Distributed Generation (DG) system using COPRAS method

3 Pub Date : 2024-02-19 DOI:10.46632/jame/2/3/2
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引用次数: 1

Abstract

Distributed Generation (DG) system. Distributed Generation (DG) power systems, Expansion of power systems in remote areas, and Very recently as a sustainable way of electrification popular. Depletion of conventional fossil fuels, Fuel price volatility, and emissions Awareness environment about reduction, Due to this its demand is increasing. DG systems have additional power quality challenges. There are many types of DG power sources that produce electrical power with different voltages at various frequencies. RES-Based Distributed Generation (DG) Systems are conventional energy systems In finding new modern solutions for planning have contributed Widespread use of DG is old and Defines new views, Current delivery system The only way to deal with the project Calling for more complex defenses. COPRAS (Complex Proportionality Assessment) is very Multiple criteria used in decision-making methods is one. This technique is different Decision making by researchers Used to solve problems. Investment cost, operating cost, Primary energy consumption, CO2 emissions. Energy storage system, fuel system, Wind Solar Hybrid System, Conventional System, PV energy storage system. Involvement of Distributed Generation (DG) system PV energy storage system ranked 1st, and the Conventional system also got 5th position.
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使用 COPRAS 方法的分布式发电(DG)系统
分布式发电(DG)系统。分布式发电(DG)电力系统是在偏远地区扩建的电力系统,最近作为一种可持续的电气化方式大受欢迎。由于传统化石燃料的枯竭、燃料价格的波动以及对环境的影响,对分布式发电系统的需求不断增加。DG 系统还面临额外的电能质量挑战。分布式发电系统有多种类型,可产生不同频率、不同电压的电力。基于可再生能源的分布式发电(DG)系统是传统的能源系统,在寻找新的现代规划解决方案方面做出了贡献,DG 的广泛使用已经有很长的历史,并定义了新的观点,当前的传输系统是处理项目的唯一方法,需要更复杂的防御措施。COPRAS(复杂比例评估)是决策方法中使用的非常多的标准之一。该技术与研究人员的决策不同,用于解决问题。投资成本、运营成本、一次能源消耗量、二氧化碳排放量。储能系统、燃料系统、风光互补系统、传统系统、光伏储能系统。分布式发电(DG)系统光伏储能系统排名第一,传统系统排名第五。
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