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Optimal battery energy storage sizing for reducing wind generation curtailment

机译:最佳的电池储能尺寸,以减少风力发电

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Wind energy offers a viable alternative solution to fossil-fuel based generation and can potentially help address many economical and environmental challenges in electric power grids. The variability of wind generation, however, causes major Technical challenges for system operators in terms of efficient integration. This issue will become more severe for system operator as the wind penetration increases. As a solution to this challenge, wind generation is commonly restricted by specific regulations which help reduce its variability at the expense of losing some its generation, i.e., a generation curtailment. This paper proposes a battery energy storage (BES) planning model to minimize wind generation curtailment and accordingly maximize the deployment of this viable technology. The optimal BES size is further determined through the proposed model to capture the curtailed wind generation. The economic viability of the proposed model is investigated via minimizing the summation of system operation cost and BES investment cost. Numerical simulations reveal the merits of the proposed model.
机译:风能为基于化石燃料的发电提供了可行的替代解决方案,并有可能帮助解决电网中的许多经济和环境挑战。然而,风力发电的可变性在有效集成方面给系统运营商带来了重大的技术挑战。随着风量的增加,这个问题对于系统操作员将变得更加严重。作为对这一挑战的解决方案,风力发电通常受到特定法规的限制,这有助于减少其可变性,但以损失某些发电量(即减少发电量)为代价。本文提出了一种电池能量存储(BES)规划模型,以最大程度地减少风力发电的消耗,从而最大限度地利用这种可行技术。通过提出的模型进一步确定最佳BES大小,以捕获减少的风量。通过最小化系统运行成本和BES投资成本的总和来研究所提出模型的经济可行性。数值模拟揭示了所提出模型的优点。

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