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Modified reactive power allocation strategy for large-scale offshore wind turbine considering subsystem configuration

机译:考虑子系统配置的大型海上风力涡轮机改造的无功功率分配策略

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Recent research on wind-farm control methods has focused until now on maximising the efficiency and durability of farm operations, as verified for a normalised electrical layout. However, with the increase of turbine size and capacity, it is necessary to develop modifications of the farm management plan that can support the increasing demands of the wind-turbine industry. Here the authors propose a modification that focuses on a proportional reactive power-dispatch method that is applied to radial offshore farm networks. They improve a previously developed method of proportionally distributing reactive power commands by considering the actual configuration of an offshore platform. To confirm the applicability of this method in transient state, they examine case studies using a time-varying signal for a reactive power reference under fluctuating wind. Electromagnetic transients using DC software tools are used to estimate the electrical loss and verify the efficiency of this strategy.
机译:最近关于风电场控制方法的研究专注于现在最大限度地提高农业运营的效率和耐用性,因为验证了标准化的电气布局。然而,随着涡轮机尺寸和容量的增加,有必要制定能够支持风力涡轮机行业不断增长的农业管理计划的修改。此处提出了一种修改,专注于应用于径向近海农业网络的比例无功功率分派方法。它们通过考虑近海平台的实际配置来改善先前开发的方法,以通过考虑离岸平台的实际配置来分配无功功率命令。为了在瞬态状态下确认该方法的适用性,他们使用时变信号在波动风下使用时变功率参考来检查案例研究。使用DC软件工具的电磁瞬变用于估计电损耗并验证该策略的效率。

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