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2017 | OriginalPaper | Chapter

2. Component Modeling with State-Space Method

Authors : Ye Yao, Yuebin Yu

Published in: Modeling and Control in Air-conditioning Systems

Publisher: Springer Berlin Heidelberg

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Abstract

A state-space representation, also known as the ‘time-domain approach’, is a mathematical model of a physical system as a set of input, output, and state variables related to first-order differential equations.

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Literature
1.
go back to reference Hangos, K.M., Lakner, R., Gerzson, M.: Intelligent Control Systems: An Introduction with Examples. Springer, Berlin (2001) Hangos, K.M., Lakner, R., Gerzson, M.: Intelligent Control Systems: An Introduction with Examples. Springer, Berlin (2001)
2.
go back to reference Hangos, K.M., Bokor, J., Szederkényi, G.: Analysis and Control of Nonlinear Process Systems. Springer, Berlin (2004) Hangos, K.M., Bokor, J., Szederkényi, G.: Analysis and Control of Nonlinear Process Systems. Springer, Berlin (2004)
3.
go back to reference Brogan, W.L.: Modern Control Theory (1st edn). Quantum Publishers Inc. (1974) Brogan, W.L.: Modern Control Theory (1st edn). Quantum Publishers Inc. (1974)
5.
go back to reference ASHRAE. ASHRAE Handbook: Heating, Ventilating, and Air-conditioning Systems and Equipment (SI Edition). Atlanta (USA), GA (2004) ASHRAE. ASHRAE Handbook: Heating, Ventilating, and Air-conditioning Systems and Equipment (SI Edition). Atlanta (USA), GA (2004)
6.
go back to reference Yao, Y., Huang, M., Mo, J., Dai, S.: State-space model for transient behavior of water-to-air surface heat exchanger. Int. J. Heat Mass Transf. 66(9), 173–192 (2013)CrossRef Yao, Y., Huang, M., Mo, J., Dai, S.: State-space model for transient behavior of water-to-air surface heat exchanger. Int. J. Heat Mass Transf. 66(9), 173–192 (2013)CrossRef
7.
go back to reference Vaisi, A., Talebi, S., Esmaeilpour, M.: Transient behavior simulation of fin-and-tube heat exchangers for the variation of the inlet temperatures of both fluids. Int. Commun. Heat Mass Transfer 38(5), 951–957 (2011)CrossRef Vaisi, A., Talebi, S., Esmaeilpour, M.: Transient behavior simulation of fin-and-tube heat exchangers for the variation of the inlet temperatures of both fluids. Int. Commun. Heat Mass Transfer 38(5), 951–957 (2011)CrossRef
8.
go back to reference ASHRAE. ASHRAE Handbook—Fundamentals, Chap. 6. Atlanta (USA), GA (2005) ASHRAE. ASHRAE Handbook—Fundamentals, Chap. 6. Atlanta (USA), GA (2005)
9.
go back to reference Yao, Y., Huang, M., Chen, J.: State-space model for dynamic behavior of vapor compression liquid chiller. Int. J. Refrig. 36(8), 2128–2147 (2013)CrossRef Yao, Y., Huang, M., Chen, J.: State-space model for dynamic behavior of vapor compression liquid chiller. Int. J. Refrig. 36(8), 2128–2147 (2013)CrossRef
10.
go back to reference Browne, M.W., Bansal, P.K.: An elemental NTU-ε model for vapour-compression liquid chillers. Int. J. Refrig. 24(5), 612–627 (2001)CrossRef Browne, M.W., Bansal, P.K.: An elemental NTU-ε model for vapour-compression liquid chillers. Int. J. Refrig. 24(5), 612–627 (2001)CrossRef
11.
go back to reference Chan, C.Y., Haselden, G.G.: Computer-based refrigerant thermodynamic properties, part 1: basic equations. Int. J. Refrig. 4(1), 7–12 (1981)CrossRef Chan, C.Y., Haselden, G.G.: Computer-based refrigerant thermodynamic properties, part 1: basic equations. Int. J. Refrig. 4(1), 7–12 (1981)CrossRef
