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TOWARD TEXTILE-BASED HEATING DEVICES FOR THE DISTAL EXTREMITIES: EXPERIMENTAL CHARACTERIZATION OF SYSTEM DESIGN PARAMETERS

机译:面向远端肢体的基于纺织品的加热装置:系统设计参数的实验表征

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Supplemental heating systems for the distal extremities often require a tradeoff between wearability and thermal comfort. Textile-based thermal actuation helps manage this tradeoff by increasing comfort of on-body systems. However, textile-based thermal actuation also presents important limitations in the form of current requirements, control structures, and thermal flux afforded. Further, on-body active thermal control is affected by three intersecting thermal systems: the environment, the human body, and the active heating system. Here, we present lessons learned from iterative development of textile-based wearable systems (V1, V2) designed to heat the distal extremities. Experimental characterization of textile actuator power/temperature relationships and limits; actuator performance in cool ambient temperatures and in on-body conditions; and efficacy of closed-loop duty cycle control of actuated skin temperature are presented, and implications of these characteristics for garment system design are discussed.
机译:远端的辅助加热系统通常需要在耐磨性和热舒适性之间进行权衡。基于纺织品的热驱动可通过增加人体系统的舒适性来帮助解决这一折衷问题。然而,基于纺织品的热致动在电流要求,控制结构和所提供的热通量的形式上也存在重要的局限性。此外,人体主动热控制受到三个相交的热系统的影响:环境,人体和主动加热系统。在这里,我们介绍了从迭代开发基于纺织品的可穿戴系统(V1,V2)中汲取的经验教训,这些系统旨在加热远端。纺织品执行器功率/温度关系和极限的实验表征;在凉爽的环境温度和身体条件下的执行器性能;提出了驱动皮肤温度的闭环占空比控制的效果和有效性,并讨论了这些特性对服装系统设计的影响。

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