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Wearable individual adapting cooling system using smartphone and heart beat sensor

机译:使用智能手机和心跳传感器的可穿戴个人自适应冷却系统

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In Japan, comfortable lifestyle and environment realized by abundant electric power broke down after March 11 2011. This has been accompanied by augmentation of heatstroke or hypothermia risks, as well as deterioration of labor productivity. An energy-saving method has been proposed that consist in direct neck cooling or warming to avoid decline of both task productivity and comfort. However, current neck cooling system is stand-alone type, so user cannot perceive running state and control state. In addition, temperature control algorithm using discomfort index do not consider individual sensation differences. To wear the system comfortably in daily life, this study proposes enabling system's running state visualization, monitoring, and control by connecting it to user's smartphone. A smartphone application to monitor system's running state has been developed, and an auto-control method to estimate human comfort sensation in real time using small heart-rate sensor has been proposed and validated.
机译:在日本,由丰富的电力实现的舒适的生活方式和环境在2011年3月11日之后发生了变化。这伴随着中暑或体温过低风险的增加,以及劳动生产率的下降。已经提出了一种节能方法,该方法包括直接颈部冷却或加热,以避免任务生产率和舒适度的下降。然而,当前的颈部冷却系统是独立式的,因此用户无法感知运行状态和控制状态。另外,使用不适指数的温度控制算法不考虑个体的感觉差异。为了使系统在日常生活中舒适地穿着,本研究提出了通过将系统连接到用户的智能手机来实现系统的运行状态可视化,监视和控制的功能。开发了一种用于监视系统运行状态的智能手机应用程序,并提出并验证了一种使用小型心率传感器实时估算人体舒适感的自动控制方法。

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