手动拣货系统中以人为本的优化:一种整体能量消耗方法

Human-centric optimisation in manual picker-to-parts systems: a holistic energy expenditure approach

International Journal of Production Research · 2024
被引 13
ABS 3

中文导读

提出一种量化工人工作允许能量消耗率的方法,综合考虑个人特征和生活方式,通过混合整数线性规划优化拣货任务分配,减少疲劳并保障工人福祉。

Abstract

Despite the increasing automation trends in current Industry 5.0 scenarios, human operators remain a key resource in manual warehouse operations thanks to their flexibility and cost-effectiveness. Ensuring the well-being of workers in manual picker-to-parts systems remains a crucial challenge. Existing methodologies tend to overlook or inadequately consider the energy expenditure that can be provided by workers during manual picking activities, emphasising the need for a more comprehensive approach. In this work, a novel methodology to quantify the working allowable energy expenditure rate (WAEER) of workers is proposed. The approach considers individual (age, sex, body weight) as well as more holistic features such as lifestyle and non-working daily activities to tailor workloads in executing manual picking tasks. By adopting Mixed Integer Linear Programming (MILP), the proposed approach optimises the assignment of picking items by minimising workers’ fatigue or by avoiding it through rest allowances. Results obtained highlight the effectiveness of the approach as a planning tool, ensuring the workers’ well-being. Future research directions include extending the methodology to hybrid warehouse scenarios or assembly lines. The present article contributes to a forward-thinking framework for human-centric energy-based optimisation within Industry 5.0.

工业工程运营管理人因工程运筹学工业5.0