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Analysis of the sitting posture comfort based on motion capture system and JACK software

机译:基于运动捕捉系统和JACK软件的坐姿舒适度分析

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With the development of science and technology, people have higher demand for comfortable seats. However, comfort is a complicated concept to apply in evaluating a sitting chair. There is no established assessment method which could evaluate the sitting chair comfort at present. Most of the current evaluation methods are based on single analysis, and lack multi-analysis of the problem. This paper proposes a new method which integrates investigation methods in real environment and virtual environment. Firstly, Motion Analysis Eagle Digital System is used to capture the body motion of participants, and obtain the human body each joint point in the space. Using a self-developed MATLAB program to analyze the distinct differences on the joint angle and the torques when seated in an Ergokinetic™ Seat chair and seated in a standard office chair. Then, based on the exact data recorded by optical motion capture systems and data processing by JACK software, put the track data files to JACK software, then use TAT report tools to output data and analyze the relative motions data by MATLAB software. Using self-developed MATLAB programs to calculate joint angles, torques and muscle force. Meanwhile, study the muscle comfort index to explore new method to evaluate sitting posture comfort index. The sitting posture comfort index method combined with human body digital model can analyze the siting posture comfort. Also, this research could be applied on optimize comfort level of the body sitting posture.
机译:随着科学技术的发展,人们对舒适座椅的需求也越来越高。但是,舒适度是评估坐椅的复杂概念。目前还没有建立可以评估坐椅舒适度的评估方法。当前大多数评估方法都是基于单一分析,并且缺乏对该问题的多重分析。本文提出了一种将真实环境和虚拟环境中的调查方法相结合的新方法。首先,运动分析鹰数字系统被用来捕获参与者的身体运动,并获得人体在空间中的每个关节点。使用自行开发的MATLAB程序分析坐在Ergokinetic™座椅和标准办公椅上时关节角度和扭矩的明显差异。然后,根据光学运动捕捉系统记录的精确数据和JACK软件的数据处理,将跟踪数据文件放入JACK软件,然后使用TAT报告工具输出数据并通过MATLAB软件分析相对运动数据。使用自行开发的MATLAB程序来计算关节角度,扭矩和肌肉力量。同时,研究肌肉舒适度指标,探索评估坐姿舒适度指标的新方法。坐姿舒适度指数法结合人体数字模型可以分析坐姿舒适度。而且,该研究可以应用于优化身体坐姿的舒适度。

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