12.
go back to reference Chan, C.Y., Haselden, G.G.: Computer-based refrigerant thermodynamic properties, part 2: program listings. Int. J. Refrig. 4(1), 52–60 (1981)CrossRef Chan, C.Y., Haselden, G.G.: Computer-based refrigerant thermodynamic properties, part 2: program listings. Int. J. Refrig. 4(1), 52–60 (1981)CrossRef
13.
go back to reference Su, C.: Advanced Engineering Thermodynamics. Higher Education Press (HEP), Beijing (1987) Su, C.: Advanced Engineering Thermodynamics. Higher Education Press (HEP), Beijing (1987)
14.
go back to reference Lemmon, E.W., McLinden, M.O., Huber, M.L.: NIST Reference Fluid Thermodynamic and Transport Properties—REFPRO Users’ Guide (version 7.0). National Institute of Standards and Technology (2002) Lemmon, E.W., McLinden, M.O., Huber, M.L.: NIST Reference Fluid Thermodynamic and Transport Properties—REFPRO Users’ Guide (version 7.0). National Institute of Standards and Technology (2002)
15.
go back to reference Zhang, X.M., Ren, Z.F.: Heat Transfer. China Architecture & Building Press, Beijing (2006) Zhang, X.M., Ren, Z.F.: Heat Transfer. China Architecture & Building Press, Beijing (2006)
16.
go back to reference Badescu, V.: Dynamic model of a complex system including PV cells, electric battery, electrical motor and water pump. Energy 28, 1165–1181 (2003)CrossRef Badescu, V.: Dynamic model of a complex system including PV cells, electric battery, electrical motor and water pump. Energy 28, 1165–1181 (2003)CrossRef
17.
go back to reference Yao, Y., Yang, K., Huang, M.: A state-space model for dynamic response of indoor air temperature and humidity. Build. Environ. 64(6), 26–37 (2013)CrossRef Yao, Y., Yang, K., Huang, M.: A state-space model for dynamic response of indoor air temperature and humidity. Build. Environ. 64(6), 26–37 (2013)CrossRef
18.
go back to reference Inard, C., Bouia, H., Dalicieux, P.: Prediction of air temperature distribution in buildings with a zonal model. Energy Build. 24(2), 125–132 (1996)CrossRef Inard, C., Bouia, H., Dalicieux, P.: Prediction of air temperature distribution in buildings with a zonal model. Energy Build. 24(2), 125–132 (1996)CrossRef
19.
go back to reference Peng, X., van Paassen, A.H.C.: A state space model for predicting and controlling the temperature responses of indoor air zones. Energy Build. 28(1), 197–203 (1998)CrossRef Peng, X., van Paassen, A.H.C.: A state space model for predicting and controlling the temperature responses of indoor air zones. Energy Build. 28(1), 197–203 (1998)CrossRef
20.
go back to reference Liu, W., Lian, Z., Yao, Y.: Optimization on indoor air diffusion of floor-standing type room air-conditioners. Energy Build. 40(2), 59–70 (2008)CrossRef Liu, W., Lian, Z., Yao, Y.: Optimization on indoor air diffusion of floor-standing type room air-conditioners. Energy Build. 40(2), 59–70 (2008)CrossRef
21.
go back to reference Gao, J., Zhang, X., Zhao, J.N., Gao, F.S.: A heat transfer parameter at air interfaces in the BLOCK model for building thermal environment. Int. J. Therm. Sci. 49(2), 463–470 (2010)CrossRef Gao, J., Zhang, X., Zhao, J.N., Gao, F.S.: A heat transfer parameter at air interfaces in the BLOCK model for building thermal environment. Int. J. Therm. Sci. 49(2), 463–470 (2010)CrossRef
Metadata
Title
Component Modeling with State-Space Method
Authors
Ye Yao
Yuebin Yu
Copyright Year
2017
Publisher
Springer Berlin Heidelberg
DOI
https://doi.org/10.1007/978-3-662-53313-0_2