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Development of Light Powered Sensor Networks for Thermal Comfort Measurement

机译:用于热舒适度测量的光传感器网络的开发

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摘要

Recent technological advances in wireless communications have enabled easy installation of sensor networks with air conditioning equipment control applications. However, the sensor node power supply, through either power lines or battery power, still presents obstacles to the distribution of the sensing systems. In this study, a novel sensor network, powered by the artificial light, was constructed to achieve wireless power transfer and wireless data communications for thermal comfort measurements. The sensing node integrates an IC-based temperature sensor, a radiation thermometer, a relative humidity sensor, a micro machined flow sensor and a microprocessor for predicting mean vote (PMV) calculation. The 935 MHz band RF module was employed for the wireless data communication with a specific protocol based on a special energy beacon enabled mode capable of achieving zero power consumption during the inactive periods of the nodes. A 5W spotlight, with a dual axis tilt platform, can power the distributed nodes over a distance of up to 5 meters. A special algorithm, the maximum entropy method, was developed to estimate the sensing quantity of climate parameters if the communication module did not receive any response from the distributed nodes within a certain time limit. The light-powered sensor networks were able to gather indoor comfort-sensing index levels in good agreement with the comfort-sensing vote (CSV) preferred by a human being and the experimental results within the environment suggested that the sensing system could be used in air conditioning systems to implement a comfort-optimal control strategy.
机译:无线通信中的最新技术进步已使得能够轻松安装带有空调设备控制应用程序的传感器网络。但是,传感器节点通过电源线或电池电源的供电仍然对传感系统的分配构成障碍。在这项研究中,构造了一种由人造光驱动的新型传感器网络,以实现无线功率传输和无线数据通信以进行热舒适度测量。传感节点集成了一个基于IC的温度传感器,一个辐射温度计,一个相对湿度传感器,一个微机械流量传感器以及一个用于预测平均投票(PMV)计算的微处理器。 935 MHz频段RF模块用于基于特殊能量信标使能模式的,具有特定协议的无线数据通信,该模式能够在节点的不活动时间段内实现零功耗。具有双轴倾斜平台的5W聚光灯可以在长达5米的距离内为分布式节点供电。如果通信模块在特定时限内未收到来自分布式节点的任何响应,则开发了一种特殊的算法(最大熵方法)来估计气候参数的感应量。光感应传感器网络能够收集室内舒适感指数水平,与人类偏爱的舒适感投票(CSV)高度吻合,并且在环境中的实验结果表明,该传感系统可以在空中使用调节系统以实现舒适度最佳的控制策略。

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