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A comfort zone set-based approach for coupled temperature and humidity control in buildings

机译:基于舒适区的耦合温度和湿度控制在建筑物中的方法

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This paper presents a modeling and control strategy for comfort zone set-based control of temperature and humidity in buildings. We first propose a coupled model for humidity and temperature dynamics based on lumped parameter analysis. The interconnection of rooms/zones is captured through an undirected graph, with rooms represented as capacitances and walls and doors/windows as resistances. Unlike traditional RC-models, however, this model captures both mass and heat transfer between zones as well as the bilinearity in the input mass flow-rate. Key parameters are identified by the model, such as mass (and thermal) conductance between zones as well as mass (and thermal) capacitance and this model structure is then validated using physics-based Computational Fluid Dynamics (CFD) simulations. The control inputs to the system are the mass flow rates into each zone and the control objective is to drive the system state into a comfort zone set (a humidity and temperature region defined on the psychometric chart). The dynamic system is shown to be passive, hence any passive controller is stabilizing and able to drive both temperature and humidity to steady states within the thermal comfort region for given ambient conditions. We then propose a set-based (passive) controller to regulate the system outputs within the comfort region. Simulation results from implementing the controller on the lumped model are then compared with CFD simulations, for a design model of an existing experimental 6-room test bed. The proposed controller design methodology is also shown to be model-independent with results of the CFD simulations verifying this feature.
机译:本文介绍了基于舒适区集合控制的建筑物中温度和湿度的建模与控制策略。我们首先提出了一种基于集体参数分析的湿度和温度动力学耦合模型。房间/区域的互连通过无向图形捕获,房间具有表示电容和墙壁和门/窗口的电阻。然而,与传统的RC模型不同,该模型捕获区域之间的质量和热传递以及输入质量流量的比例。通过模型识别键参数,例如区域之间的质量(和热)电容以及质量(和热)电容,然后使用基于物理的计算流体动力学(CFD)模拟来验证该模型结构。对系统的控制输入是每个区域的质量流量,并且控制目标是将系统状态驱动到舒适区(在心理测量图上定义的湿度和温度区域)中。动态系统被示出为被动,因此任何被动控制器都稳定并且能够将温度和湿度驱动到热舒适区域内的稳定状态,以便给定环境条件。然后,我们提出了一种基于集的(被动的)控制器来调节舒适区域内的系统输出。然后将仿真结果与CFD模拟相比,在集总模拟中实现了在集总模型上,用于现有实验6室试验台的设计模型。所提出的控制器设计方法也显示与验证此功能的CFD模拟的结果,与模型无关。

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