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International Space Station: Difference between revisions

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{{preliminary}} <!-- Do not remove -->
[[Category:benchmark]]
[[Category:benchmark]]
[[Category:SLICOT]]
[[Category:SLICOT]]
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[[Category:MIMO]]
[[Category:MIMO]]


'''This is a stub. Please expand.'''
{{Infobox
|Title          = International Space Station
|Benchmark ID    =
* iss_n1412m3q3
* iss_n270m3q3
|Category        = slicot
|System-Class    = LTI-FOS
|nstates        =
* 1412
* 270
|ninputs        = 3
|noutputs        = 3
|nparameters    = 0
|components      = A, B, C
|License        = NA
|Creator        = [[User:Himpe]]
|Editor          =
* [[User:Himpe]]
|Zenodo-link    = NA
}}


==Description: Components of the International Space Station==
==Description: Components of the International Space Station==
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===Component 1R===
===Component 1R===
This model describes the [[wikipedia:Zvezda_(ISS_module)|Russian Service Module]].
This model describes the [[wikipedia:Zvezda_(ISS_module)|Russian Service Module]] (ISS-1R).




===Component 12A===
===Component 12A===
This model describes the [[wikipedia:Integrated_Truss_Structure#P3/P4,_S3/S4_truss_assemblies|Solar Arrays P3/P4]].
This model describes the [[wikipedia:Integrated_Truss_Structure#P3/P4,_S3/S4_truss_assemblies|Solar Arrays P3/P4]] (ISS-12A).




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==Data==
==Data==


The system matrices <math>A</math>, <math>B</math>, <math>C</math> are available from the [http://slicot.org/20-site/126-benchmark-examples-for-model-reduction SLICOT benchmarks] page: [http://slicot.org/objects/software/shared/bench-data/iss.zip iss.zip] and are stored as MATLAB [https://www.mathworks.com/help/matlab/import_export/mat-file-versions.html .mat] file.
The system matrices <math>A</math>, <math>B</math>, <math>C</math> for the ISS-1R model are available from the [http://slicot.org/20-site/126-benchmark-examples-for-model-reduction SLICOT benchmarks] page: [http://slicot.org/objects/software/shared/bench-data/iss.zip iss.zip],
the system matrices for the ISS-12A model are available here: [[Media:iss12a.zip|iss12a.zip]].
Both are stored as MATLAB [https://www.mathworks.com/help/matlab/import_export/mat-file-versions.html .mat] files.




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System dimensions:
System dimensions:


<math>A \in \mathbb{R}^{270 \times 270}</math>,
<math>A \in \mathbb{R}^{N \times N}</math>,
<math>B \in \mathbb{R}^{270 \times 3}</math>,
<math>B \in \mathbb{R}^{N \times 3}</math>,
<math>C \in \mathbb{R}^{3 \times 270}</math>.
<math>C \in \mathbb{R}^{3 \times 270}</math>.


with <math>N=270</math> for ISS-1R and <math>N=1412</math> for ISS-12A.


==Citation==
==Citation==
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To cite this benchmark, use the following references:
To cite this benchmark, use the following references:


* For the benchmark itself and its data:
* For the ISS-1R benchmark itself and its data:
::Niconet e.V., '''SLICOT - Subroutine Library in Systems and Control Theory''', http://www.slicot.org
::Niconet e.V., '''SLICOT - Subroutine Library in Systems and Control Theory''', http://www.slicot.org


  @MANUAL{slicot_iss,
  @MANUAL{slicot_iss,
   title =        {{SLICOT} - Subroutine Library in Systems and Control Theory},
   title =        {{SLICOT} - Subroutine Library in Systems and Control Theory},
   organization = {Niconet e.V.}
   organization = {Niconet e.V.},
   address =      <nowiki>{\url{http://www.slicot.org}}</nowiki>,
   address =      <nowiki>{\url{http://www.slicot.org}}</nowiki>,
   key =          {SLICOT}
   key =          {SLICOT}
  }
  }


* For the background on the benchmark:
* For the ISS-12A benchmark and background on the benchmarks:


  @INPROCEEDINGS{morGugAB01,
  @INPROCEEDINGS{morGugAB01,
   author =      <nowiki>{S. Gugercin, A. Antoulas and M. Bedrossian}</nowiki>,
   author =      <nowiki>{S. Gugercin and A. Antoulas and M. Bedrossian}</nowiki>,
   title =        {Approximation of the International Space Station 1R and 12A flex models},
   title =        {Approximation of the International Space Station 1R and 12A flex models},
   booktitle =    {Proceedings of the IEEE Conference on Decision and Control},
   booktitle =    {Proceedings of the IEEE Conference on Decision and Control},

Latest revision as of 09:32, 30 November 2023


International Space Station
Background
Benchmark ID
  • iss_n1412m3q3
  • iss_n270m3q3
Category

slicot

System-Class

LTI-FOS

Parameters
nstates
  • 1412
  • 270
ninputs

3

noutputs

3

nparameters

0

components

A, B, C

Copyright
License

NA

Creator

User:Himpe

Editor
Location

NA


Description: Components of the International Space Station

These benchmarks model components of the International Space Station (ISS). More details can be found in [1], [2] and [3], [4].


Component 1R

This model describes the Russian Service Module (ISS-1R).


Component 12A

This model describes the Solar Arrays P3/P4 (ISS-12A).


Origin

This benchmark is part of the SLICOT Benchmark Examples for Model Reduction[4].


Data

The system matrices A, B, C for the ISS-1R model are available from the SLICOT benchmarks page: iss.zip, the system matrices for the ISS-12A model are available here: iss12a.zip. Both are stored as MATLAB .mat files.


Dimensions

System structure:

x˙(t)=Ax(t)+Bu(t)y(t)=Cx(t)

System dimensions:

AN×N, BN×3, C3×270.

with N=270 for ISS-1R and N=1412 for ISS-12A.

Citation

To cite this benchmark, use the following references:

  • For the ISS-1R benchmark itself and its data:
Niconet e.V., SLICOT - Subroutine Library in Systems and Control Theory, http://www.slicot.org
@MANUAL{slicot_iss,
 title =        {{SLICOT} - Subroutine Library in Systems and Control Theory},
 organization = {Niconet e.V.},
 address =      {\url{http://www.slicot.org}},
 key =          {SLICOT}
}
  • For the ISS-12A benchmark and background on the benchmarks:
@INPROCEEDINGS{morGugAB01,
 author =       {S. Gugercin and A. Antoulas and M. Bedrossian},
 title =        {Approximation of the International Space Station 1R and 12A flex models},
 booktitle =    {Proceedings of the IEEE Conference on Decision and Control},
 pages =        {1515--1516},
 year =         {2001},
 doi =          {10.1109/CDC.2001.981109}
}

References

  1. S. Gugercin, A. Antoulas and M. Bedrossian Approximation of the International Space Station 1R and 12A flex models. In: Proceedings of the IEEE Conference on Decision and Control: 1515--1516, 2001.
  2. A.C. Antoulas, D.C. Sorensen and S. Gugercin. A survey of model reduction methods for large-scale systems. Contemporary Mathematics, 280: 193--219, 2001.
  3. Y. Chahlaoui, P. Van Dooren, A collection of Benchmark examples for model reduction of linear time invariant dynamical systems, Working Note 2002-2: 2002.
  4. 4.0 4.1 Y. Chahlaoui, P. Van Dooren, Benchmark Examples for Model Reduction of Linear Time-Invariant Dynamical Systems, Dimension Reduction of Large-Scale Systems, Lecture Notes in Computational Science and Engineering, vol 45: 379--392, 2005.