Network-based Observability and Controllability Analysis of Dynamical Systems: the NOCAD toolbox [version 2; peer review: 2 approved]

The network science-based determination of driver nodes and sensor placement has become increasingly popular in the field of dynamical systems over the last decade. In this paper, the applicability of the methodology in the field of life sciences is introduced through the analysis of the neural netw...

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Main Authors: Dániel Leitold, Ágnes Vathy-Fogarassy, János Abonyi
Format: Article
Language:English
Published: F1000 Research Ltd 2019-09-01
Series:F1000Research
Online Access:https://f1000research.com/articles/8-646/v2
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author Dániel Leitold
Ágnes Vathy-Fogarassy
János Abonyi
author_facet Dániel Leitold
Ágnes Vathy-Fogarassy
János Abonyi
author_sort Dániel Leitold
collection DOAJ
description The network science-based determination of driver nodes and sensor placement has become increasingly popular in the field of dynamical systems over the last decade. In this paper, the applicability of the methodology in the field of life sciences is introduced through the analysis of the neural network of Caenorhabditis elegans. Simultaneously, an Octave and MATLAB-compatible NOCAD toolbox is proposed that provides a set of methods to automatically generate the relevant structural controllability and observability associated measures for linear or linearised systems and compare the different sensor placement methods.
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spelling doaj.art-92f78133ea2548abb0a8d6f5075592462022-12-21T20:01:51ZengF1000 Research LtdF1000Research2046-14022019-09-01810.12688/f1000research.19029.222645Network-based Observability and Controllability Analysis of Dynamical Systems: the NOCAD toolbox [version 2; peer review: 2 approved]Dániel Leitold0Ágnes Vathy-Fogarassy1János Abonyi2Department of Computer Science and Systems Technology, University of Pannonia, Egyetem u. 10, Veszprém, 8200, HungaryMTA-PE Lendulet Complex Systems Monitoring Research Group, University of Pannonia, Egyetem u. 10, POB. 158, Veszprém, 8200, HungaryMTA-PE Lendulet Complex Systems Monitoring Research Group, University of Pannonia, Egyetem u. 10, POB. 158, Veszprém, 8200, HungaryThe network science-based determination of driver nodes and sensor placement has become increasingly popular in the field of dynamical systems over the last decade. In this paper, the applicability of the methodology in the field of life sciences is introduced through the analysis of the neural network of Caenorhabditis elegans. Simultaneously, an Octave and MATLAB-compatible NOCAD toolbox is proposed that provides a set of methods to automatically generate the relevant structural controllability and observability associated measures for linear or linearised systems and compare the different sensor placement methods.https://f1000research.com/articles/8-646/v2
spellingShingle Dániel Leitold
Ágnes Vathy-Fogarassy
János Abonyi
Network-based Observability and Controllability Analysis of Dynamical Systems: the NOCAD toolbox [version 2; peer review: 2 approved]
F1000Research
title Network-based Observability and Controllability Analysis of Dynamical Systems: the NOCAD toolbox [version 2; peer review: 2 approved]
title_full Network-based Observability and Controllability Analysis of Dynamical Systems: the NOCAD toolbox [version 2; peer review: 2 approved]
title_fullStr Network-based Observability and Controllability Analysis of Dynamical Systems: the NOCAD toolbox [version 2; peer review: 2 approved]
title_full_unstemmed Network-based Observability and Controllability Analysis of Dynamical Systems: the NOCAD toolbox [version 2; peer review: 2 approved]
title_short Network-based Observability and Controllability Analysis of Dynamical Systems: the NOCAD toolbox [version 2; peer review: 2 approved]
title_sort network based observability and controllability analysis of dynamical systems the nocad toolbox version 2 peer review 2 approved
url https://f1000research.com/articles/8-646/v2
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AT agnesvathyfogarassy networkbasedobservabilityandcontrollabilityanalysisofdynamicalsystemsthenocadtoolboxversion2peerreview2approved
AT janosabonyi networkbasedobservabilityandcontrollabilityanalysisofdynamicalsystemsthenocadtoolboxversion2peerreview2approved