Energy efficiency analysis of energy facilities using ranking methods

V. Less, V. Lyubchenko, D. Pavlyuchenko
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Abstract

RELEVANCE. Increasing energy efficiency is one of the necessary conditions for modernizing the Russian economy. High energy intensity and energy efficiency analysis are due to the combined influence of a number of factors, both global and private. Thus, for electric grid organizations the problem of energy efficiency is a priority. Having at their disposal electrical grid facilities, including points of reception and transmission of electrical energy, electrical equipment and power transmission lines, electrical grid organizations incur huge losses caused by losses during the transmission of electrical energy, losses associated with the unaccounted share of electricity, as well as third-party factors. OBJECT. Conduct an analysis of the energy efficiency of an electric grid organization that has 10 branches. Form a hierarchy of energy efficiency indicators, determine the impact of each indicator on the integral indicator that reflects the energy efficiency of the facility. Conduct benchmarking, identify leaders and outsiders among power grid organizations. METHODS. To calculate the weight coefficients, the method of analysis of hierarchies in the classical and fuzzy formulations was used. Energy efficiency benchmarking was carried out by ranking power grid organizations according to the integral indicator of energy efficiency. RESULTS. A three-level hierarchy of energy efficiency indicators has been formed. A decision-making algorithm is presented when analyzing the energy efficiency of energy industry facilities. The weight coefficients of indicators and integral values of energy efficiency of organizations are calculated. The indicators that have the greatest impact on the overall efficiency of the facility were identified. A summary diagram of comparison of all branches has been formed, the most and least successful organizations have been identified. CONCLUSIONS. The analysis of energy efficiency, carried out using two methods of analysis of hierarchies, made it possible to identify the advantages and disadvantages of the classical representation of the method. Determination of leaders within the branch structure of the electric grid organization allows us to analyze the methods used to improve energy efficiency, as well as to introduce them in the future to less successful branches.
利用排序法对能源设施进行能效分析
意义。提高能源效率是俄罗斯经济现代化的必要条件之一。高能源强度和能源效率分析是由许多因素共同影响造成的,既有全球性因素,也有私人因素。因此,对电网组织而言,能源效率问题是一个优先事项。电网组织拥有电网设施,包括电能接收和传输点、电气设备和输电线路,电网组织因电能传输过程中的损失、与电能份额不明有关的损失以及第三方因素而蒙受巨大损失。目标:对一个拥有 10 个分支机构的电网组织的能源效率进行分析。形成能效指标的层次结构,确定每个指标对反映设施能效的整体指标的影响。开展标杆分析,确定电网组织中的领先者和落后者。方法: 计算权重系数时,采用了经典公式和模糊公式中的层次分析法。根据能效积分指标对电网组织进行排序,从而开展能效基准测试。结果。形成了能效指标的三级层次结构。在分析能源工业设施能效时,提出了一种决策算法。计算了指标权重系数和机构能效积分值。确定了对设施整体效率影响最大的指标。形成了所有分支机构的比较汇总图,确定了最成功和最不成功的机构。结论。使用两种层次结构分析方法进行的能源效率分析,可以确定经典方法的优缺点。通过确定电网组织分支结构中的领导者,我们可以分析用于提高能源效率的方法,并在未来将这些方法引入到不太成功的分支机构中。
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