A simplified physical model-based fault detection and diagnosis strategy and its customized tool for centrifugal chillers

Author:

Zhao Yang1,Wang Shengwei1,Xiao Fu1,Ma Zhenjun2

Affiliation:

1. a Department of Building Services Engineering , The Hong Kong Polytechnic University , Kowloon , Hong Kong

2. b The Sustainable Buildings Research Centre (SBRC) , Faculty of Engineering, University of Wollongong , Australia

Publisher

Informa UK Limited

Subject

Building and Construction

Reference30 articles.

1. Bailey , M. B. 1998 . The design and viability of a probabilistic fault detection and diagnosis method for vapor compression cycle equipment , Boulder : School of Civil Engineering, University of Colorado . PhD thesis

2. Bendapudi , S. 2004 . Development and evaluation of modelling approaches for transients in centrifugal chillers , West Lafayette , IN : School of Mechanical Engineering, Purdue University . Ph.D. thesis

3. Dynamic model of a centrifugal chiller system—model development, numerical study, and validation;Bendapudi S.;ASHRAE Transactions,2005

4. Bourdouxhe , J. P. , Grodent , Grodent. and Brun , J. Le . 1999 . HVAC1 toolkit—a toolkit for primary HVAC system energy calculations , Atlanta , GA : American Society of Heating, Refrigerating and Air-conditioning Engineers .

5. Comstock , M. C. and Braun , J. E. 1999 . Development of analysis tools for the evaluation of fault detection and diagnostics in chillers. ASHRAE Research Project 1043-RP. Ray W , Herrick Laboratories : Purdue University .

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