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20242026
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math.OC2026

The distance-based formation controller design for multi-agent systems in port-Hamiltonian form

Jingyi Zhao, Yongxin Wu, Héctor García de Marina +2

Based on the practical scenario where collisions in formation control may lead to agent damage, this paper investigates the integrated problem of distance-based formation control a…

math.OC2026

Observer-Based State Feedback Controller for a Mindlin Plate Model in port-Hamiltonian framework

Ignacio Diaz Alastuey, Yann Le Gorrec, Yongxin Wu

This paper generalises an early lumped observer-based state-feedback (OBSF) control design methodology, originally developed for one-dimensional (1-D) boundary-controlled port-Hami…

math.OC2026

Design and Modeling of a HASEL Actuator-Based Micro Parallel Robot

Agustin Feregrino, Nelson Cisneros, Alexis Lefèvre +2

This paper presents the mechatronic design, dynamic modeling, and experimental validation of a three-degree-of-freedom (3-DOF) micro parallel robot featuring a prismatic-spherical…

math.OC2026

PH-KAN: Port-Hamiltonian Kolmogorov-Arnold Network

Achraf El Messaoudi, Karim Cherifi, Yann Le Gorrec +1

Data-driven machine learning approaches have become increasingly attractive for nonlinear system identification, but standard models often fail to preserve the underlying physical…

math.OC2026

Observer design for classes of nonlinear port-Hamiltonian systems

Filippo Ugolini, Ning Liu, Yongxin Wu +2

This paper presents a systematic observer design methodology for a class of port-Hamiltonian (pH) systems with state-dependent input matrices. Such systems can model a wide range o…

math.OC2026

Privacy-Preserving Formation Control for Networked Underactuated USVs: A Passivity-Based Approach

Jingyi Zhao, Wenxuan Wang, Weijun Zhou +3

This paper studies coordinated trajectory planning and tracking control for multiple unmanned surface vessels (USVs) under strict privacy requirements. To avoid the privacy risks a…