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Using passive BCI to online control the air conditioner for obtaining the individual specific thermal comfort *

机译:使用被动BCI在线控制空调,以获得个体特定的热舒适性 *

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Thermal comfort has an important impact on human health and work efficiency, which has attracted more attention in recent years. Although electroencephalogram (EEG) has been used to evaluate thermal comfort, it has not been reported to be used in controlling the air conditioner. This paper attempted to construct a passive EEG based brain-computer interface (BCI) system to regulate the room temperature. During the experiment, EEG signals in two conditions, thermal comfort and hot discomfort, were collected to build a discriminant model. And then, an online experiment was conducted to verify the thermal comfort effect of the BCI temperature control. Results showed that all the five subjects could obtain a better thermal sensation under the BCI control in an overheated environment. This study indicated the feasibility of indoor temperature control technology based on physiological signals. It can provide a new way to obtain personalized thermal comfort.
机译:热舒适性对人类健康和工作效率产生了重要影响,近年来引起了更多的关注。虽然脑电图(EEG)已被用于评估热舒适性,但尚未据报道用于控制空调。本文试图构建基于无源EEG的脑电电脑界面(BCI)系统,以调节室温。在实验期间,收集两个条件,热舒适和热不适的EEG信号,以构建判别模型。然后,进行了在线实验以验证BCI温度控制的热舒适效果。结果表明,在过热环境中,所有五个受试者都可以在BCI控制下获得更好的热感。本研究表明,基于生理信号的室内温度控制技术的可行性。它可以提供获得个性化热舒适度的新方法。

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