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Turning up the heat on obsolete thermostats: A simulation-based comparison of intelligent control approaches for residential heating systems

机译:调高过时的恒温器的热量:基于模拟的住宅供暖系统智能控制方法的比较

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摘要

This article provides an overview and quantitative evaluation of the performance of heating control approaches for residential buildings. First, heating control technologies discussed in the literature are reviewed and conceptualized in a taxonomy of eight archetypical control approaches. Subsequently, the performance of each heating control approach is evaluated in terms of energy consumption and comfort for occupants. For this evaluation, data on in room temperature, heating behavior and occupancy patterns of households in Southern Germany was collected over a 14-month period. Integrating this data into a building simulation, the performance of each control approach was evaluated on a per household basis. Based on this evaluation, we find that control approaches applying automated setpoint variation (i.e. intelligent) outperform scheduled setpoint variation such as programmable thermostats. Compared to simple on-off control without temperature setpoint variation, we find median energy savings potentials in the range of 21-26% and observe higher thermal comfort compared to programmable thermostats. Our findings point to the efficiency improvement potential of intelligent heating control, in particular for old buildings and households with high vacancy times. Because of the comparatively low initial investment and high energy savings potential, the results suggest that policy should extend its focus from retrofitting heating systems and building insulation towards more efficient energy use enabled by intelligent control.
机译:本文提供了住宅建筑采暖控制方法性能的概述和定量评估。首先,在八种典型控制方法的分类法中,对文献中讨论的加热控制技术进行了回顾和概念化。随后,根据能耗和乘员舒适度评估每种加热控制方法的性能。为了进行此评估,在14个月的时间内收集了德国南部家庭的室温,供暖行为和居住模式的数据。将这些数据集成到建筑物模拟中,可以基于每个家庭评估每种控制方法的性能。基于此评估,我们发现应用自动设定点变化(即智能)的控制方法优于计划的设定点变化,例如可编程恒温器。与没有温度设定值变化的简单开关控制相比,我们发现中值节能潜力在21-26%的范围内,并且与可编程恒温器相比,具有更高的热舒适性。我们的研究结果指出了智能供暖控制的效率提高潜力,特别是对于旧建筑物和空置时间较长的家庭。由于相对较低的初始投资和较高的节能潜力,结果表明,政策应将其重点从改造加热系统和建筑保温材料扩展到通过智能控制实现更有效的能源使用。

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