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Experimental evaluation of occupancy-based energy-efficient climate control of VAV terminal units

机译:VAV终端机基于占用的节能气候控制的实验评估

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Results are presented from a nearly week-long experimental evaluation of a scalable control algorithm for a commercial building HVAC system based on real-time measurements of occupancy obtained from motion detectors. The control algorithm decides air flow rate and amount of reheat for each variable air volume terminal box based on real-time measurements of occupancy and space temperature. It is a rule-based controller, so the control computations are simple. The experiments showed that the proposed controller resulted in 37% energy savings over baseline on average without sacrificing indoor climate. In contrast to prior work that reports energy savings without a careful measure of the effect on indoor climate, it is verified that the controller indeed maintains indoor climate as well as the building's baseline controller does. This verification is performed from measurements of a host of environmental variables and analysis of before/after occupant survey results. A complete system required to retrofit existing buildings with the controller is presented, which includes a wireless sensor network and a software execution platform. Two useful observations from this work are: (i) considerable energy savings-along with compliance with ASHRAE ventilation standards-are possible with simple occupancy-based control algorithms that are easy to retrofit; and (ii) these savings are attained with binary occupancy measurements from motion detectors that do not provide occupancy-count measurements. Results also show that there is a large variation in energy savings from zone to zone and from day to day.
机译:结果来自对商用建筑HVAC系统的可伸缩控制算法的近一个星期的实验评估,该算法基于从运动检测器获得的占用率的实时测量。该控制算法基于对占用率和空间温度的实时测量来确定每个可变风量接线盒的空气流量和再热量。它是基于规则的控制器,因此控制计算很简单。实验表明,所提出的控制器在不牺牲室内气候的情况下,平均比基准节能了37%。与先前报告的节能措施没有仔细衡量对室内气候的影响相比,已证实控制器确实能够像建筑物的基线控制器一样保持室内气候。该验证是通过对一系列环境变量的测量以及对乘员调查前后的分析来进行的。提出了使用控制器改造现有建筑物所需的完整系统,其中包括无线传感器网络和软件执行平台。这项工作有两个有用的观察结果:(i)通过简单的基于占用率的控制算法,可以很容易地实现节能,同时符合ASHRAE通风标准。 (ii)这些节省是通过不提供占用计数测量值的运动检测器的二进制占用率测量获得的。结果还表明,每个区域以及每天的节能量差异很大。

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