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Coordinated Power Dispatch of a PMSG based Wind Farm for Output Power Maximizing Considering the Wake Effect and Losses

机译:基于pmsG的风电场的协调电力调度,用于考虑尾流效应和损耗的输出功率最大化

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摘要

The energy loss in a wind farm (WF) caused by wake interaction between wind turbines (WTs) is quite high, which can be reduced by proper active power dispatch. The electrical loss inside a WF by improper active power and reactive power dispatch is also considerable. In this paper, a coordinated active power and reactive power dispatch strategy is proposed for a Permanent magnet synchronous generator (PMSG) based WF, in order to maximize the total output power by reducing the wake effect and losses inside the devices of the WF, including the copper loss and iron loss of PMSGs, losses inside converters and transformers of WTs and the losses along the transmission cables. The active power reference and reactive power reference of each WT are chosen as the optimization variables and a partial swarm optimizing (PSO) algorithm is used for solving the problem. The proposed strategy is compared with traditional strategies in a designed WF. Simulation results show the effectiveness of the proposed strategy.
机译:风力涡轮机(WTs)之间的尾流相互作用在风电场(WF)中造成的能量损失非常高,可以通过适当的有功功率分配来减少能量损失。 WF内部由于不当有功功率和无功功率分配而造成的电损耗也相当大。本文针对永磁同步发电机(WFSG)提出了一种协调的有功功率和无功功率分配策略,以通过减少WF器件内部的唤醒效应和损耗来最大程度地提高总输出功率,包括PMSG的铜损和铁损,WT的转换器和变压器内的损耗以及沿传输电缆的损耗。选择每个WT的有功功率参考和无功功率参考作为优化变量,并使用局部群优化(PSO)算法解决该问题。在设计的WF中将拟议的策略与传统策略进行了比较。仿真结果表明了所提策略的有效性。

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