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Coordinated Operational Strategy of Energy Storage System and Wind Farm

机译:储能系统与风电场协调运营策略

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This paper proposes a coordinated operational strategy of energy storage system (ESS) and wind farm to reduce wind power spillage and alleviate wind power fluctuation. Firstly, power curve of a wind farm, in the form of an equivalent wind turbine, is determined by least square fitting. Based on the power output characteristic of the wind farm and historic operating data, the statistical properties of wind power spillage and fluctuation can be obtained. Secondly, the target for wind farm and ESS power output is calculated. Power generation/absorption capabilities of ESS and available power output reducing range of the wind farm are quantified as well, considering the operational constraints of ESS and dispatched wind power output. Finally, a coordinated operational strategy is developed not only to adjust the combined ESS and wind farm to meet the dispatch requirement, but also to ensure ESS and the wind farm to satisfy operational constraints. Case studies are conducted on a practical wind farm with battery energy storage system installed, which demonstrate that the coordination of ESS can greatly boost the revenue and improve power quality of wind farm.
机译:本文提出了一种能量储存系统(ESS)和风电场协调的运营策略,以减少风力溢出,缓解风力波动。首先,以等效风力涡轮机的形式的风电场的功率曲线由最小二乘配合确定。基于风电场和历史运行数据的功率输出特性,可以获得风力溢出和波动的统计特性。其次,计算风电场和ESS功率输出的目标。考虑到ESS和调度风力输出的操作限制,量化风电场的ESS和可用功率输出降低范围的发电/吸收能力。最后,开发了一种协调的运营策略,不仅可以调整组合的ESS和风电场,以满足派遣要求,也可以确保ESS和风电场满足运营限制。案例研究在实用的风电场上进行了电池储能系统,这表明ESS的协调可以大大提高收入,提高风电场的电力质量。

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