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An optimal capacity configuration method of wind/PV and energy storage co-generation system

机译:风/光伏与能量存储事件系统的最优配置方法

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摘要

Taking full advantages of the complementary characteristics of the wind power, the solar power and the energy storage devices, the wind, PV and energy storage (wind-PV-ES) co-generation system with reasonable capacity configuration can get stable power output, thus improving the power quality and significantly reducing the impact of power volatility on the grid. In the paper, based on historical data of wind and solar resources, the sum of the peak-vale slopes, power output fluctuation rates and active power deviation rates are chosen as evaluation indexes for the large-scale wind-PV-ES generation system. The probability distribution of the evaluation indexes and the probability change rate of the indexes in the range of fluctuation thresholds during the study period are analyzed by a statistical method. On this basis, an optimal capacity configuration method, which aims to smooth the output by maximizing the probability that the requirements for power change rate of co-generation system are satisfied, is put forward. Finally, the proposed method is verified by an example.
机译:采用风电,太阳能和储能装置,风,光伏和能量存储(风PV-ES)的互补特性的完整优点,具有合理的容量配置可以获得稳定的功率输出,从而实现稳定的功率输出提高电力质量,从而大大降低电网上功率波动的影响。本文基于风和太阳能资源的历史数据,选择了峰值坡度,功率输出波动率和有源功率偏差率的总和作为大型风电路-ES生成系统的评估指标。通过统计方法分析了在研究期间的波动阈值范围内评价指标和索引概率变化率的概率分布。在此基础上,最佳的容量配置方法,旨在通过最大化CO-GANGINATION系统的功率变化率要求的概率来平滑输出。最后,通过示例验证所提出的方法。

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