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Thermal energy harvesting for self-powered smart home sensors

机译:用于自动智能家居传感器的热能收获

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This paper investigates the use of thermoelectric energy harvesting for embedded, self-powered sensor nodes in smart homes. In particular, one such application is self-powered pressure sensing in vacuum insulation panels for buildings. The panels greatly improve heating and cooling energy use, and the thermal difference developed across them could be used to drive a wireless sensor to monitor their pressure level. We first created a model for the available power using historical weather data. Then, we measured the thermoelectric generator's actual power output by combining the generator with a vacuum insulation panel and mounting it inside a window for experiments. Finally, we determine the feasibility of using the established thermal gradient to power a sensor node. We show that thermoelectric energy harvesting could enable a new class of embedded, maintenance-free, self-powered sensors for smart homes.
机译:本文调查了在智能房屋中使用热电能量收集的嵌入式自动传感器节点。特别地,一个这样的应用是建筑物的真空绝缘板中的自供电压力传感。面板大大提高了加热和冷却能耗,并且可以使用它们产生的热差来驱动无线传感器来监测其压力水平。我们首先使用历史天气数据为可用电量创建模型。然后,我们通过将发电机与真空绝缘板组合并将其安装在窗口中来测量热电发电机的实际功率输出,以进行实验。最后,我们确定使用建立的热梯度为传感器节点供电的可行性。我们表明热电能量收获可以为智能家庭提供新的嵌入式,免维护,自动传感器。

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