Stochastic Unit Commitment of a Distribution Network with Non-ideal Energy Storage

A. Gonzalez-Castellanos, David Pozo, A. Bischi
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引用次数: 6

Abstract

The need for secure and flexible operation of distribution power systems with renewable generation and the decline in battery prices have made energy storage projects a viable option. The storage characterization currently utilized for power system models relies on two significant assumptions: the storage efficiency and power limits are constant. This approach can lead to an overestimation of the available battery power and energy, thus, threatening the system reliability. We introduce a stochastic operating model for distribution systems with non-ideal energy storage, that allows the purchasing of energy and reserves from the electricity market through the interconnection with the transmission system. The model's objective is the centralized minimization of the operational costs derived from the energy and reserves purchase at the electricity market, as well as those incurred while operating the system's fuel-based and renewable generation, and energy storage system. The proposed energy storage model is computationally validated and compared on a modified IEEE 33-bus electric distribution system.
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非理想储能配电网的随机单元承诺
可再生能源发电对配电系统安全和灵活运行的需求,以及电池价格的下降,使储能项目成为一个可行的选择。目前用于电力系统模型的存储特性依赖于两个重要的假设:存储效率和功率限制是恒定的。这种方法会导致对可用电池功率和能量的过高估计,从而威胁到系统的可靠性。本文引入了非理想储能配电系统的随机运行模型,该模型允许通过与输电系统的互联从电力市场购买能量和储备。该模型的目标是集中最小化从电力市场上购买能源和储备所产生的运营成本,以及运行系统的燃料发电和可再生发电以及储能系统所产生的运营成本。在改进的IEEE 33总线配电系统上对所提出的储能模型进行了计算验证和比较。
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