An Integrated Neutrosophic Approach for the Urban Energy Internet Assessment under Sustainability Dimensions

Walaa M. Sabry
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Abstract

The urgent issue of climate change has resulted in an increasing preoccupation with the transition to low-carbon energy. The urban energy internet (UEI) enables the efficient utilization of renewable energy via the integration of contemporary energy grids, smart energy services, and cyber-physical systems. Consequently, the assessment of urban energy is vital for the construction of low-carbon cities. This study intends to provide an integrated decision-making approach for addressing assessment challenges related to UEI, with a focus on sustainability. The introduced approach adopts the opinions of three experts to express their opinions through semantic terms in evaluating sustainability factors and evaluating UEI projects. Determining the most suitable project for sustainable UEI is a difficult task. In addition, there are multiple sustainability dimensions, including: economic, social, technical, environmental and resource dimension. This paper presents an integrated approach through which experts can use semantic terms to express their opinions to evaluate the priorities of sustainability dimensions that affect the sustainability of UEI projects. Therefore, this study applies a hybrid multi-criteria decision making (MCDM) approach that takes into account multiple dimensions. Also, the uncertainty in the study is handled by type 2 neutrosophic numbers (T2NNs). Initially, the CRiteria Importance through Inter-criteria Correlation (CRITIC) method was used to determine the relative importance of the sustainability dimensions used in the study. Also, the evaluation based on distance from average solution (EDAS) method was used to rank the selected alternatives. The results indicate that the technical dimension is the most important with a weight of 0.384. Finally, a sensitivity analysis was conducted to prove the validity and reliability of the developed framework with differences in weights.
可持续性维度下城市能源互联网评估的综合中性方法
气候变化这一紧迫问题导致人们越来越关注向低碳能源的过渡。城市能源互联网(UEI)通过整合现代能源电网、智能能源服务和网络物理系统,实现可再生能源的有效利用。因此,城市能源评价对低碳城市建设至关重要。本研究旨在提供一种综合决策方法,以解决与UEI相关的评估挑战,重点是可持续性。引入的方法采用三位专家的意见,通过语义术语表达他们对可持续因素评价和UEI项目评价的意见。确定最适合可持续UEI的项目是一项艰巨的任务。此外,可持续发展还有多个维度,包括:经济、社会、技术、环境和资源维度。本文提出了一种综合方法,通过该方法,专家可以使用语义术语来表达他们的意见,以评估影响UEI项目可持续性的可持续性维度的优先级。因此,本研究采用了一种考虑多个维度的混合多标准决策(MCDM)方法。此外,研究中的不确定性由2型嗜中性粒细胞(T2NNs)处理。最初,通过标准间相关的标准重要性(critical)方法被用来确定研究中使用的可持续性维度的相对重要性。采用基于平均解距离(EDAS)的评价方法对所选方案进行排序。结果表明,技术维度是最重要的,权重为0.384。最后,进行敏感性分析,以证明所开发的框架在权值差异下的有效性和可靠性。
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