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Robust Dynamic Comfort Modeling for Motorcycle Riding

机译:摩托车骑行的鲁棒动态舒适性建模

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摘要

Comfort modeling is considered a prerequisite in motorcycle design, primarily to address safety concerns and to position the product on the market. However, a comprehensive methodology for comfort modeling during the earliest development phases of a motorcycle model is still missing. Anthropometrical variation is the main noise factor to consider in comfort modeling in relation to the unavoidable variability of body segments. However, comfort is a subjective concept influencing riders' choice of motorcycle model. This work is a generalization of the robust ergonomic design methodology aimed at designing products whose ergonomic performance is insensitive to anthropometrical variation. This work further develops the methodology, by considering dynamic aspects involved in the driver-motorcycle interaction. Moreover, this article proposes a generalized robustness criterion and presents a full simulation study with purposely developed software. The result is a generalized ergo-dynamic assessment of a motorcycle model, either physical or digital, replacing common static ergonomic evaluations. (C) 2014 Wiley Periodicals, Inc.
机译:舒适性建模被认为是摩托车设计的先决条件,主要是为了解决安全问题并将产品定位于市场。但是,在摩托车模型的早期开发阶段,仍缺乏用于舒适性建模的综合方法。人体测量学上的变化是在舒适度建模中与人体各部分不可避免的变化相关的主要噪声因素。但是,舒适度是影响骑手选择摩托车型号的主观概念。这项工作是针对旨在设计其人体工程学性能对人体测量学变化不敏感的产品的健壮的人体工程学设计方法的概括。通过考虑驾驶员与摩托车相互作用中涉及的动态方面,这项工作进一步发展了方法论。此外,本文提出了广义的鲁棒性准则,并使用专门开发的软件提出了完整的仿真研究。结果是对摩托车模型(无论是物理模型还是数字模型)进行了全面的人体工程学评估,从而取代了常见的静态人体工程学评估。 (C)2014威利期刊公司

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