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Wind Farm Active Load Allocation Scheme considering Wind Speed Fluctuations

机译:考虑风速波动的风电场有源负荷分配方案

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According to the structure and information flow of the active control system of large-scale wind farm, a load allocation scheme is proposed considering the wind speed fluctuations within the cluster, i.e. deciding the de-load depth of each turbine according to wind speed fluctuation when the farm is running under AGC mode, using wind turbine generator (WTG) de-load ability to reduce the impacts of wind speed fluctuations on the entire wind farm output. Use particle swarm optimization, prediction of WTG generation, wind speed fluctuation condition, wind scheduling instruction information to calculate the WTG de-load depth risk factors, and get the de-load power order distribution scheme. A simulation of 10 2 MW WTGs shows that, load allocation scheme considering the wind speed fluctuations can reflect the relationship effectively between wind speed condition and output reliability, and promote the stability of wind farm output.
机译:根据大型风电场的主动控制系统的结构和信息流,提出了考虑簇内的风速波动的负载分配方案,即根据风速波动确定每个涡轮机的脱载深度该农场正在AGC模式下运行,采用风力涡轮发电机(WTG)去载能力来减少风力波动对整个风电场输出的影响。使用粒子群优化,预测WTG生成,风速波动条件,风调度指令信息来计算WTG脱载深度风险因素,并获得脱载电源配电方案。 10 2 MW WTG的模拟表明,考虑风速波动的负载分配方案可以有效地反映风速条件和输出可靠性之间的关系,并促进风电场输出的稳定性。

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