Neutrosophic Multi-Criteria Decision-Making Framework for Sustainable Evaluation of Power Production Systems in Renewable Energy Sources

Ahmed M.Ali, Myvizhi Muthuswamy
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Abstract

To make the change to a cleaner, more sustainable energy future, it is essential that power production systems be evaluated sustainably. To estimate the overall sustainability performance of various power production systems, this evaluation takes into account a wide range of parameters. Impact on the environment, availability of renewable resources, resource efficiency, social and economic implications, economic feasibility, grid integration and dependability, technical maturity, and scalability are all taken into account. Stakeholders may make better judgments and give higher priority to power production systems that take into account environmental impacts, resource efficiency, social impacts, and economic viability by evaluating these factors. So, we used the multi-criteria decision-making (MCDM) approach VIKOR to assess the power production systems in the sustainability criteria. The VIKOR method is used to rank the several alternatives. We integrated the neutrosophic set with the VIKOR method to deal with inconsistent information. We used seven criteria and ten alternatives in this study. The development of a sustainable and resilient energy sector is aided by the sustainable evaluation of power production systems, which in turn helps to reduce the effects of climate change and safeguard the environment.
可再生能源发电系统可持续评价的中性多准则决策框架
为了向更清洁、更可持续的能源未来转变,对电力生产系统进行可持续评估至关重要。为了评估各种电力生产系统的整体可持续性表现,该评估考虑了一系列广泛的参数。对环境的影响、可再生资源的可用性、资源效率、社会和经济影响、经济可行性、电网整合和可靠性、技术成熟度和可扩展性都被考虑在内。利益相关者可以做出更好的判断,并通过评估这些因素来考虑环境影响、资源效率、社会影响和经济可行性的电力生产系统给予更高的优先权。因此,我们采用多准则决策(MCDM)方法VIKOR对可持续性标准下的电力生产系统进行评估。使用VIKOR方法对几个备选方案进行排序。我们将嗜中性集与VIKOR方法相结合,以处理不一致的信息。在这项研究中,我们使用了7个标准和10个备选方案。电力生产系统的可持续评估有助于可持续和有弹性能源部门的发展,从而有助于减少气候变化的影响和保护环境。
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