809
Views
65
CrossRef citations to date
0
Altmetric
Original Articles

The advantages of directly identifying continuous-time transfer function models in practical applications

&
Pages 1319-1338 | Received 14 Mar 2013, Accepted 27 Aug 2013, Published online: 04 Dec 2013

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (4)

Rodrigo A. González, Cristian R. Rojas, Siqi Pan & James S. Welsh. (2023) Refined instrumental variable methods for unstable continuous-time systems in closed-loop. International Journal of Control 96:10, pages 2527-2541.
Read now
Jonas Linder & Martin Enqvist. (2017) Identification of systems with unknown inputs using indirect input measurements. International Journal of Control 90:4, pages 729-745.
Read now
Yangsheng Hu, Yuan Fan, Yiheng Wei, Yong Wang & Qing Liang. (2016) Subspace-based continuous-time identification of fractional order systems from non-uniformly sampled data. International Journal of Systems Science 47:1, pages 122-134.
Read now

Articles from other publishers (61)

Rodrigo A. González, Koen Tiels & Tom Oomen. (2024) Kernel-based identification using Lebesgue-sampled data. Automatica 164, pages 111648.
Crossref
Augustus Elton, Rodrigo A. González, James S. Welsh, Cristian R. Rojas & Minyue Fu. (2023) Parametric Continuous-Time Blind System Identification. Parametric Continuous-Time Blind System Identification.
Enea Monzio Compagnoni, Anna Scampicchio, Luca Biggio, Antonio Orvieto, Thomas Hofmann & Josef Teichmann. (2023) On the effectiveness of Randomized Signatures as Reservoir for Learning Rough Dynamics. On the effectiveness of Randomized Signatures as Reservoir for Learning Rough Dynamics.
Javier G. Fontanet. (2023) Continuous-Time Model Identification of the Subglottal System. SSRN Electronic Journal.
Crossref
Rodrigo A. González, Cristian R. Rojas, Siqi Pan & James S. Welsh. (2023) On the Relation Between Discrete and Continuous-Time Refined Instrumental Variable Methods. IEEE Control Systems Letters 7, pages 2233-2238.
Crossref
Suraj Dudhe, Dharmendra Kumar Dheer & G. Lloyds Raja. (2023) Modeling and control of suction pressure in portable meconium aspirator system using fractional order IMC-PID controller and RDR techniques. Materials Today: Proceedings 80, pages 320-326.
Crossref
Augustus Elton, Rodrigo A. González, James S. Welsh, Tom Oomen & Cristian R. Rojas. (2023) Blind Nonparametric Estimation of SISO Continuous-time Systems. IFAC-PapersOnLine 56:2, pages 4222-4227.
Crossref
Rodrigo A. González, Angel L. Cedeño, María Coronel, Juan C. Agüero & Cristian R. Rojas. (2023) An EM Algorithm for Lebesgue-sampled State-space Continuous-time System Identification*. IFAC-PapersOnLine 56:2, pages 4204-4209.
Crossref
Rodrigo A. González, Koen Tiels & Tom Oomen. (2023) Identifying Lebesgue-sampled Continuous-time Impulse Response Models: A Kernel-based Approach*. IFAC-PapersOnLine 56:2, pages 4198-4203.
Crossref
Tim Martin, Thomas B. Schön & Frank Allgöwer. (2023) Guarantees for data-driven control of nonlinear systems using semidefinite programming: A survey. Annual Reviews in Control 56, pages 100911.
Crossref
Vlad Stefan Barbu, Guglielmo D’Amico & Andreas Makrides. (2022) A Continuous-Time Semi-Markov System Governed by Stepwise Transitions. Mathematics 10:15, pages 2745.
Crossref
Manas Mejari, Bojan Mavkov, Marco Forgione & Dario Piga. (2022) Direct identification of continuous-time LPV state-space models via an integral architecture. Automatica 142, pages 110407.
Crossref
Fengwei Chen & Peter C. Young. (2022) A simple robust method of fractional time-delay estimation for linear dynamic systems. Automatica 137, pages 110117.
Crossref
Rodrigo A. Gonzalez, Cristian R. Rojas, Siqi Pan & James S. Welsh. (2021) The SRIVC algorithm for continuous-time system identification with arbitrary input excitation in open and closed loop. The SRIVC algorithm for continuous-time system identification with arbitrary input excitation in open and closed loop.
Rodrigo A. González, Cristian R. Rojas, Siqi Pan & James S. Welsh. (2021) Consistent identification of continuous-time systems under multisine input signal excitation. Automatica 133, pages 109859.
Crossref
Jinming Sun, Yanqiu Huang, Wanli Yu & Alberto Garcia-Ortiz. (2021) Nonlinear System Identification: Prediction Error Method vs Neural Network. Nonlinear System Identification: Prediction Error Method vs Neural Network.
Peter C Young, P Geoffrey Allen & John T Bruun. (2021) A re-evaluation of the Earth’s surface temperature response to radiative forcing. Environmental Research Letters 16:5, pages 054068.
Crossref
