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Development of temperature controllers for a room deploying the displacement ventilation for heating, ventilating, and air-conditioning

机译:开发用于房间的温度控制器,该房间部署置换通风以供暖,通风和空调

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By employing the fuzzy control theory and dynamic matrix control method, the controllers for temperature control of a room cooled by a displacement ventilation system are developed. The fluid flow and heat transfer inside the room are calculated by solving the Reynolds-averaged Navier-Stokes equations, including the effects of buoyancy in conjunction with a two-equation realizable k-ε turbulence model. Thus, the physical environment is represented by a nonlinear system of partial differential equations. The system also has a large time delay because of the slowness of the heat exchange. Additionally, the temperature of the exterior wall of the room first increases and then decreases with time during a 24-h period, which acts as a strong disturbance in changing the temperature of the room. The goal of this article is to develop controllers that will maintain the temperature in the room within the specified upper and lower bounds by deploying the displacement ventilation system. In order to solve this temperature control problem, we develop a special fuzzy control method. At the same time, we analyze the peak value of the error and employ the dynamic matrix control method to replace the fuzzy control method with success. The results show that the fuzzy controller is effective in saving energy, and the dynamic matrix control method can contain the error within the specified bounds in the worst situation (when the temperature of the exterior wall is highest). These kinds of fuzzy control and dynamic matrix control methods can also be employed for other heating, ventilating, and air-conditioning systems such as overhead variable air volume system and radiant cooling hydronic system.
机译:利用模糊控制理论和动态矩阵控制方法,开发了一种由排风系统冷却的房间的温度控制控制器。通过求解雷诺平均Navier-Stokes方程来计算室内的流体流动和传热,包括浮力的影响以及可通过两方程实现的k-ε湍流模型。因此,物理环境由偏微分方程的非线性系统表示。由于热交换的缓慢,该系统还具有较大的时间延迟。另外,房间外墙的温度在24小时内随时间先升高然后降低,这在改变房间温度时起很大的干扰作用。本文的目的是开发一种控制器,通过部署置换通风系统,将控制器的房间温度保持在指定的上下限内。为了解决这个温度控制问题,我们开发了一种特殊的模糊控制方法。同时,我们分析了误差的峰值,并采用动态矩阵控制方法成功替代了模糊控制方法。结果表明,模糊控制器在节能方面是有效的,动态矩阵控制方法可以在最坏的情况下(当外墙温度最高时)将误差控制在规定的范围内。这些类型的模糊控制和动态矩阵控制方法也可以用于其他供暖,通风和空调系统,例如高架可变风量系统和辐射冷却水力系统。

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