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Optimal Sizing and Operation of Battery Energy Storage Systems Connected to Wind Farms Participating in Electricity Markets

机译:连接到参与电力市场的风电场的电池储能系统的最佳尺寸和运行

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摘要

A Battery Energy Storage System (BESS) is a reliable resource to provide energy for various power system applications. The BESS can increase the flexibility and reliability' of the renewable energy dispatch. Wind energy has the largest contribution among renewable energy resources and its control has become a research focus in power systems area. This paper introduces a novel BESS control to manage the net energy exchange between a wind farm and the grid in an electricity market. A Receding Horizon Control (RHC) scheme is proposed for optimal operation of the BESS in the presence of operational constraints. The proposed method seeks a decision policy to manage operation of the BESS to increase daily profits. Utilizing short-term wind and price forecasts provide valuable information for the BESS controller to obtain the best times to charge batteries, discharge the stored energy, or purchase energy from the DA market. An optimization problem is formulated considering BESS costs and operational constraints. This optimization problem, at each time step, is solved using the RHC scheme. All wind and electricity price data and case studies in this paper are based on MISO energy market data.
机译:电池储能系统(BESS)是可靠的资源,可为各种电力系统应用提供能量。 BESS可以提高可再生能源调度的灵活性和可靠性。风能在可再生能源中的贡献最大,其控制已成为电力系统领域的研究重点。本文介绍了一种新颖的BESS控制,用于管理电力市场中风电场与电网之间的净能量交换。提出了一种后视水平控制(RHC)方案,用于在存在操作约束的情况下优化BESS的操作。所提出的方法寻求一种决策策略来管理BESS的运行以增加每日利润。利用短期风能和价格预测,可以为BESS控制器提供宝贵的信息,以获取最佳的时间来为电池充电,释放存储的能量或从DA市场购买能量。考虑到BESS成本和运营约束条件,提出了一个优化问题。使用RHC方案可以解决每个时间步骤的优化问题。本文中所有风电价格数据和案例研究均基于MISO能源市场数据。

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