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Discomfort Evaluation of Truck Ingress/Egress Motions Based on Biomechanical Analysis

机译:基于生物力学分析的卡车进出运动不适感

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This paper presents a quantitative discomfort evaluation method based on biomechanical analysis results for human body movement, as well as its application to an assessment of the discomfort for truck ingress and egress. In this study, the motions of a human subject entering and exiting truck cabins with different types, numbers, and heights of footsteps were first measured using an optical motion capture system and load sensors. Next, the maximum voluntary contraction (MVC) ratios of the muscles were calculated through a biomechanical analysis of the musculoskeletal human model for the captured motion. Finally, the objective discomfort was evaluated using the proposed discomfort model based on the MVC ratios. To validate this new discomfort assessment method, human subject experiments were performed to investigate the subjective discomfort levels through a questionnaire for comparison with the objective discomfort levels. The validation results showed that the correlation between the objective and subjective discomforts was significant and could be described by a linear regression model.
机译:本文提出了一种基于人体运动的生物力学分析结果的定量不适评估方法,并将其应用于卡车进出不适的评估。在这项研究中,首先使用光学运动捕捉系统和负载传感器来测量以不同类型,数量和脚步高度进入和离开卡车驾驶室的人类对象的运动。接下来,通过针对所捕获运动的肌肉骨骼人体模型的生物力学分析来计算肌肉的最大自愿收缩(MVC)比。最后,使用建议的基于MVC比率的不适模型评估客观不适。为了验证这种新的不适评估方法,进行了人类受试者实验,以通过问卷调查主观不适水平,以与客观不适水平进行比较。验证结果表明,客观和主观不适之间的相关性很显着,可以通过线性回归模型来描述。

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