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Ranking Method for Peak-Load Shifting Considering Different Types of Data

机译:考虑不同数据类型的峰值负载转移排序方法

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摘要

Management measures for peak-load shifting are employed to alleviate power shortages during the peak hours in some countries with power-supply shortages, such as China. One of the most popular measures is to rank the electricity users with respect to their relative importance in the society. In ranking the sequence, the decision maker may encounter difficulties because the types of data employed for this purpose are not consistent. Thus, a ranking method capable of handling different types of data is necessary and presented in this paper. To prioritize electricity users in a reasonable manner, an evaluation system for the purpose of peak-load shifting is established from three aspects: economic, social, and environmental impacts. Then a mixed-data dominance method is employed in this work to determine the comprehensive closeness degree of each user under each index, and an optimal comprehensive weight model is then presented with both the subjective weights and objective weights. Based on the attained optimal comprehensive weight and the comprehensive closeness degree, the weighted closeness degree of each electricity user can be calculated and the final ranking result for all electricity users obtained. The proposed approach is demonstrated by actual data of Guangzhou city in China.
机译:在一些电源短缺的国家(例如中国),在高峰时段采取了高峰负荷转移管理措施,以缓解高峰期的电力短缺。最受欢迎的措施之一是根据电力用户在社会中的相对重要性来对其排名。在排序顺序时,决策者可能会遇到困难,因为为此目的采用的数据类型不一致。因此,本文提出了一种能够处理不同类型数据的排序方法。为了以合理的方式对用电者进行优先排序,从三个方面建立了用于峰值负荷转移的评估系统:经济,社会和环境影响。然后,采用混合数据优势方法确定每个用户在每个指标下的综合亲和度,然后给出具有主观权重和客观权重的最优综合权重模型。基于获得的最优综合权重和综合亲和度,可以计算出每个用电用户的加权亲和度,并获得所有用电用户的最终排名结果。中国广州市的实际数据证明了该方法的有效性。

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