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Ergonomics of exoskeletons: Subjective performance metrics

机译:外骨骼的人体工程学:主观绩效指标

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In this paper it is shown how variation of the kinematic structure of an arm exoskeleton and variation of its fixation pressure on the human limb influences subjectively perceived task performance, such as comfort and the individual indices of the NASA TLX rating scale. It is shown by experimental results that the attachment pressure has a dominant effect on perceived comfort, mental load, physical demand and effort experienced by subjects and is optimal within a range of 10 30 mmHg. Furthermore, it is shown that the inclusion of passive compensatory joints inside an exoelectrons structure can reduce mental demand during a tracking task. When the outcome of this paper is interpreted in combination with a set of objective performance results that were presented earlier , the subjective performance metrics underline the fact that passive compensatory joints paired with an attachment pressure of 20 mmHg increase ergonomics and provide optimal conditions for task performance and comfort.
机译:本文显示了手臂外骨骼的运动学结构的变化及其在人肢上的固定压力的变化如何影响主观感知的任务性能,例如舒适度和NASA TLX等级量表的各个指标。实验结果表明,附着压力对受试者的感觉舒适度,精神负荷,身体需求和努力有显著作用,并且在10 30 mmHg的范围内最佳。此外,研究表明,在外电子结构内包含被动补偿关节可以减少跟踪任务中的心理需求。当结合之前提出的一组客观绩效结果来解释本文的结果时,主观绩效指标强调了以下事实:被动补偿关节与20 mmHg的附着压力配对可提高人体工程学,并为任务绩效提供最佳条件和舒适。

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