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Biofied room integrated with sensor agent robots to interact withresidents and acquire environmental information

机译:生物融合室与传感器代理机器人集成,以互动并获取环境信息

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Current smart buildings are based on scenarios, so they are not prepared for unexpected events. We focus our attention on high adaptability of living matters to environmental changes. "Biofication of Living Spaces" is the concept of creating pleasant living environments using this high adaptability. Biofied room is integrated with sensor agent robots to interact with residents and acquire environmental information. In this research, we propose a highly adaptive algorithm to control the devices automatically. Based on physiological adaption, we can make the algorithm very flexible. As the first step in this research, a prototype of the sensor agent robot is built. Camera, microphone, proximity sensor, laser range-finder are mounted on the robot. As a sensor agent robot follows the residents, it acquires environmental information, and records the interaction between the robot and human. In a suggested control model, a resident is built in the control loop and his/her uncomfortable feeling plays a role of control signal. Following its signal, devices are controlled. Results obtained from the computer simulation show that models are able to maintain the human comfort feeling adaptively. This research suggests an adaptive, fault-tolerant, and energy-saving control models for building spaces, using simple algorithms based on physiological adaption.
机译:当前的智能建筑基于场景,因此他们无法为意外事件做好准备。我们将注意力集中在对环境变化的高度适应性上的关注。 “生活空间的生物制造”是使用这种高适应性创造宜人的生活环境的概念。 Biofied Room与传感器代理机器人集成,以与居民互动并获取环境信息。在本研究中,我们提出了一种高度自适应算法来自动控制设备。根据生理适应,我们可以使算法非常灵活。作为本研究的第一步,构建了传感器代理机器人的原型。相机,麦克风,接近传感器,激光范围内安装在机器人上。由于传感器代理机器人遵循居民,它获取环境信息,并记录机器人和人之间的相互作用。在一个建议的控制模型中,居民建立在控制循环中,他/她的不舒服的感觉起到控制信号的作用。在其信号之后,控制设备。从计算机仿真获得的结果表明,模型能够保持自适应的人类舒适感。本研究表明,使用基于生理适应的简单算法,建议建筑空间的自适应,容错和节能控制模型。

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