Dynamic modeling of pneumatic transmission lines in Matlab/Simulink

Recent studies identified compressed air systems as one of the major consumers of electrical energy in the transnational system. As the importance of compressed air energy efficiency grows for companies and government regulators, so does the need for theoretical analysis. Currently, the modelling pr...

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Published in2011 International Conference on Fluid Power and Mechatronics pp. 24 - 29
Main Authors Krichel, S. V., Sawodny, O.
Format Conference Proceeding
LanguageEnglish
Published IEEE 01.08.2011
Subjects
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ISBN1424484510
9781424484515
DOI10.1109/FPM.2011.6045723

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Abstract Recent studies identified compressed air systems as one of the major consumers of electrical energy in the transnational system. As the importance of compressed air energy efficiency grows for companies and government regulators, so does the need for theoretical analysis. Currently, the modelling process of pneumatic infrastructure focuses on the detailed mathematical description of pneumatic drive components such as valves, cylinders and storages. To speed up calculations, the effects introduced by long pipes (dead volume, delay time and pressure drop) are often neglected. However, they are the main components in any compressed air distribution network. In the present paper, a low-order dynamic transmission line model is derived which is numerically well-conditioned for the implementation in signal flow oriented simulation programs such as MATLAB/SIMULINK. The model works with industry standard parameters, and is able to accurately replicate dynamic and steady-state behavior.
AbstractList Recent studies identified compressed air systems as one of the major consumers of electrical energy in the transnational system. As the importance of compressed air energy efficiency grows for companies and government regulators, so does the need for theoretical analysis. Currently, the modelling process of pneumatic infrastructure focuses on the detailed mathematical description of pneumatic drive components such as valves, cylinders and storages. To speed up calculations, the effects introduced by long pipes (dead volume, delay time and pressure drop) are often neglected. However, they are the main components in any compressed air distribution network. In the present paper, a low-order dynamic transmission line model is derived which is numerically well-conditioned for the implementation in signal flow oriented simulation programs such as MATLAB/SIMULINK. The model works with industry standard parameters, and is able to accurately replicate dynamic and steady-state behavior.
Author Sawodny, O.
Krichel, S. V.
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  organization: Inst. for Syst. Dynamics, Univ. of Stuttgart, Stuttgart, Germany
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Snippet Recent studies identified compressed air systems as one of the major consumers of electrical energy in the transnational system. As the importance of...
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StartPage 24
SubjectTerms Atmospheric modeling
distributed parameter systems
Equations
fluid dynamics
fluid flow measurements
Mathematical model
measurement
Numerical models
Object oriented modeling
Pneumatic systems
Power transmission lines
system analysis and design
Transmission line measurements
Title Dynamic modeling of pneumatic transmission lines in Matlab/Simulink
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