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Sitting posture recognition by body pressure distribution and airbag regulation strategy based on seat comfort evaluation

机译:基于座椅舒适评估的体压分配和安全气囊调节策略坐姿姿态识别

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摘要

Unbalanced body pressure distribution caused by poor sitting posture is a significant factor causing lumbar disease. Research on the dynamic adjustment strategy for comfort sitting posture is of great significance to the prevention and improvement of lumbar disease. In this study, based on the pressure sensor array, the body pressure distribution in different sitting postures are obtained, including: back bow, waist bow, body slip, body right leaning, standard sitting position, and body left leaning. The recognition of the human body posture was achieved using the support vector machine algorithm and the accuracy rate reach to 83.33%. Furthermore, the evaluation indicators for sitting comfort of the human body are proposed using the maximum pressure, average pressure, maximum pressure gradient, average pressure gradient and asymmetry coefficient, the accuracy of the above indicators were verified using semantic differential subjective evaluation method. Experimental results show that there is a strong positive correlation between objective indicators and seat comfort. In addition, the dynamic adjustment strategy using airbag base on seat comfort evaluation is studied.
机译:不平衡的身体压力分布由于占地姿势差,是导致腰椎疾病的重要因素。舒适坐姿动态调整策略研究对腰椎病的预防和改善具有重要意义。在这项研究中,基于压力传感器阵列,获得了不同坐姿的体压分布,包括:后弓,腰部弓,车身滑动,身体右倾,标准坐姿,身体左侧倾斜。使用支持向量机算法实现人体姿势的识别,精度率达到83.33%。此外,利用最大压力,平均压力,最大压力梯度,平均压力梯度和不对称系数,验证了使用语义差异主观评价方法的最大压力,平均压力,最大压力系数,平均压力,最大压力系数,平均压力和不对称系数的评价指标。实验结果表明,客观指标与座椅舒适度之间存在强烈的正相关性。此外,研究了使用安全气囊基底对座椅舒适评估的动态调整策略。

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