Abstract
This paper presents a personalized decentralized fractional-order PI (FOPI) control framework for a 2 × 2 multipleinput multiple-output (MIMO) anesthesia system regulating Bispectral Index (BIS) and Nociception Level (NOL) via Propofol and Remifentanil infusion. The approach relies on patientspecific pharmacokinetic-pharmacodynamic modeling using response surface models (RSMs), enabling analytical computation of unique steady-state operating points while enforcing common clinical targets. RSMs are locally linearized around these patientspecific equilibria, yielding individualized linear models that form the basis for controller synthesis. Decentralized FOPI controllers are subsequently designed using a frequency-domain autotuning methodology that enforces gain crossover frequency, phase margin, and iso-damping specifications. The proposed personalized framework is evaluated in simulation on a cohort of ten virtual patients exhibiting significant variability in pharmacodynamic response. Simulation results demonstrate consistent reference tracking, reduced inter-patient variability during induction, and robust disturbance rejection during maintenance.
| Original language | English |
|---|---|
| Title of host publication | 2026 25th IEEE International Conference on Automation, Quality and Testing, Robotics, AQTR 2026 - Proceedings |
| Editors | Szilard Enyedi, Liviu Miclea |
| Publisher | Institute of Electrical and Electronics Engineers Inc. |
| Edition | 2026 |
| ISBN (Electronic) | 9798319529701 |
| DOIs | |
| Publication status | Published - 2026 |
| Event | 25th IEEE International Conference on Automation, Quality and Testing, Robotics, AQTR 2026 - Cluj-Napoca, Romania Duration: 21 May 2026 → 23 May 2026 |
Conference
| Conference | 25th IEEE International Conference on Automation, Quality and Testing, Robotics, AQTR 2026 |
|---|---|
| Country/Territory | Romania |
| City | Cluj-Napoca |
| Period | 21/05/26 → 23/05/26 |
Bibliographical note
Publisher Copyright:© 2026 IEEE.
Keywords
- Closed loop control of anesthesia
- Fractional-order control
- Multivariable control
- Response surface models
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