Time weighted model reduction of flat plate solar collectors
This paper presents the application of time weighted model reduction using cross gramians on a state space model derived from two partial differential equations representing the instantaneous thermal balance of a differential element of length along the absorber plate and the absorber plate to fl...
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iium-577342017-07-27T03:32:05Z http://irep.iium.edu.my/57734/ Time weighted model reduction of flat plate solar collectors Haja Mohideen, Ahmad Jazlan Sreeram, Victor Togneri, Roberto Bettayeb, Maamar TJ212 Control engineering This paper presents the application of time weighted model reduction using cross gramians on a state space model derived from two partial differential equations representing the instantaneous thermal balance of a differential element of length along the absorber plate and the absorber plate to fluid heat convection process respectively of a flat plate solar collector. Finite difference method is applied onto both these partial differential equations where discretization in time and space is performed resulting in a high order linear discrete time invariant Single Input Single Output (SISO) state space model. Numerical results are provided to demonstrate and compare the performance of time weighted model reduction relative to balanced truncation. IEEE 2014 Conference or Workshop Item PeerReviewed application/pdf en http://irep.iium.edu.my/57734/7/57734-Time%20weighted%20model%20reduction%20of%20flat%20plate%20solar%20collectors.pdf application/pdf en http://irep.iium.edu.my/57734/8/57734-Time%20weighted%20model%20reduction%20of%20flat%20plate%20solar%20collectors_SCOPUS.pdf Haja Mohideen, Ahmad Jazlan and Sreeram, Victor and Togneri, Roberto and Bettayeb, Maamar (2014) Time weighted model reduction of flat plate solar collectors. In: Australian Control Conference, AUCC 2014, 17th-18th November 2014, Australian National University, Canberra. http://ieeexplore.ieee.org/document/7358698/ |
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TJ212 Control engineering |
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TJ212 Control engineering Haja Mohideen, Ahmad Jazlan Sreeram, Victor Togneri, Roberto Bettayeb, Maamar Time weighted model reduction of flat plate solar collectors |
description |
This paper presents the application of time weighted
model reduction using cross gramians on a state space model
derived from two partial differential equations representing the instantaneous thermal balance of a differential element of length along the absorber plate and the absorber plate to fluid heat convection process respectively of a flat plate solar collector. Finite difference method is applied onto both these partial differential equations where discretization in time and space is performed resulting in a high order linear discrete time invariant Single Input Single Output (SISO) state space model. Numerical results
are provided to demonstrate and compare the performance of
time weighted model reduction relative to balanced truncation. |
format |
Conference or Workshop Item |
author |
Haja Mohideen, Ahmad Jazlan Sreeram, Victor Togneri, Roberto Bettayeb, Maamar |
author_facet |
Haja Mohideen, Ahmad Jazlan Sreeram, Victor Togneri, Roberto Bettayeb, Maamar |
author_sort |
Haja Mohideen, Ahmad Jazlan |
title |
Time weighted model reduction of flat plate solar collectors |
title_short |
Time weighted model reduction of flat plate solar collectors |
title_full |
Time weighted model reduction of flat plate solar collectors |
title_fullStr |
Time weighted model reduction of flat plate solar collectors |
title_full_unstemmed |
Time weighted model reduction of flat plate solar collectors |
title_sort |
time weighted model reduction of flat plate solar collectors |
publisher |
IEEE |
publishDate |
2014 |
url |
http://irep.iium.edu.my/57734/ http://irep.iium.edu.my/57734/ http://irep.iium.edu.my/57734/7/57734-Time%20weighted%20model%20reduction%20of%20flat%20plate%20solar%20collectors.pdf http://irep.iium.edu.my/57734/8/57734-Time%20weighted%20model%20reduction%20of%20flat%20plate%20solar%20collectors_SCOPUS.pdf |
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2023-09-18T21:21:38Z |
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2023-09-18T21:21:38Z |
_version_ |
1777411920984276992 |