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March 3, 2026IFAC-PapersOnLine0 citationsOpen Access

Identification of a second-species commensurate fractional order transfer function from a step response with overshoot or oscillations

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DVDuarte ValerioSCSerge ChaumetteRMRachid Malti

Key Points

  • Identifying the second-species commensurate fractional order transfer function involves analyzing step responses that exhibit overshoot.
  • The method requires only two points from the step response, specifically their time and amplitude, simplifying the process significantly.
  • This approach highlights the ability to work with complex behaviors, such as overshoot or oscillations, during system identification.
  • The applicability of these methods supports efficient modeling in fields requiring dynamic system analysis, like control engineering.

Abstract

This paper shows how a second-species commensurate fractional order transfer function can be identified from a step response. Only step responses with overshoot or with oscillations (or both) are considered. All that the methods discussed require is knowing the time and amplitude of only two points of the step response.

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Cite This Study

Valerio et al. (2025) studied this question.

synapsesocial.com/papers/69a75f74c6e9836116a2ad73https://doi.org/10.1016/j.ifacol.2026.01.024
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Proposal of a General Identification Method for Fractional-Order Processes Based on the Process Reaction Curve2022 · 30 citations
  2. 2Stability and resonance conditions of elementary fractional transfer functions2011 · 78 citations
  3. 3Analytical computation of the ℋ2 -norm of fractional commensurate transfer functions2011 · 47 citations
  4. 4Analytical study of resonance regions for second kind commensurate fractional systems2020 · 2 citations
  5. 5Fractional-order model identification based on the process reaction curve: A unified framework for chemical processes2024 · 33 citations