Baek Seunghoon, Oh Seung Eel, Lee Seung Hyun, Kwon Ki Hyun
Digital Factory Project Group, Korea Food Research Institute, Wanju 55365, Republic of Korea.
Department of Biosystems Machinery Engineering, Chungnam National University, Daejeon 34134, Republic of Korea.
Foods. 2024 Sep 30;13(19):3121. doi: 10.3390/foods13193121.
The food industry has tried to enhance production processes in response to the increasing demand for safe, high-quality Home Meal Replacement (HMR) products. While robotic automation systems are recognized for their potential to improve efficiency, their high costs and risks make them less accessible to small and medium-sized enterprises (SMEs). This study presents a simulation-based approach to evaluating the feasibility and impact of robotic automation on HMR production, focusing on two distinct production cases. By modeling large-scale and order-based production cases using simulation software, the study identified key bottlenecks, worker utilization, and throughput improvements. It demonstrated that robotic automation increased throughput by 31.2% in large-scale production (Case A) and 12.0% in order-based production (Case B). The actual implementation showed results that closely matched the simulation, validating the approach. Moreover, the study confirmed that a single worker could operate the robotic system effectively, highlighting the practicality of robotics for SMEs. This research provides critical insights into integrating robotics to enhance productivity, reduce labor dependency, and facilitate digital transformation in food manufacturing.
食品行业已尝试改进生产流程,以应对对安全、高品质家庭代餐(HMR)产品日益增长的需求。虽然机器人自动化系统因其提高效率的潜力而受到认可,但其高成本和高风险使得中小企业(SMEs)难以采用。本研究提出了一种基于模拟的方法,用于评估机器人自动化在HMR生产中的可行性和影响,重点关注两种不同的生产案例。通过使用模拟软件对大规模生产和订单式生产案例进行建模,该研究确定了关键瓶颈、工人利用率和产量提升情况。结果表明,机器人自动化在大规模生产(案例A)中使产量提高了31.2%,在订单式生产(案例B)中使产量提高了12.0%。实际实施结果与模拟结果非常吻合,验证了该方法的有效性。此外,该研究证实一名工人即可有效操作机器人系统,凸显了机器人技术对中小企业的实用性。本研究为整合机器人技术以提高生产率、减少劳动力依赖并推动食品制造业的数字化转型提供了关键见解。