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首页> 外文期刊>Sustainable Energy, IEEE Transactions on >Expansion Planning Studies of Independent-Locally Operated Battery Energy Storage Systems (BESSs): A CVaR-Based Study
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Expansion Planning Studies of Independent-Locally Operated Battery Energy Storage Systems (BESSs): A CVaR-Based Study

机译:独立局部操作电池储能系统(BESSS)的扩展规划研究:基于CVAR的研究

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摘要

Nowadays, the high penetration of renewable energy resources, with variable and unpredictable nature, poses major challenges to operation and planning studies of power systems. Employing energy storage systems (ESSs) has been introduced as an effective solution to alleviate these challenges. Several studies have been presented in the literature to provide a framework for expansion planning studies of ESSs. However, they usually have two main drawbacks: i) ignoring the positive effect of independent-locally operated ESSs on the bulk power system preferences, ii) inability to model the charge/discharge schedule of independent-locally operated ESSs based on their investors' acceptable risk level. This paper amends the abovementioned shortcomings by proposing a new bi-level framework for expansion studies of ESSs, where the long-term total cost of bulk power systems and the scheduling of independent-locally operated ESSs are modeled in the upper level (UL) and lower-level (LL) problems, respectively. Moreover, the proposed methodology is formulated based on benders dual decomposition technique to effectively reduce the computational effort. Finally, the proposed methodology is implemented on the modified IEEE 73-bus test system, and the results reveal the effectiveness of the proposed ESS planning framework.
机译:如今,可再生能源的高渗透率,具有可变和不可预测的性质,对电力系统的运营和规划研究构成了重大挑战。使用能量存储系统(ESS)作为一种有效的解决方案,以减轻这些挑战。文献中提出了几项研究,为ESS的扩展计划研究提供了框架。然而,它们通常有两个主要缺点:i)忽略独立局部操作的ESS对散装电力系统偏好的积极影响,ii)无法根据其投资者的可接受来模拟独立局部操作的ESS的充电/放电时间表风险水平。本文通过提出对ESS的扩展研究的新的双层框架来修改上述缺点,其中散装电力系统的长期总成本和独立局部操作的ESS的调度在上层(UL)和较低级别(LL)问题。此外,基于弯曲的双分解技术配制了所提出的方法,以有效降低计算工作。最后,在修改的IEEE 73总线测试系统上实施了所提出的方法,结果揭示了所提出的ESS计划框架的有效性。

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