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Feasibility of retrofitting centralized HVAC systems for room-level zoning

机译:在房间级别分区上改造中央HVAC系统的可行性

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Heating, ventilation, and cooling (HVAC) accounts for 38% of building energy usage, and over 15% of all US energy usage, making it one of the nation's largest energy consumers. Many attempts have been made to optimize the control of HVAC systems by minimizing the energy wasted in conditioning buildings that are unoccupied. Systems have been proposed that turn off HVAC systems when a house is unoccupied, or put the system into an energy saving deep-setback mode when the occupants are asleep. An area that has not been as well explored is the retrofitting of centralized HVAC systems to save energy when the residents are at home and awake. In this paper, we demonstrate how to use cheap, off-the-shelf sensors and actuators to retrofit a centralized HVAC system and enable rooms to be heated or cooled individually, in order to reduce waste caused by conditioning unoccupied rooms. We call this approach room-level zoning. Sensors are used to detect occupancy in rooms which allows the learning of occupancy patterns and prediction of room occupancy. Unoccupied rooms can be allowed to drift away from a user defined comfortable temperature if they are less likely to be used in the near future while occupied rooms are maintained at a comfortable temperature. We implement room-level zoning in a 1400 square foot house by retrofitting an existing centralized HVAC system with wireless temperature sensors to monitor room-level temperature, motion sensors to monitor occupancy, and wirelessly actuatable dampers to control the flow of conditioned air through the house. Initial analysis indicates that this method has a 20.5% energy savings over the existing single-zoned thermostat.
机译:采暖,通风和制冷(HVAC)占建筑能耗的38%,占美国所有能耗的15%以上,使其成为美国最大的能源消费国之一。已经进行了许多尝试,以通过最大程度地减少在无人居住的空调房中浪费的能源来优化HVAC系统的控制。已经提出了以下系统:当无人居住的房屋时关闭HVAC系统,或者在有人入睡时使系统进入节能深度挫折模式。尚未进行充分探索的领域是对集中式HVAC系统进行改造,以在居民在家中和清醒时节省能源。在本文中,我们演示了如何使用廉价的现成的传感器和执行器来改造集中式HVAC系统,并使房间可以单独加热或冷却,以减少因空置房间而造成的浪费。我们称这种方法为房间级分区。传感器用于检测房间的占用情况,从而可以了解房间的占用情况并预测房间的占用情况。如果在占用房间保持在舒适温度的情况下不太可能在不久的将来使用它们,则可以允许空闲房间偏离用户定义的舒适温度。我们通过对现有的集中式HVAC系统进行改造,在1400平方英尺的房屋中实现房间分区,该系统配备无线温度传感器以监测房间温度,运动传感器以监测占用率以及无线可调节风门以控制经过房屋的空调流量。初步分析表明,与现有的单分区恒温器相比,此方法可节能20.5%。

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