背景(考古学)
轮椅
模糊逻辑
区间(图论)
计算机科学
妥协
相似性(几何)
灵敏度(控制系统)
度量(数据仓库)
人工智能
机器学习
人机交互
数据挖掘
工程类
数学
社会科学
组合数学
社会学
古生物学
电子工程
万维网
图像(数学)
生物
作者
Ibrahim M. Hezam,Pratibha Rani,Arunodaya Raj Mishra,Ahmad M. Alshamrani
标识
DOI:10.1016/j.seta.2023.103169
摘要
The wheelchair is the commonly used assistive devices to promote mobility and enrich quality of life for persons who have difficulties in walking. Smart wheelchair is normally equipped with sensors, cameras and computer-based structure as key processing unit to be able to execute the specific work. The autonomous smart wheelchairs (ASWs) for disabled persons are organized by human user interface where the human takes decisions at the highest level of operation and the smart control technology offers the remaining the motion automatic. In this study, we develop a hybridized combined compromise solution (CoCoSo) approach based on Dombi operators and similarity measure for assessing the ASWs of five manufacturing companies on interval-valued Fermatean fuzzy sets (IVFFSs). To illustrate the feasibility and effectiveness of the presented approach, a case study of company selection to manufacture the ASWs for disabled persons is presented where the assessment alternatives are given in terms of IVFFSs. In this context, globally existing manufacturing companies of ASWs for disabled persons are recognized and then ranked over thirteen criteria of sustainability. Sensitivity analysis over the variation of criteria weights determines the stability of the results. A comparison with extant models shows the practicality and steadiness of the presented method.
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