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Smart thermostats: an experimental facility to test their capabilities and savings potential

机译:智能恒温器:测试其性能和节省潜力的实验设施

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摘要

The European Commission has explained how heating and cooling in buildings and industry account for half of the energy consumption of the EU. Several studies explain how to achieve an energy saving at home, and the use of smart thermostats will help to reduce energy consumption while increasing the efficiency of households. In this article, a comparative evaluation was carried out between four smart thermostats that are now on the market, whose characteristics vary in terms of price, precision of measurements and set temperature, algorithms, etc. A thermal test chamber was designed and constructed from a refrigerator, a thermal blanket, a Raspberry Pi and the necessary electronic components for its control and data collection. From the tests carried out in the thermal chamber, data on the operation of the four thermostats such as the maintenance and the anticipation of the setpoint temperature, were obtained. It was necessary to run the system enough times for each thermostat to memorize the housing characteristics, such as its inertia and its thermal insulation. This would also allow for the generation of a better algorithm to regulate the temperature, which would create a lower oscillation with respect to the setpoint temperature. The learning of the thermostats was not demonstrated and for the anticipation mode it was seen that the thermostats failed to improve or learn in this aspect, as they did not improve the start-up times of the heating system, with the consequent increase in energy consumption.
机译:欧盟委员会已经解释了建筑物和工业中的供暖和制冷如何占欧盟能源消耗的一半。多项研究解释了如何实现家庭节能,而智能恒温器的使用将有助于减少能耗,同时提高家庭效率。在本文中,对目前市场上的四个智能恒温器进行了比较评估,它们的特性在价格,测量精度和设定温度,算法等方面有所不同。冰箱,热毯,Raspberry Pi以及用于控制和数据收集的必要电子组件。通过在热室中进行的测试,获得了有关四个恒温器运行的数据,例如维护温度和设定温度的预期值。每个温度调节器必须运行足够的时间,以记住外壳的特性,例如惯性和隔热性。这也将允许产生更好的算法来调节温度,这将相对于设定点温度产生较低的振荡。没有演示恒温器的学习,并且对于预期模式,可以看到恒温器在这方面没有改进或学习,因为它们没有改善加热系统的启动时间,因此能耗增加。

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