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Development of a Wearable Thermo-Conditioning Device Controlled by Human Factors Based Thermal Comfort Estimation

机译:基于人类因素控制的可穿戴热调节装置的热舒适估计

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Today in Japan, comfortable lifestyle and environment realized by abundant electric power is being questioned by energy consumption reduction policies called “cool biz” in summer, and “warm biz” in winter. One reason of these policies is the bad energy consumption efficiency of current airconditioning systems that cool or warm indirectly human body. Several researches have been investigating the effect of direct human body cooling and warming. However, most proposed solutions focus on direct head or neck cooling, using ice to cool a water circulating system, such temperature during use cannot be controlled accurately nor adapted to user and environment conditions. If the system can automatically perform the optimum warming and cooling operation, it becomes also possible to present an optimum thermal cooling environment for children and physically handicapped persons who have difficulties to control cooling/warming operation by their own will. In our objective of developing effective energy saving technology for direct thermal conditioning of human body, we have proposed and developed a Peltier element based neck-mounted wearable device that directly cools or warms human body based on estimation of user's thermal sensation by biological information. The thermal sensation estimation algorithm was tested in an environment where the thermal sensation of Cold, Neutral, and Hot can be obtained. Obtained thermal sensation estimation was in accordance with the subjective thermal sensation from each subject. However, temperature range while wearing the device was 28 to 38°C, when ideal cooling/warming function is 20 to 40°C.
机译:今天在日本,舒适的生活方式和环境通过丰富的电力实现,被夏天的能源消耗减少政策质疑,冬季冬季“温暖的”。这些政策的一个原因是当前空调系统的良好能量消耗效率,其冷却或温暖的人体。几项研究已经研究了直接人体冷却和变暖的影响。然而,最拟议的解决方案专注于直接头或颈部冷却,使用冰冷却水循环系统,这种温度不能准确地控制,也不能适应用户和环境条件。如果系统可以自动执行最佳的变暖和冷却操作,也可以为儿童和身体残疾人提供最佳的热冷却环境,这些人难以通过自己的意志控制冷却/变暖操作的困难。在我们对人体直接热调节的有效节能技术开发有效的节能技术的目的,我们提出并开发了一种基于珀耳廓的可穿戴装置,基于通过生物信息估计用户的热敏,直接冷却或温暖人体。在可以获得冷,中性和热的热敏感觉的环境中测试热敏感觉估计算法。获得的热敏估计根据每个受试者的主观热感觉。但是,当理想的冷却/加热功能为20至40°C时,佩戴设备的温度范围为28至38°C。

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