Faculty of Mechanical Engineering, University of Ljubljana, Aškerčeva Cesta 6, 1000 Ljubljana, Slovenia.
Int J Environ Res Public Health. 2022 Mar 16;19(6):3496. doi: 10.3390/ijerph19063496.
Industry 4.0 introduces smart solutions throughout the company's supply chain, including manual assembly, where the goal is to ensure shorter work cycle time, increase productivity and quality, while minimizing costs. Following the principles of this paradigm, this paper proposes a digital transformation of the manual assembly process by implementing a multi-criterial algorithm (MCA) for adjusting and configuring a human-centered smart manual assembly workstation to ensure efficient and ergonomic performance of the manual assembly process. The MCA takes into account various influential parameters, such as the anthropometry of the individual worker, gender, complexity of the assembly process, product characteristics, and product structure. The efficiency of the MCA was verified both in the laboratory environment with the time analysis and in the virtual environment using Digital Human Modelling through several ergonomic analyses. The results of the implementation of the MCA on a manual assembly workstation support the digital (re)design of the manual assembly process with the aim of creating an efficient and ergonomically suitable workstation for each worker, thus increasing the productivity and efficiency of the human-centered manual assembly process.
工业 4.0 在公司供应链的各个环节引入智能解决方案,包括手动装配,其目标是确保更短的工作周期时间、提高生产力和质量,同时将成本降至最低。本文遵循这一范式的原则,通过实施多准则算法 (MCA) 来调整和配置以人为本的智能手动装配工作站,以确保手动装配过程的高效和符合人体工程学的性能,从而实现手动装配过程的数字化转型。MCA 考虑了各种影响参数,例如个体工人的人体测量学、性别、装配过程的复杂性、产品特性和产品结构。MCA 的效率通过实验室环境中的时间分析和虚拟环境中的数字人体建模(通过多次人体工程学分析)得到了验证。在手动装配工作站上实施 MCA 的结果支持手动装配过程的数字化(重新)设计,旨在为每个工人创建高效和符合人体工程学的工作站,从而提高以人为本的手动装配过程的生产力和效率。