分布式发电系统选择采用多准则决策模糊TOPSIS优化

V. S. Galgali, G. Vaidya, M. Ramachandran
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引用次数: 4

摘要

分布式发电(DG)是位于负荷中心附近的模块化发电技术。DGs有助于避免昂贵的长距离电力传输,这种传输既昂贵又有损耗,同时也为中央电网提供了一定的救济。它们既可靠又环保。分布式发电系统可以证明对当地经济有利,提高能源独立性,提供低成本电力,同时为有关配电公用事业公司提供进入自由化发电市场的机会。有广泛的DG选项可供选择。当面对大量DG选项时,选择正确的选项可能是一项艰巨的任务。本文将多准则决策(Multi-Criteria Decision Making, MCDM)技术应用于DG系统的排序。本文考虑的DG系统是往复式发动机(RE),微型涡轮机(MT),燃料电池(FC),太阳能光伏(PV)和风力涡轮机(WT),而用于排名的标准是成本,最小启动时间,噪音,排放水平和连续性。采用模糊TOPSIS的MCDM技术进行分析,使用区间香农熵方法确定标准的权重值。结果表明,DG系统偏好排序的第一标准是PV,其次是FC、RE、MT和WT。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Selection of distributed generation system using multicriteriadecision making fuzzy TOPSIS optimization
Distributed Generations (DG) are modular power generating technologies that are located near the load centers. DGs help avoid the expensive long distance transmission of power which is expensive and lossful while providing certain relief to the central power grid. They can be reliable and environmental friendly. DGs can prove beneficial for the local economies, enhance the energy independence, provides lowcost electricity at the same time providing access to liberalized generation markets for the concerned distribution utilities. There is wide range of DG options available. When presented with wide range of DG options selecting the correct one can prove to be daunting task. In this paper Multi-Criteria Decision Making (MCDM) technique which is increasingly popular is used for ranking DG systems. The DG systems considered in this paper are reciprocating engines (RE), micro turbine (MT), fuel cell (FC), solar PV (PV) and wind turbine (WT) while the criteria used for ranking are cost, minimum starting time, noise, emission level and continuity. The analysis is done with the aid of MCDM technique employing Fuzzy TOPSIS while weight values of the criteria are determined using the Interval Shannon's Entropy methodology. As per results obtained the first criterion in preference ranking of DG systems is PV, followed by FC, RE, MT and WT.
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