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Microgrids availability evaluation using a Markov chain energy storage model: a comparison study in system architectures

机译:使用马尔可夫链能量存储模型的微电网可用性评估:系统架构中的比较研究

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This paper investigates the effect of energy storage systems on the availability of microgrids with different architectures in the presence of renewable energy sources (RESs). When RESs are used for power generation within a microgrid, its availability may be reduced due to the intermittent nature of RESs. Thus, energy storage systems may be used as a solution to improve microgrids availability. Therefore, it is important to have a realistic evaluation of microgrids availability and to determine how added energy storage affects microgrids. Since energy storage system is not just a one-time-use reserve, charging and discharging processes in energy storage need to be considered when their availability is evaluated. Thus, a Markov chain model is used in this paper to properly represent the charging and discharging processes of energy storage systems, and minimal cut sets method is used in order to evaluate the availability of different microgrid architectures. Using the proposed method, availabilities of radial, ring, and ladder type microgrid architectures are evaluated in the presence of RESs and energy storage systems, and results are discussed.
机译:本文研究了在存在可再生能源(RES)的情况下,储能系统对具有不同架构的微电网可用性的影响。当RES用于微电网内的发电时,由于RES的间歇性,其可用性可能会降低。因此,能量存储系统可以用作提高微电网可用性的解决方案。因此,重要的是对微电网的可用性进行现实的评估,并确定增加的能量存储如何影响微电网。由于能量存储系统不仅仅是一次性使用的储备,因此在评估其可用性时需要考虑能量存储中的充电和放电过程。因此,本文使用马尔可夫链模型来正确表示储能系统的充电和放电过程,并使用最小割集法来评估不同微电网架构的可用性。使用提出的方法,在存在RES和能量存储系统的情况下,评估了径向,环形和梯形微电网架构的可用性,并讨论了结果。

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