Andrea Salonia
Development and validation of an NMPC controller for attitude control of the EMRS rover.
Rel. Elisa Capello, Genny Scalise, Alessio De Luca, Patrick Roncagliolo. Politecnico di Torino, Corso di laurea magistrale in Ingegneria Aerospaziale, 2026
Abstract
Future space robotic systems that will enable exploration of the lunar surface represent complex platforms, characterized by numerous operational constraints and by the need to operate in a wide range of environmental conditions. A key element of the development of these systems is a strong integration with the active control of the vehicle’s attitude and distance from the ground, which is necessary to ensure payload interaction with the surface, the stabilization of the chassis, and the facilitation of the traversal of environments characterized by steep slopes and irregularities. In this context, predictive control techniques based on a linear model of the system struggle to ensure optimal performance over the entire operating envelope and to correctly describe the kinematic and dynamic nonlinear effects to which the system is subjected.
In particular, Nonlinear Model Predictive Control (NMPC) represents the natural evolution of these techniques and the most organic way to consider the nonlinearities present without having to reconfigure the controller as the operating point varies
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