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Building temperature regulation in a multi-zone HVAC system using distributed adaptive control

机译:使用分布式自适应控制建立多区HVAC系统中的温度调节

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During recent years there have been considerable research efforts on improving energy efficiency of buildings. Since Heating, Ventilation and Air-Conditioning (HVAC) systems are responsible for a big part of energy consumption, developing efficient HVAC control systems is crucial. In most of the developed approaches, precise knowledge of system parameters and/or adequate historical data is required. However, these approaches may not perform as well in the presence of dynamic parameter changes due to human activity, material degradation, and wear and tear, or disturbances and other operational uncertainties due to occupancy, solar gains, electrical equipment, and weather conditions. In this paper, we consider buildings with several climate zones and propose a distributed adaptive control scheme for a multi-zone HVAC system which can effectively regulate zone temperature by applying on-line learning and assuming exchange of information between neighboring zones. The controller of each zone achieves the local objective of controlling zone temperature by compensating for the effects of neighboring zones as well as for possible changes in the parameters of the system. Despite the exchange of information, each local controller does not know how the control actions and temperature of a neighboring zone affect the temperature of its own zone. For this reason, each local controller is estimating the parameters of the interconnections in real time and uses them together with the exchanged information to provide a more accurate local zone temperature control. The proposed method is illustrated using an example of temperature control in a six-zone building as well as a large school building, which are implemented in a Building Controls Virtual Test Bed (BCVTB) environment using EnergyPlus and MATLAB/Simulink. (C) 2020 Published by Elsevier B.V.
机译:近年来,对提高建筑能效具有相当大的研究努力。由于加热,通风和空调(HVAC)系统负责大部分能量消耗,因此开发高效的HVAC控制系统至关重要。在大多数发达的方法中,需要精确地了解系统参数和/或充分的历史数据。然而,由于人类活动,材料劣化和磨损和磨损,或由于占用,太阳能收益,电气设备和天气状况,这些方法也可能在存在动态参数变化的情况下也不会表现在存在的动态参数变化中,或者扰动和其他操作不确定性。在本文中,我们考虑具有多个气候区域的建筑物,并提出了一种用于多区HVAC系统的分布式自适应控制方案,其可以通过在线学习和假设相邻区域之间的信息交换来有效地调节区域温度。每个区域的控制器通过补偿相邻区域的效果来实现控制区域温度的本地目标,以及系统参数的可能变化。尽管信息交换,但每个本地控制器都不知道相邻区域的控制动作和温度如何影响其自己区域的温度。因此,每个本地控制器正在实时估计互连的参数,并将它们与交换信息一起使用,以提供更准确的局部区域温度控制。使用六区建筑物中的温度控制的示例以及大型学校建筑物的示例说明了所提出的方法,该建筑物在建筑物中实现了使用EnergyPlus和Matlab / Simulink的虚拟测试床(BCVTB)环境。 (c)2020由elsevier b.v发布。

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