Adaptive neural network control of a centrifugal chiller system

Author:

Li Songchun,Zaheeruddin M.

Abstract

AbstractIn this paper, a neuro-adaptive PI control strategy for a water-cooled centrifugal chiller system is developed, and its control performance is examined. The system model consists of a flooded evaporator, a flooded condenser, a centrifugal compressor, and an electronic expansion valve. The overall system consists of three control loops: a compressor speed control loop, an inlet guide vane (IGV) control loop, and a condenser liquid level control loop. A neuro-adaptive control strategy for compressor speed control was designed. The control performance of the chiller was tested by carrying out simulation runs using an integrated building and HVAC (IB-HVAC) system model. The major details of the IB-HVAC model are described in this paper. Results show that the neuro-adaptive controller can adapt to new system dynamics of the IB-HVAC system and give good setpoint tracking responses under a wide range of operating conditions. The results show that the neuro-adaptive controller performs better than the constant gain PI controller in terms of speed of response and setpoint tracking properties.

Publisher

Springer Science and Business Media LLC

Reference17 articles.

1. Astrom, K. J., & Hagglund, T. (1995). PID controllers: Theory, design and tuning. Instrument Society of America.

2. Li, L., & Zaheeruddin, M. (2007). Hybrid fuzzy logic control strategies for hot water district heating systems. Building Services Engineering Research and Technology, 28(1), 1–35.

3. Pal, A., & Mudi, R. K. (2008). Self-tuning fuzzy PI controller and its application to HVAC systems. International Journal of Computational Cognition, 6(1), 25–30.

4. Wu, J., & Cai, W. (2000). Development of an adaptive neuro-fuzzy method for supply air pressure control in HVAC system. Smc 2000 conference proceedings. 2000 IEEE international conference on Systems, Man & Cybernetics.

5. Zaheeruddin, M., & Tudoroiu, N. (2004). Neuro-PID tracking control of a discharge air temperature system. Energy Conversion and Management, 45, 2405–2415.

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