Samenvatting
Models that contain intersample behavior are important for control design of systems with slow-rate outputs. The aim of this paper is to develop a system identification technique for fast-rate models of systems where only slow-rate output measurements are available, e.g., vision-in-the-loop systems. In this paper, the intersample response is estimated by identifying fast-rate models through least-squares criteria, and the limitations of these models are determined. In addition, a method is developed that surpasses these limitations and is capable of estimating unique fast-rate models of arbitrary order by regularizing the least-squares estimate. The developed method utilizes fast-rate inputs and slow-rate output measurements and identifies fast-rate models accurately in a single identification experiment. Finally, both simulation and experimental validation on a prototype wafer stage demonstrate the effectiveness of the framework.
| Originele taal-2 | Engels |
|---|---|
| Artikelnummer | 106425 |
| Aantal pagina's | 9 |
| Tijdschrift | Control Engineering Practice |
| Volume | 164 |
| Vroegere onlinedatum | 13 jun 2025 |
| DOI's | |
| Status | Gepubliceerd - nov 2025 |
Financiering
This research has received funding from the ECSEL Joint Undertaking under grant agreement 101007311 (IMOCO4.E), which receives support from the European Union Horizon 2020 research and innovation programme .
| Financiers | Financiernummer |
|---|---|
| European Union’s Horizon Europe research and innovation programme | |
| Electronic Components and Systems for European Leadership | 101007311 |
Vingerafdruk
Duik in de onderzoeksthema's van 'System Identification Beyond the Nyquist Frequency: A Kernel-Regularized Approach'. Samen vormen ze een unieke vingerafdruk.Citeer dit
- APA
- Author
- BIBTEX
- Harvard
- Standard
- RIS
- Vancouver