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A novel approach towards evaluation of joint technology performances of battery energy storage system in a fuzzy environment

机译:一种新的模糊环境中电池储能系统联合技术性能的新方法

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摘要

The joint technological features of battery energy storage systems (BESSs), which are a strategic reserve resource with different operating systems, make it possible for these technologies to be comparable with each other. However, technology needs to be evaluated with stakeholders in the energy system to eliminate some engineering and feasibility concerns, to be included in energy storage policies, and to be utilizable. This aim has involved a high level of complexity and uncertainty, as well as many qualitative and quantitative criteria in both technology and stakeholder assessment. Therefore, in the study, Pythagorean Fuzzy (PF) sets, which offer the decision-maker the advantage of a wide evaluation scale, were used with AHP-TOPSIS combination, which has proven effective in many different applications in the literature. The first use of this methodology for joint technology performance evaluation of BESSs will be a visionary contribution to the literature. In the case study, 5 different BESSs (Lead-acid, Lithium-ion, Vanadium redox flow battery, Sodium nickel chloride, Sodium-sulfur) alternatives have been evaluated with the joint technological criteria of these alternatives. The results show that the most important criteria in battery performance are lifetime calendric, energy rating/discharge time, and life cycle criteria, respectively. Another conclusion of the case study is that while the rapidly developing Lithium-ion battery takes the first place in future projections, it takes second place in Lead-acid batteries, which are mature technology.
机译:电池储能系统(BESSS)的联合技术特征是具有不同操作系统的战略储备资源,使得这些技术可以彼此相当。然而,技术需要用能量系统中的利益相关者进行评估,以消除一些工程和可行性问题,以包括在能量存储策略中,并可利用。这一目标涉及高水平的复杂性和不确定性,以及技术和利益相关方评估的许多定性和定量标准。因此,在该研究中,提供决策者的Pythagorean模糊(PF)套装具有广泛评估规模的优势,与AHP-Topsis组合使用,这已经证明在文献中的许多不同应用中有效。第一次使用这种方法的联合技术绩效评估的贝塞斯将是对文献的有远见贡献。在案例研究中,已经通过这些替代品的联合技术标准评估了5种不同的BESS(铅酸,锂离子,钒氧化钠电池,氯化钠,硫磺钠)替代品。结果表明,电池性能中最重要的标准分别是寿命日历,能量额定值/放电时间和生命周期标准。案例研究的另一个结论是,虽然快速发展的锂离子电池在未来的投影中首先取代,但它占铅酸电池的第二位,这是成熟的技术。

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