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Operational optimization of a building-level integrated energy system considering additional potential benefits of energy storage

机译:考虑储能额外潜在益处的建筑级集成能源系统的运行优化

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As a key component of an integrated energy system (IES), energy storage can effectively alleviate the problem of the times between energy production and consumption. Exploiting the benefits of energy storage can improve the competitiveness of multi-energy systems. This paper proposes a method for day-ahead operation optimization of a building-level integrated energy system (BIES) considering additional potential benefits of energy storage. Based on the characteristics of peak-shaving and valley-filling of energy storage, and further consideration of the changes in the system's load and real-time electricity price, a model of additional potential benefits of energy storage is developed. Aiming at the lowest total operating cost, a bi-level optimal operational model for day-ahead operation of BIES is developed. A case analysis of different dispatch strategies verifies that the addition of the proposed battery scheduling strategy improves economic operation. The results demonstrate that the model can exploit energy storage's potential, further optimize the power output of BIES and reduce the economic cost.
机译:作为集成能量系统(IES)的关键部件,能量存储可以有效地减轻能源生产和消费之间的时间的问题。利用储能的好处可以提高多能源系统的竞争力。本文提出了考虑额外潜在的储能效益的建筑级综合能源系统(BIES)的一天前运行优化方法。基于峰值剃须和谷填充能量储存的特点,进一步考虑系统负荷和实时电价的变化,开发了储能额外潜在益处的模型。旨在以最低的总运营成本,开发了一双层最佳操作模型,用于珠光的一天的前方操作。对不同派遣策略的案例分析验证了拟议的电池调度策略的增加提高了经济运行。结果表明,该模型可以利用储能的潜力,进一步优化偏见的功率输出并降低经济成本。

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