[论文解读] Development of an end-to-end hardware and software pipeline for affordable and feasible ergonomics assessment in the automotive industry
本论文提出一个用于汽车工作场所人体工效评估的模块化端到端硬件-软件管线,使用定制的惯性测量单元传感器和开源工具,在成本更低的情况下可媲美金标准系统。
An end-to-end hardware-software pipeline is introduced to automatize ergonomics assessment in industrial workplaces. The proposed modular solution can interoperate with commercial systems throughout the ergonomics assessment phases involved in the process. The pipeline includes custom-designed Inertial Measurement Unit (IMU) sensors, two real-time worker movement acquisition tools, inverse kinematics processing and Rapid Upper Limb Assessment (RULA) report generation. It is based on free tools such as Unity3D and OpenSim to avoid the problems derived from using proprietary technologies, such as security decisions being made under "black box" conditions. Experiments were conducted in an automotive factory in a workplace with WMSDs risk among workers. The proposed solution obtained comparable results to a gold standard solution, reaching measured joint angles a 0.95 cross-correlation and a Root Mean Square Error (RMSE) lower than 10 for elbows and 12 for shoulders between both systems. In addition, the global RULA score difference is lower than 5% between both systems. This work provides a low-cost solution for WMSDs risk assessment in the workplace to reduce musculoskeletal disorders and associated sick leave in industry, impacting the health of workers in the long term. Our study can ease further research and popularize the use of wearable systems for ergonomics analysis allowing these workplace prevention systems to reach different industrial environments.
研究动机与目标
- Motivate affordable ergonomics assessment to reduce work-related musculoskeletal disorders in industrial settings.
- Develop a modular hardware-software pipeline interoperable with existing systems across ergonomics assessment phases.
- Enable real-time movement acquisition, processing, and RULA reporting using accessible tools.
- Avoid black-box limitations by leveraging open-source platforms for security and transparency.
提出的方法
- Design and deploy custom inertial measurement unit (IMU) sensors.
- Provide two real-time worker movement acquisition tools.
- Apply inverse kinematics processing to compute joint angles.
- Generate Rapid Upper Limb Assessment (RULA) reports.
- Utilize Unity3D and OpenSim to enable open, non-proprietary processing.
实验结果
研究问题
- RQ1Can a low-cost, open-source hardware-software pipeline achieve ergonomics assessment results comparable to gold-standard solutions?
- RQ2What level of agreement (e.g., joint angle accuracy, RMSE) is achievable between the proposed system and traditional methods?
- RQ3Is the pipeline scalable and interoperable with existing commercial ergonomics systems in industrial settings?
- RQ4Can open-source tools provide transparent and secure ergonomics analytics without compromising accuracy?
主要发现
- Joint angles with the proposed system show a cross-correlation of 0.95 with the gold-standard system.
- RMSE for elbows is below 10 degrees and RMSE for shoulders is below 12 degrees.
- Global RULA score difference between the proposed system and the gold-standard is under 5%.
- The pipeline achieves comparable ergonomics assessment performance while remaining low-cost.
- Experiments conducted in an automotive factory with WMSDs risk demonstrate practical feasibility.
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