Background | |
---|---|
Benchmark ID |
cdPlayer_n120m2q2 |
Category |
slicot |
System-Class |
LTI-FOS |
Parameters | |
nstates |
120
|
ninputs |
2 |
noutputs |
2 |
nparameters |
0 |
components |
A, B, C |
Copyright | |
License |
NA |
Creator | |
Editor | |
Location | |
NA |
Description: Classical CD Player Model
This benchmark models the swing arm of a CD Player holding a lens which can be moved in the horizontal plain. More details can be found in [1], [2] and [3], [4].
Origin
This benchmark is part of the SLICOT Benchmark Examples for Model Reduction[4].
Data
The system matrices ,
,
are available from the SLICOT benchmarks page: CDplayer.zip and are stored as MATLAB .mat file.
Dimensions
System structure:
System dimensions:
,
,
.
Citation
To cite this benchmark, use the following references:
- For the benchmark itself and its data:
- Niconet e.V., SLICOT - Subroutine Library in Systems and Control Theory, http://www.slicot.org
@MANUAL{slicot_cdisc, title = {{SLICOT} - Subroutine Library in Systems and Control Theory}, organization = {Niconet e.V.} address = {\url{http://www.slicot.org}}, key = {SLICOT} }
- For the background on the benchmark:
@ARTICLE{DraSB92, author = {W. Draijer and M. Steinbuch and O. Bosgra}, title = {Adaptive Control of the Radial Servo System of a Compact Disc Player}, journal = {Automatica}, volume = {28}, number = {3}, pages = {455--462}, year = {1992}, doi = {10.1016/0005-1098(92)90171-B} }
References
- ↑ W. Draijer, M. Steinbuch, O. Bosgra. Adaptive Control of the Radial Servo System of a Compact Disc Player. Automatica, 28(3): 455--462, 1992.
- ↑ P. Wortelboer, M. Steinbuch, O. Bosgra. Closed-Loop Balanced Reduction with Application to a Compact Disc Mechanism. Selected Topics in Identification, Modeling and Control, 9: 47--58, 1996.
- ↑ Y. Chahlaoui, P. Van Dooren, A collection of Benchmark examples for model reduction of linear time invariant dynamical systems, Working Note 2002-2: 2002.
- ↑ 4.0 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.