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Study on a modified reactive power allocation strategy of WF management system considering electrical loss reduction and flexibility in practical operation

机译:考虑电力损耗减少和实际运行灵活性的WF管理系统无功修正分配策略研究

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摘要

The recent development of a number of advanced wind farm (WF) operation strategies, using designed verification studies, has resulted in various operational and economic improvements. These applications focused on stabilised conditions to confirm the improved effect derived from a maximum power extraction condition. In the case of large-scale WFs, however, a physical area with realistic environmental variations should be considered in order to conduct applicable case studies. In this study, the authors propose a modified reactive power allocation strategy, based on proportional techniques, with the system components of a WF structure for utilisation under a variety of practical situations. The proposed method introduces a modified loss prediction model, which takes the resistive components of the wind turbine into consideration. Each analysis is conducted to confirm the feasibility of active reference assignment in terms of loss reduction and flexibility. The simulations are based on electromagnetic transients using DC software tools to perform electrical loss estimation, in order to verify the effectiveness of this strategy.
机译:使用设计的验证研究,最近开发了许多高级风电场(WF)运行策略,从而带来了各种运行和经济改进。这些应用专注于稳定条件,以确认源自最大功率提取条件的改进效果。但是,对于大规模野生动植物,应考虑实际环境变化的物理区域,以便进行适用的案例研究。在这项研究中,作者提出了一种基于比例技术的改进无功功率分配策略,该策略具有WF结构的系统组件,可在各种实际情况下使用。所提出的方法引入了修正的损耗预测模型,该模型考虑了风力涡轮机的电阻分量。进行每种分析以确认主动参考分配在减少损失和灵活性方面的可行性。该仿真基于电磁瞬变,使用DC软件工具执行电损耗估计,以验证该策略的有效性。

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