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首页> 外文期刊>International journal for simulation and multidisciplinary design optimization >Posture prediction and optimization for a manual assembly operation involving lifting of weights
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Posture prediction and optimization for a manual assembly operation involving lifting of weights

机译:涉及施加重量的手动组装操作的姿势预测与优化

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The present work combines ergonomics with the posture prediction in the assembly process to avoid musculoskeletal issues of human operator. For improved productivity the operator should be in a better work environment and in sound health. The purpose of this paper is to provide a different perspective to avoid ergonomic risk factors in manual assembly. Here, a human is modeled as 20-DOF as modeled in robotic analysis and simulated in a virtual environment. In the present study, two objective cost functions i.e. joint discomfort function and energy expenditure function have been employed for evaluating the optimized posture. For posture prediction, a combined multi-objective optimization (MOO) method is used and the objective cost functions are minimized i.e. less joint discomfort and less energy in MOO method required to do the manual assembly operation and consequently, the results are compared and finally the movements are tested using REBA technique.
机译:本作与组装过程中的姿势预测结合了人体工程学,以避免人类运营商的肌肉骨骼问题。为了提高生产力,操作员应在更好的工作环境和健康状态下。本文的目的是提供不同的视角,以避免手动组装中的符合人体工程学的风险因素。这里,人类被建模为20-DOF,如在机器人分析中建模并在虚拟环境中模拟。在本研究中,两项客观成本职能I.E.采用联合不适函数和能源支出函数来评估优化的姿势。对于姿势预测,使用组合的多目标优化(MOO)方法,并且目标成本函数最小化,即更少的关节不适和MOO方法中的能量较少,所需的MOO方法是进行手动组装操作,因此结果进行了比较,最后是结果使用REBA技术测试运动。

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