A Model-Based Online Fault Detection Method for Air Handling Units of Real Office Buildings

Author:

Wang Hai Tao1,Chen You Ming1,Chan Cary W.H.2,Qin Jian Ying2

Affiliation:

1. Hunan University

2. Swire Properties Management Ltd

Abstract

The increasing performance demands and the growing complexity of heating, ventilation and air conditioning (HVAC) systems have created a need for automated fault detection and diagnosis (FDD) tools. Cost-effective fault detection and diagnosis method is critical to develop FDD tools. To this end, this paper presents a model-based online fault detection method for air handling units (AHU) of real office buildings. The model parameters are periodically adjusted by a genetic algorithm-based optimization method to reduce the residual between measured and predicted data, so high modeling accuracy is assured. If the residual between measured and estimated performance data exceeds preset thresholds, it means the occurrence of faults or abnormalities in the air handling unit system. In addition, an online adaptive scheme is developed to estimate and update the thresholds, which vary with system operating conditions. The model-based fault detection method needs no additional instrumentation in implementation and can be easily integrated with existing energy management and control systems (EMCS). The fault detection method was tested and validated using in real time data collected from a real office building.

Publisher

Trans Tech Publications, Ltd.

Reference6 articles.

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3. Park, B. J., Choi, H. R., & Kim, H. S. (2003). A hybrid genetic algorithm for the job shop scheduling problems. Computers and Industrial Engineering, 45, 597-613.

4. D.R. Clark, Building Systems and Equipment Simulation Program HVACSIM+, User's Manual, National Bureau of Standards and Technology, Washington, DC, (1985).

5. N. Nassif, S. Kajl, R. Sabourin, Modeling and validation of existing VAV system components, in: Proceeding of eSim 2004, Canadian Conference on Building Simulation, Vancouver, (2004), p.135–141.

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