Re injecting the structure in NMPC schemes. Application to the constrained stabilization of a snake board

In this paper, a constrained nonlinear predictive control scheme is proposed for a class of under-actuated nonholonomic systems. The scheme is based on fast generation of steering trajectories that inherently fulfill the contraints while showing a ""{\em translatability}"" property which is generally needed to derive stability results in receding-horizon schemes. The corresponding open-loop optimization problem can be solved very efficiently with a fixed and deterministic upper bound on the execution time making possible a real-time implementation on fast systems. The whole framework is shown to hold for the well known challenging problem of a snake board constrained stabilization. Illustrative simulations are proposed to assess the efficiency of the proposed solution.

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Additional Info

Field Value
Source Fast Motions in Biomechanics and Robotics : Optimization and Feedback Control
Author Alamir, Mazen, Boyer, Frédéric
Maintainer CCSD
Last Updated May 10, 2026, 17:54 (UTC)
Created May 10, 2026, 17:54 (UTC)
Identifier hal-00083371
Language en
contributor Laboratoire d'automatique de Grenoble (LAG) ; Université Joseph Fourier - Grenoble 1 (UJF)-Institut National Polytechnique de Grenoble (INPG)-Centre National de la Recherche Scientifique (CNRS)
creator Alamir, Mazen
date 2006-05-10T00:00:00
harvest_object_id d9e47f91-3857-47b6-b382-b9cc5bc74c9d
harvest_source_id 3374d638-d20b-4672-ba96-a23232d55657
harvest_source_title test moissonnage SELUNE
metadata_modified 2025-09-27T00:00:00
set_spec type:COUV