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An original multi-criteria decision-making algorithm for solar panels selection in buildings

机译:建筑物中太阳能电池板选择的原始多标准决策算法

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摘要

Nowadays, there are several thousand solar panels (SP) in the market. These panels vary in size, efficiency, cost, warranty, technology, etc. Selecting the best SP becomes complicated when other factors are added to the list, such as the available roof area, weather conditions, electricity tariffs, energy consumptions, etc. Therefore, it becomes crucial to propose an algorithm that selects the best SP for a specific client and provides the best combination of quality-cost-satisfaction. This paper presents an original multi-criteria decision-making algorithm based on the concept of Rank-Weight-Rank to select the best SP by considering many criteria. For validation purposes, our method is compared to TOPSIS, and it shows advantages, especially regarding the simulation time and the accuracy of the selection. Our approach is faster than TOPSIS, and the speed of finding the solution increases exponentially when the number of criteria and alternatives increases. Moreover, it is reliable and accurate since the probability is more than 78% for similarity of 90%-100% between both methods in selecting the same best alternative. Results show that the highest SP efficiency and the most expensive ones are not the best alternatives, nor the lowest efficient neither the cheapest SPs are the worst alternatives. (C) 2020 Elsevier Ltd. All rights reserved.
机译:如今,市场上有几千个太阳能电池板(SP)。这些面板的大小,效率,成本,保修,技术等。选择最佳SP变得复杂,当添加到列表中,例如可用的屋顶区域,天气条件,电力关税,能耗等。因此,提出一种为特定客户端选择最佳SP的算法变得至关重要,并提供质量成本满意度的最佳组合。本文介绍了基于秩级概念的原始多标准决策算法,通过考虑许多标准来选择最佳SP。为了验证目的,我们的方法与Topsis进行了比较,并且它显示了优点,特别是关于模拟时间和选择的准确性。我们的方法比TOPSIS快,当标准和替代方案的数量增加时,找到解决方案的速度会增加。此外,它可以是可靠的和准确的,因为在选择相同的替代方案时,在两种方法之间的相似性为90%-100%的概率超过78%。结果表明,最高的SP效率和最昂贵的不是最好的替代方案,也不高效既不是最便宜的SPS是最糟糕的替代品。 (c)2020 elestvier有限公司保留所有权利。

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