2022
DOI: 10.1002/hfm.20967
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A bi‐objective ergonomic assembly line balancing model with conic scalarization method

Abstract: The most important factor affecting efficiency and ergonomic risk levels in an assembly line design is the problem of assigning certain tasks to certain stations, namely the assembly line balancing problem. In the literature, assembly line balancing problem has often been studied, but studies that consider ergonomic risks are deficient. Recently, it has been one of the issues that have started to attract great attention with the realization of health problems caused by assembly lines. To this end, in this stud… Show more

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Cited by 6 publications
(2 citation statements)
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“…In addition, ergonomic risks were calculated with NIOSH, REBA, OCRA, EAWS, and COPSOQ methods, after the tasks are classified as easy, medium, and hard by using the ELECTRE TRI method. Yetkin and Kahya (2022) developed a bi-objective ergonomic ALBP model with a conic scalarization method. They preferred the REBA method to calculate the physical workload caused by the tasks.…”
Section: Introductionmentioning
confidence: 99%
“…In addition, ergonomic risks were calculated with NIOSH, REBA, OCRA, EAWS, and COPSOQ methods, after the tasks are classified as easy, medium, and hard by using the ELECTRE TRI method. Yetkin and Kahya (2022) developed a bi-objective ergonomic ALBP model with a conic scalarization method. They preferred the REBA method to calculate the physical workload caused by the tasks.…”
Section: Introductionmentioning
confidence: 99%
“…Problemin amaçları belirsiz olduğundan önerilen model bulanık küme teorisine göre geliştirilmiştir. Geliştirilen bulanık çok amaçlı model, bir buzdolabı şirketinden elde edilen veriler ile uygulanmıştır Yetkin ve Kahya (2022),. montaj hattı dengeleme problemi için, çevrim zamanı ve ergonomik risk düzeyleri dikkate alınarak çok amaçlı bir matematiksel model geliştirmişlerdir.…”
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