Xiaoyu Liu, Jing Xun, Bin Ning & Cheng Wang. (2021) Braking process identification of high-speed trains for automatic train stop control. ISA Transactions 111, pages 171-179.
Crossref
Marco Forgione & Dario Piga. (2021) Continuous-time system identification with neural networks: Model structures and fitting criteria. European Journal of Control 59, pages 69-81.
Crossref
Manas Mejari, Bojan Mavkov, Marco Forgione & Dario Piga. (2021) An integral architecture for identification of continuous-time state-space LPV models. IFAC-PapersOnLine 54:8, pages 7-12.
Crossref
H. Garnier, M. Gilson, H. Muller & F. Chen. (2021) A new Graphical User Interface for the CONTSID toolbox for Matlab. IFAC-PapersOnLine 54:7, pages 397-402.
Crossref
Fengwei Chen, Peter C. Young, Hugues Garnier, Qijun Deng & Marian K. Kazimierczuk. (2020) Data-Driven Modeling of Wireless Power Transfer Systems With Multiple Transmitters. IEEE Transactions on Power Electronics 35:11, pages 11363-11379.
Crossref
Fengwei Chen, Arturo Padilla, Peter C. Young & Hugues Garnier. (2020) Data-Driven Modeling of Wireless Power Transfer Systems With Slowly Time-Varying Parameters. IEEE Transactions on Power Electronics 35:11, pages 12442-12456.
Crossref
Guoyang Cheng & Wentao Yu. (2020) A universal digital motion controller design for servo positioning mechanisms in industrial manufacturing. Robotics and Computer-Integrated Manufacturing 64, pages 101943.
Crossref
Siqi Pan, Rodrigo A. González, James S. Welsh & Cristian R. Rojas. (2020) Consistency analysis of the Simplified Refined Instrumental Variable method for Continuous-time systems. Automatica 113, pages 108767.
Crossref
J. Zambrano, J. Sanchis, J. M. Herrero & M. Martínez. (2020) A Unified Approach for the Identification of Wiener, Hammerstein, and Wiener–Hammerstein Models by Using WH-EA and Multistep Signals. Complexity 2020, pages 1-23.
Crossref
Fengwei Chen, Hugues Garnier, Qijun Deng, Marian K. Kazimierczuk & Xiangtao Zhuan. (2020) Control-Oriented Modeling of Wireless Power Transfer Systems With Phase-Shift Control. IEEE Transactions on Power Electronics 35:2, pages 2119-2134.
Crossref
Bojan Mavkov, Marco Forgione & Dario Piga. (2020) Integrated Neural Networks for Nonlinear Continuous-Time System Identification. IEEE Control Systems Letters, pages 1-1.
Crossref
Xiaotong Xing, Jiandong Wang, Zijiang Yang & Poku Gyasi. (2020) Identification of Multiple First-Order Continuous-Time Dynamic Models From Special Segments in Historical Data. IEEE Access 8, pages 44879-44888.
Crossref
Mohammad-Reza Rahmani & Mohammad Farrokhi. (2020) Fractional-order Hammerstein state-space modeling of nonlinear dynamic systems from input–output measurements. ISA Transactions 96, pages 177-184.
Crossref
Rodrigo A. González, James S. Welsh & Cristian R. Rojas. (2020) Enforcing stability through ellipsoidal inner approximations in the indirect approach for continuous-time system identification. IFAC-PapersOnLine 53:2, pages 566-571.
Crossref
Valentin Pascu, Hugues Garnier, Lennart Ljung & Alexandre Janot. (2019) Benchmark problems for continuous-time model identification: Design aspects, results and perspectives. Automatica 107, pages 511-517.
Crossref
Mohammad‐Reza Rahmani & Mohammad Farrokhi. (2019) Robust identification of MISO neuro‐fractional‐order Hammerstein systems. International Journal of Robust and Nonlinear Control 29:7, pages 2137-2148.
Crossref
Venkata Goutham Polisetty, Santhosh Kumar Varanasi & Phanindra Jampana. (2019) Error Bounds for Identification of a Class of Continuous LTI Systems. IFAC-PapersOnLine 52:1, pages 418-423.
Crossref
Fengwei Chen, Hugues Garnier, Marion Gilson & Xiangtao Zhuan. (2018) Frequency domain identification of continuous-time output-error models with time-delay from relay feedback tests. Automatica 98, pages 180-189.
Crossref
Mohammad-Reza Rahmani & Mohammad Farrokhi. (2017) Identification of neuro-fractional Hammerstein systems: a hybrid frequency-/time-domain approach. Soft Computing 22:24, pages 8097-8106.
Crossref
Huong Ha, James S. Welsh & Mazen Alamir. (2018) Useful redundancy in parameter and time delay estimation for continuous-time models. Automatica 95, pages 455-462.
Crossref
Fengwei Chen, Xiangtao Zhuan, Hugues Garnier & Marion Gilson. (2018) Issues in separable identification of continuous-time models with time-delay. Automatica 94, pages 258-273.
Crossref
Missie Aguado‐Rojas, Paul Maya‐Ortiz & Gerardo Espinosa‐Pérez. (2018) On‐line estimation of switched reluctance motor parameters. International Journal of Adaptive Control and Signal Processing 32:6, pages 950-966.
Crossref
Peter C. Young. (2018) Data-based mechanistic modelling and forecasting globally averaged surface temperature. International Journal of Forecasting 34:2, pages 314-335.
