(replace K_d with K, and -M with M (to be consistent with SOS model); replace B^T with C) |
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[[Category:SISO]] |
[[Category:SISO]] |
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[[Category:Sparse]] |
[[Category:Sparse]] |
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+ | |||
+ | {{Infobox |
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+ | |Title = Windscreen |
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+ | |Benchmark ID = windscreen_n22692m1q1 |
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+ | |Category = oberwolfach |
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+ | |System-Class = LTI-SOS |
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+ | |nstates = 22692 |
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+ | |ninputs = 1 |
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+ | |noutputs = 1 |
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+ | |nparameters = 0 |
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+ | |components = B, C, K, M |
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+ | |License = NA |
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+ | |Creator = [[User:Himpe]] |
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+ | |Editor = |
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+ | * [[User:Himpe]] |
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+ | * [[User:Mlinaric]] |
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+ | * [[User:Yue]] |
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+ | |Zenodo-link = NA |
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+ | }} |
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==Description== |
==Description== |
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* For the benchmark itself and its data: |
* For the benchmark itself and its data: |
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− | :: Oberwolfach Benchmark Collection, '''Windscreen'''. hosted at MORwiki - Model Order Reduction Wiki, 2018. |
+ | :: Oberwolfach Benchmark Collection, '''Windscreen'''. hosted at MORwiki - Model Order Reduction Wiki, 2018. https://modelreduction.org/morwiki/Windscreen |
@MISC{morwiki_windscreen, |
@MISC{morwiki_windscreen, |
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title = {Windscreen}, |
title = {Windscreen}, |
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howpublished = {hosted at {MORwiki} -- Model Order Reduction Wiki}, |
howpublished = {hosted at {MORwiki} -- Model Order Reduction Wiki}, |
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− | url = <nowiki>{ |
+ | url = <nowiki>{https://modelreduction.org/morwiki/Windscreen}</nowiki>, |
year = 20XX |
year = 20XX |
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} |
} |
Latest revision as of 07:42, 17 June 2025
Background | |
---|---|
Benchmark ID |
windscreen_n22692m1q1 |
Category |
oberwolfach |
System-Class |
LTI-SOS |
Parameters | |
nstates |
22692
|
ninputs |
1 |
noutputs |
1 |
nparameters |
0 |
components |
B, C, K, M |
Copyright | |
License |
NA |
Creator | |
Editor | |
Location | |
NA |
Description
This is an example for a model in the frequency domain of the form
where represents a unit point load in one unknown of the state vector,
,
is a symmetric positive-definite matrix, and
with
symmetric positive semidefinite.
The test problem is a structural model of a car windscreen. [1]
This is a 3D problem discretized with nodes and
linear hexahedral elements (3 layers of
elements).
The mesh is shown in Fig. 1.
The material is glass with the following properties:
The Young modulus is
, the density is
, and the Poisson ratio is
. The natural damping is
, i.e.
.
The structural boundaries are free (free-free boundary conditions).
The windscreen is subjected to a point force applied on a corner.
The goal of the model reduction is the fast evaluation of
.
Model reduction is used as a fast linear solver for a sequence of parametrized linear systems.
The discretized problem has dimension .
The goal is to estimate
for
.
In order to generate the plots, the frequency range was discretized as
with
.
Fig. 1 shows the mesh of the car windscreen and Fig. 2 the frequency response .
Origin
This benchmark is part of the Oberwolfach Benchmark Collection[2]; No. 38886.
Data
Download matrices in the Matrix Market format:
- Windscreen-dim1e4-windscreen.tar.gz (21.5 MB)
The archive contains files windscreen.K, windscreen.M and windscreen.B representing ,
and
accordingly.
Dimensions
System structure:
with .
System dimensions:
,
,
,
,
Citation
To cite this benchmark, use the following references:
- For the benchmark itself and its data:
- Oberwolfach Benchmark Collection, Windscreen. hosted at MORwiki - Model Order Reduction Wiki, 2018. https://modelreduction.org/morwiki/Windscreen
@MISC{morwiki_windscreen, author = {{Oberwolfach Benchmark Collection}}, title = {Windscreen}, howpublished = {hosted at {MORwiki} -- Model Order Reduction Wiki}, url = {https://modelreduction.org/morwiki/Windscreen}, year = 20XX }
- For the background on the benchmark:
@article{Mee07, author = {K. Meerbergen}, title = {Fast frequency response computation for {R}ayleigh damping}, journal = {International Journal for Numerical Methods in Engineering}, volume = {73}, number = {1}, pages = {96--106}, year = {2007}, doi = {10.1002/nme.2058}, }
References
- ↑ K. Meerbergen, Fast frequency response computation for Rayleigh damping, International Journal for Numerical Methods in Engineering, 73(1): 96--106, 2007.
- ↑ J.G. Korvink, E.B. Rudnyi, Oberwolfach Benchmark Collection, In: Dimension Reduction of Large-Scale Systems, Lecture Notes in Computational Science and Engineering, vol 45: 311--315, 2005.