首页> 外文会议>ASME international mechanical engineering congress and exposition;IMECE2008 >ENERGY EFFICIENT RESIDENTIAL THERMAL CONTROL WITH WIRELESS SENSOR NETWORKS: A CASE STUDY FOR AIR CONDITIONING IN CALIFORNIA
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ENERGY EFFICIENT RESIDENTIAL THERMAL CONTROL WITH WIRELESS SENSOR NETWORKS: A CASE STUDY FOR AIR CONDITIONING IN CALIFORNIA

机译:无线传感器网络的高效节能住宅热控制:以加利福尼亚州的空调系统为例

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Residential thermostats are sensor-limited devices, but low-cost wireless sensor network technology is enabling new spatially distributed sensing capabilities. This paper evaluates the energy and comfort performance of three multi-sensor control strategies that use wireless temperature and humidity sensors in each room and that can be applied to existing on-off residential central systems. The multi-sensor control strategies adjust the temperature set point of a thermostat to control the average of all room temperatures using a temperature threshold logic, minimize aggregate discomfort of all rooms, or maximize the number of rooms within a comfort zone. The strategies were tested using a custom wireless sensor network control system in a seven room, 2,100 square foot single-story house located in Pleasanton, CA during August and September. Performance was benchmarked against an implementation of a single-sensor constant temperature set point control logic using the custom control system and against a constant temperature set point using the original thermostat. Results show multi-sensor strategies may produce simultaneous improvements in energy consumption, room-to-room temperature distributions, and average comfort, compared to the single-sensor constant temperature set point threshold logic.
机译:家用恒温器是传感器受限的设备,但是低成本的无线传感器网络技术正在实现新的空间分布式传感功能。本文评估了三种多传感器控制策略的能量和舒适性能,这些策略在每个房间中使用无线温度和湿度传感器,并且可以应用于现有的开/关住宅中央系统。多传感器控制策略使用温度阈值逻辑来调节恒温器的温度设定点,以控制所有房间温度的平均值,使所有房间的总不适感最小化,或使舒适区内的房间数最大化。在八月和九月期间,使用定制的无线传感器网络控制系统在位于加利福尼亚普莱森顿的7个房间,2100平方英尺的单层房屋中对这些策略进行了测试。性能是根据使用定制控制系统的单传感器恒温设定点控制逻辑的实现以及使用原始恒温器的恒温设定点进行基准测试的。结果表明,与单传感器恒温设定点阈值逻辑相比,多传感器策略可以同时改善能耗,房间间温度分布和平均舒适度。

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