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Flexible operation of batteries in power system scheduling with renewable energy

机译:具有可再生能源的电力系统中电池的灵活操作

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Summary form only given. The fast growing expansion of renewable energy increases the complexities in balancing generation and demand in the power system. The energy-shifting and fast-ramping capability of energy storage has led to increasing interests in batteries to facilitate the integration of renewable resources. In this paper, we present a two-step framework to evaluate the potential value of energy storage in power systems with renewable generation. First, we formulate a stochastic unit commitment approach with wind power forecast uncertainty and energy storage. Second, the solution from the stochastic unit commitment is used to derive a flexible schedule for energy storage in economic dispatch where the look-ahead horizon is limited. Analysis is conducted on the IEEE 24-bus system to demonstrate the benefits of battery storage in systems with renewable resources and the effectiveness of the proposed battery operation strategy.
机译:摘要表格仅给出。可再生能源的快速增长扩张会增加电力系统平衡发电和需求方面的复杂性。能量存储的能量移位和快速升高能力导致电池的兴趣越来越大,以促进可再生资源的整合。在本文中,我们提出了一个两步框架,以评估能量存储在具有可再生生成的电力系统中的潜在价值。首先,我们制定随机单位承诺方法,风电预测不确定性和储能。其次,从随机单位承诺的解决方案用于推导出在经济调度中的能量储存的灵活时间表,其中展望前景是有限的。在IEEE 24-Bus系统上进行了分析,以展示具有可再生资源的系统中电池存储和所提出的电池操作策略的有效性的优势。

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