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Ancillary Service to the Grid Through Control of Fans in Commercial Building HVAC Systems

机译:通过商业建筑HVAC系统中的风扇控制为电网提供辅助服务

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The thermal storage potential in commercial buildings is an enormous resource for providing various ancillary services to the grid. In this paper, we show how fans in Heating, Ventilation, and Air Conditioning (HVAC) systems of commercial buildings alone can provide substantial frequency regulation service, with little change in their indoor environments. A feedforward architecture is proposed to control the fan power consumption to track a regulation signal. The proposed control scheme is then tested through simulations based on a calibrated high fidelity non-linear model of a building. Model parameters are identified from data collected in Pugh Hall, a commercial building located on the University of Florida campus. For the HVAC system under consideration, numerical experiments demonstrate how up to 15% of the rated fan power can be deployed for regulation purpose while having little effect on the building indoor temperature. The regulation signal that can be successfully tracked is constrained in the frequency band $[1/tau_{0},1/tau_{1}]$ , where $tau_{0}approx 3$ minutes and $tau_{1}approx 8$ seconds. Our results indicate that fans in existing commercial buildings in the U.S. can provide about 70% of the current national regulation reserve requirements in the aforementioned frequency band. A unique advantage of the proposed control scheme is that assessing the value of the ancillary service provided is trivial, which is in stark contrast to many demand-response programs.
机译:商业建筑中的蓄热潜力是为电网提供各种辅助服务的巨大资源。在本文中,我们展示了仅商业建筑的采暖,通风和空调(HVAC)系统中的风扇如何在不改变室内环境的情况下就能提供大量的频率调节服务。提出了一种前馈架构,以控制风扇功耗以跟踪调节信号。然后通过基于已校准高保真度非线性建筑模型的仿真对提出的控制方案进行测试。模型参数是从位于佛罗里达大学校园内的商业大楼Pugh Hall收集的数据中识别的。对于正在考虑的HVAC系统,数值实验表明如何将高达15%的额定风扇功率用于调节目的,而对建筑物的室内温度影响很小。可以成功跟踪的调节信号被限制在$ [1 / tau_ {0},1 / tau_ {1}] $频带中,其中$ tau_ {0}约3分钟,$ tau_ {1}约8分钟$秒。我们的结果表明,美国现有商业建筑物中的风扇可以提供上述频段中当前国家法规储备要求的70%。提出的控制方案的独特优势在于,对提供的辅助服务的价值进行评估是微不足道的,这与许多需求响应程序形成了鲜明的对比。

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