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Design And Simulation Of Self-tuning Pid-type Fuzzy Adaptive Control For An Expert Hvac System

机译:专家HVAC系统自调整PID型模糊自适应控制的设计与仿真。

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The modelling, numerical simulation and intelligent control of an expert HVAC (heating, ventilating and air-conditioning) system having two different zones with variable flow-rate were performed by considering the ambient temperature in this study. The sub-models of the system were obtained by deriving heat transfer equations of heat loss of two zones by conduction and convection, cooling unit and fan. All models of the variable flow-rate HVAC system were generated by using MATLAB/SIMULINK, and proportional-integral-derivative (PID) parameters were obtained by using Fuzzy sets. For comfortable of people the temperatures of the two different zones were decreased to 5 ℃ from the ambient temperature. The successful results were obtained by applying self-tuning proportional-integral-derivative (PID)-type fuzzy adaptive controller if comparing with the fuzzy PD-type and the classical PID controller. The obtained results were presented in a graphical form.
机译:通过研究环境温度,对具有两个可变流量的不同区域的专业HVAC(供暖,通风和空调)系统进行了建模,数值模拟和智能控制。该系统的子模型是通过传导和对流,冷却单元和风扇推导两个区域的热损失的传热方程而获得的。使用MATLAB / SIMULINK生成了可变流量HVAC系统的所有模型,并使用模糊集获得了比例积分微分(PID)参数。为了使人感到舒适,两个不同区域的温度从环境温度降低到5℃。如果与模糊PD型和经典PID控制器进行比较,则通过应用自校正比例积分微分(PID)型模糊自适应控制器可以获得成功的结果。获得的结果以图形形式呈现。

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