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Bi-objective optimization-based multi-criteria decision-making framework for disassembly line balancing and employee assignment problem

托普西斯 理想溶液 计算机科学 机器人 排名(信息检索) 自动化 数学优化 熵(时间箭头) 运筹学 人工智能 数学 工程类 量子力学 机械工程 热力学 物理
作者
Nurcan Deniz,Feriştah Özçelik
出处
期刊:Kybernetes [Emerald Publishing Limited]
卷期号:53 (3): 1073-1091 被引量:8
标识
DOI:10.1108/k-06-2022-0857
摘要

Purpose Although disassembly balancing lines has been studied for over two decades, there is a gap in the robotic disassembly. Moreover, combination of problem with heterogeneous employee assignment is also lacking. The hazard related with the tasks performed on disassembly lines on workers can be reduced by the use of robots or collaborative robots (cobots) instead of workers. This situation causes an increase in costs. The purpose of the study is to propose a novel version of the problem and to solve this bi-objective (minimizing cost and minimizing hazard simultaneously) problem. Design/methodology/approach The epsilon constraint method was used to solve the bi-objective model. Entropy-based Technique for Order Preference by Similarity to Ideal Solution (TOPSIS) and Preference Ranking Organization methods for Enrichment Evaluation (PROMETHEE) methods were used to support the decision-maker. In addition, a new criterion called automation rate was proposed. The effects of factors were investigated with full factor experiment design. Findings The effects of all factors were found statistically significant on the solution time. The combined effect of the number of tasks and number of workers was also found to be statistically significant. Originality/value In this study, for the first time in the literature, a disassembly line balancing and employee assignment model was proposed in the presence of heterogeneous workers, robots and cobots to simultaneously minimize the hazard to the worker and cost.
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