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Title:Measurement noise attenuation in modified Smith predictor and automatic offset controllers for integrator plus dead-time system
Authors:ID Huba, Mikuláš (Author)
ID Bisták, Pavol (Author)
ID Vrančić, Damir, Institut "Jožef Stefan" (Author)
Files:URL URL - Source URL, visit https://www.nature.com/articles/s41598-026-39732-9
 
.pdf PDF - Presentation file, download (8,49 MB)
MD5: 544ABC38E85639C23AB84E12A6F6F2EB
Description: The programs and datasets generated and analyzed during the current study are available in the Zenodo repository, https://www.doi.org/10.5281/zenodo.17364578.
 
Language:English
Typology:1.01 - Original Scientific Article
Organization:Logo IJS - Jožef Stefan Institute
Abstract:The paper compares the recently modified Åström-Smith predictor (ASP) developed for IPDT models with an automatic offset controller (AOC). While an excellent performance can be achieved with ASP in idealized conditions, unacceptable transients with extraordinary high excessive controller effort and a steady-state control error result in the presence of measurement noise. AOC combines a possibly higher-order (HO) stabilizing controller (SC) with compensation of disturbances using a full disturbance observer (DOB). Nominal full DOB includes both the model dead-time and inversion of the integral mode of the model. By increasing the number of output derivatives used in the SC of the AOC, together with increasing the order of the low-pass filter used both in the SC and the DOB, it is possible to significantly increase the speed and robustness of responses in time-delayed processes, together with decreasing the measurement noise impact. The AOC based on the ultralocal IPDT model can be used to replace the higher-order PID in an universal controller for a wide class of processes with dominant first-order dynamics. Significant improvements in measurement noise attenuation can be demonstrated also in application of equivalent low-pass filters to the ASP. But even after such a modification of the noise attenuation, the filtered ASP can exhibit permanent control error or even instability at higher noise amplitudes. Hence, although even the ASP can be used as a universal controller for processes with dominant first-order dynamics, the benefit of its use should always be verified depending on the amplitude of the measurement noise. From this point of view, the use of AOC is simpler and more reliable. Despite the need for appropriate selection of the degree of derivatives used in SC and the tuning of the low-pass filters used. The conclusions of the article are illustrated by simulation experiments of unstable process control and real-time thermal process control.
Keywords:automatic reset, automatic offset, disturbance observer, higher-order derivatives, contrained control
Publication status:Published
Publication version:Version of Record
Submitted for review:03.10.2025
Article acceptance date:06.02.2026
Publication date:11.02.2026
Publisher:Nature Publishing Group
Year of publishing:2026
Number of pages:str. 1-22
Numbering:Vol. 16 article number 8335
Source:Združeno kraljestvo
PID:20.500.12556/DiRROS-28379 New window
UDC:681.5
ISSN on article:2045-2322
DOI:10.1038/s41598-026-39732-9 New window
COBISS.SI-ID:271760387 New window
Copyright:© The Author(s) 2026
Note:Nasl. z nasl. zaslona; Opis vira z dne 16. 3. 2026;
Publication date in DiRROS:16.03.2026
Views:46
Downloads:14
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Record is a part of a journal

Title:Scientific reports
Shortened title:Sci. rep.
Publisher:Nature Publishing Group
ISSN:2045-2322
COBISS.SI-ID:18727432 New window

Document is financed by a project

Funder:ARIS - Slovenian Research and Innovation Agency
Project number:P2-0001-2022
Name:Sistemi in vodenje

Funder:EC - European Commission
Project number:101007175
Name:REliable Advanced Diagnostics and Control Tools for increased lifetime of solid oxide cell Technology
Acronym:REACTT

Funder:VEGA - Scientific Grant Agency of the Ministry of Education, Science, Research and Sport of the Slovak Republic and Slovak Academy of Sciences
Project number:1/0821/25

Funder:Slovak Research and Development Agency
Project number:APVV-24-0390

Licences

License:CC BY-NC-ND 4.0, Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International
Link:http://creativecommons.org/licenses/by-nc-nd/4.0/
Description:The most restrictive Creative Commons license. This only allows people to download and share the work for no commercial gain and for no other purposes.
Licensing start date:11.02.2026
Applies to:VoR

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