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Dynamic model of an HVAC system for control analysis
Affiliation:1. Center for the Built Environment, University of California Berkeley, CA 94720, USA;2. Dipartimento di Elettronica, Informazione e Bioingegneria, Politecnico di Milano, Italy;3. Taylor Engineering, 1080 Marina Village Parkway, Suite 501, Alameda, CA 94501, USA;4. TRC, 436 14th Street, Suite 1020, Oakland, CA 94612, USA
Abstract:This paper describes a procedure for deriving a dynamic model of an HVAC system that consists of a zone, heating coil, cooling and dehumidifying coil, humidifier, ductwork, fan, and mixing box. In particular, the interest is centered on control strategies to reduce energy consumption and improving the quality of the indoor environment. Indoor temperature and humidity may be maintained at set point values by an air-handling unit using a PID control action. The PID parameters must be carefully tuned to produce less oscillatory responses. The tuning technique, using the Ziegler-Nichols rule, is investigated from a practical viewpoint. Simulation results showing the open loop and the closed loop responses of indoor temperature and humidity ratio are given. The results show that the system is capable of controlling the disturbance efficiently within a small period of time and with less error. The dynamic model can be especially useful for control strategies that require knowledge of the dynamic characteristics of HVAC systems.
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