Crossref
H. Garnier & M. Gilson. (2018) CONTSID: a Matlab toolbox for standard and advanced identification of black-box continuous-time models. IFAC-PapersOnLine 51:15, pages 688-693.
Crossref
Yunfeng Jiang, Bing Xia, Xin Zhao, Truong Nguyen, Chris Mi & Raymond A. de Callafon. (2017) Data-based fractional differential models for non-linear dynamic modeling of a lithium-ion battery. Energy 135, pages 171-181.
Crossref
Ashraf Mostafa & Manohar Das. (2017) A Study of Recursive Techniques for Robust Identification of Time-Varying Electrical Equivalent Circuit Models of Li-Ion Batteries. International Journal of Handheld Computing Research 8:3, pages 52-74.
Crossref
Ashraf Mostafa & Manohar Das. (2017) Robust identification of time-varying electrical equivalent circuit models of Li-ion batteries. Robust identification of time-varying electrical equivalent circuit models of Li-ion batteries.
Fengwei Chen, Marion Gilson, Hugues Garnier & Tao Liu. (2017) Robust time-domain output error method for identifying continuous-time systems with time delay. Systems & Control Letters 102, pages 81-92.
Crossref
Feng-wei Chen & Tao Liu. (2017) Iterative identification of discrete-time output-error model with time delay. Journal of Central South University 24:3, pages 647-654.
Crossref
Fengwei Chen, Hugues Garnier, Marion Gilson, Juan C. Agüero & Tao Liu. (2017) Refined instrumental variable parameter estimation of continuous‐time Box–Jenkins models from irregularly sampled data. IET Control Theory & Applications 11:2, pages 291-300.
Crossref
Valentin Pascu, Hugues Garnier, Lennart Ljung & Alexandre Janot. (2016) Developments towards formalizing a benchmark for continuous-time model identification. Developments towards formalizing a benchmark for continuous-time model identification.
Huong Ha & James S. Welsh. (2016) Parameter and delay estimation of continuous-time models utilizing multiple filtering. Parameter and delay estimation of continuous-time models utilizing multiple filtering.
Bing Xia, Xin Zhao, Raymond de Callafon, Hugues Garnier, Truong Nguyen & Chris Mi. (2016) Accurate Lithium-ion battery parameter estimation with continuous-time system identification methods. Applied Energy 179, pages 426-436.
Crossref
Bing Xia, Xin Zhao, Raymond de Callafon, Hugues Garnier, Truong Nguyen & Chris Mi. (2016) Accurate Lithium-ion battery parameter estimation with continuous-time system identification methods. Accurate Lithium-ion battery parameter estimation with continuous-time system identification methods.
Huong Ha & James S. Welsh. (2015) Model order selection for continuous time instrumental variable methods using regularization. Model order selection for continuous time instrumental variable methods using regularization.
Hugues Garnier. (2015) Direct continuous-time approaches to system identification. Overview and benefits for practical applications. European Journal of Control 24, pages 50-62.
Crossref
Peter C. Young. (2015) Refined instrumental variable estimation: Maximum likelihood optimization of a unified Box–Jenkins model. Automatica 52, pages 35-46.
Crossref
Fengwei Chen, Hugues Garnier & Marion Gilson. (2015) Robust identification of continuous-time models with arbitrary time-delay from irregularly sampled data. Journal of Process Control 25, pages 19-27.
Crossref
Padilla A.Garnier H.Gilson M.. (2015) Version 7.0 of the CONTSID toolbox. IFAC-PapersOnLine 48:28, pages 757-762.
Crossref
Yangsheng HU, Yi DAI, Qing LIANG & Yong WANG. (2015) Subspace-based Continuous-time Model Identification Using Nuclear Norm Minimization. IFAC-PapersOnLine 48:28, pages 338-343.
Crossref
Sunil Deshpande, Naresh N. Nandola, Daniel E. Rivera & Jarred W. Younger. (2014) Optimized treatment of fibromyalgia using system identification and hybrid model predictive control. Control Engineering Practice 33, pages 161-173.
Crossref
Sunil Deshpande, Daniel E. Rivera, Jarred W. Younger & Naresh N. Nandola. (2014) A control systems engineering approach for adaptive behavioral interventions: illustration with a fibromyalgia intervention. Translational Behavioral Medicine 4:3, pages 275-289.
Crossref
Hugues Garnier, Robert R. Bitmead & Raymond A. de Callafon. (2014) Direct continuous-time model identification of high-powered light-emitting diodes from rapidly sampled thermal step response data. IFAC Proceedings Volumes 47:3, pages 6430-6435.
Crossref
Rongzhi Cui, Zongyang Li, Yiheng Wei & Yong Wang. (2018) Subspace-Based Fractional Order Systems Identification in Presence of Outliers. SSRN Electronic Journal.
Crossref

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.