这项工作提出了一种空心DC-DC固态变压器,将海上风电场的风力涡轮机与直流传输链路连接。该新兴布局不使用电力变压器来将来自近海收集器网络的电压增加到传输电平,也不需要整流站将电能转换为DC。控制与每个永磁发生器的二极管夹紧的整流器被控制以从发电机漏出正弦电流,以便从风力涡轮机中提取最大功率。通过有限元软件设计的空心变压器可确保风力发生器和HVDC链路之间的电流隔离。从发电机侧,单相全桥三级逆变器馈送变压器的初级线圈,而次级线圈通过XLPE绝缘电缆使用。本文还提出了一种设计控制器调节每个风转换单元的输出电压的控制器的策略。通过PSCAD / EMTDC获得的数字模拟结果,以验证所提出的DC-DC固态变压器方案的技术可行性,以及在不同运行条件下展示其性能。

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