暖通空调系统温度控制的自抗扰控制

Chun-E. Huang, Chunwang Li, Xiaojun Ma
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引用次数: 4

摘要

供暖、通风和空调系统对建筑物的能源效率具有重要意义。本文对冬季运行季节暖通空调系统的温度控制进行了研究。建立了区域、风机、加热线圈和传感器的物理模型。暖通空调是一个非线性、强扰动、耦合的系统。线性自抗扰控制是一种适应信息量少、扰动影响大、结构相对固定、控制器参数整定过程简单的优秀控制算法。提出了暖通空调系统的主动抗扰控制方法。在Matlab/Simulink中进行了仿真。仿真结果表明,线性自抗扰控制在阶跃扰动的上升时间、超调量和响应时间上均优于PID和积分模糊控制器。该研究可为强扰动、高精度空调系统的控制提供基础。
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Active-Disturbance-Rejection-Control for Temperature Control of the HVAC System
Heating, ventilation, and air conditioning (HVAC) system is significant to the energy efficiency in buildings. In this paper, temperature control of HVAC system is studied in winter operation season. The physical model of the zone, the fan, the heating coil and sensor are built. HVAC is a non-linear, strong disturbance and coupling system. Linear active-rejection-disturbance-control is an appreciate control algorithm which can adapt to less information, strong-disturbance influence, and has relative-fixed structure and simple tuning process of the controller parameters. Active-rejection-disturbance-control of the HVAC system is proposed. Simulation in Matlab/Simulink was done. Simulation results show that linear active-rejection-disturbance-control was prior to PID and integral-fuzzy controllers in rising time, overshoot and response time of step disturbance. The study can provide fundamental basis for the control of the air-condition system with strong-disturbance and high-precision needed.
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