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| Title: | Fractional-order identification and analysis of elevation and azimuth dynamics in a twin rotor system |
| Author: | Wendimu, Abebe Alemu; Matušů, Radek; Shaikh, Ibrahim; Wolde, Mihret Kochito |
| Document type: | Conference paper (English) |
| Source document: | Lecture Notes in Networks and Systems. 2025, vol. 1567 LNNS, p. 609-630 |
| ISSN: | 2367-3389 (Sherpa/RoMEO, JCR) |
| ISBN: | 9789819652372 |
| DOI: | https://doi.org/10.1007/978-3-032-00071-2_37 |
| Abstract: | Accurate modeling of complex systems is essential for the development of advanced control strategies. While traditional integer-order models have been widely applied, fractional-order modeling offers superior accuracy in capturing system dynamics. Despite its potential, research on the offline identification of fractional-order models for twin rotor systems remains limited, especially using real-time measurement data. This study addresses this gap by investigating the offline identification of fractional-order models for the elevation and azimuth angles of a twin rotor system based on real-time data. The Fractional-Order Modeling and Control (FOMCON) toolbox in MATLAB is utilized for time-domain model identification. A comparative analysis is conducted between fractional-order and integer-order models, employing MATLAB’s fminsearch function, the explicit (one-time) Least Squares Method (LSM), the Recursive Least Squares Method (RLSM), and its modified variants. Key findings demonstrate that fractional-order models yield superior performance in approximating the elevation and azimuth dynamics compared to integer-order models, achieving improved model fitness and enhanced stability. These results highlight the potential of fractional-order models to significantly improve control system design for twin rotor applications. Overall, the study contributes a robust framework for plant modeling, paving the way for more precise and adaptive control strategies in complex rotor systems. |
| Full text: | https://link.springer.com/chapter/10.1007/978-3-032-00071-2_37 |
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