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Simulation of Pushing the Push-Pull Rod Action Based on Human Body Dynamics

机译:基于人体动力学的推拉杆动作模拟

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摘要

Using the software Anybody Modeling System, a human static-standing musculoskeletal model based on inverse dynamics is presented. According to the environmental constraints of cockpit, the human body model is defined, especially the selection and design of the input parameters on muscles, bones, joints, drive, and other aspects. From the model, the design simulates the flight operations of the pilot during the plane is approaching and landing, especially the right arm pushing the push-pull rod. According to the principle of inverse dynamics, the muscle forces on the right arm will be researched to elect larger ones. And the paper focuses on muscle parametric analysis and design. On the basis of muscle metabolism which is the parameter to evaluate the muscle fatigue, the design is optimized to find where the least muscle fatigue is. Results show that metabolism can provide an experimental basis for the design layout of the cockpit instruments, operating device.
机译:使用软件Anybody Modeling System,提出了一种基于逆动力学的人体静态肌肉骨骼模型。根据驾驶舱的环境限制,定义了人体模型,尤其是在肌肉,骨骼,关节,驱动器和其他方面的输入参数的选择和设计。根据该模型,该设计模拟了飞行员在飞机接近和着陆时的飞行操作,尤其是右臂推推杆。根据逆动力学原理,将研究右臂上的肌肉力量以选择更大的力量。并且本文着重于肌肉参数分析和设计。在评估肌肉疲劳的参数肌肉代谢的基础上,对设计进行了优化,以找出肌肉疲劳最小的位置。结果表明,新陈代谢可以为驾驶舱仪表,操作装置的设计布局提供实验依据。

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