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  4. A Set-Theoretic Method for Verifying Feasibility of a Fast Explicit Nonlinear Model Predictive Controller
 
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A Set-Theoretic Method for Verifying Feasibility of a Fast Explicit Nonlinear Model Predictive Controller

Raimondo, Davide M.
•
Riverso, Stefano
•
Summers, Sean
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Johansson, Rolf
•
Rantzer, Anders
2012
Distributed Decision Making and Control

In this chapter an algorithm for nonlinear explicit model predictive control is presented. A low complexity receding horizon control law is obtained by approximating the optimal control law using multiscale basis function approximation. Simultaneously, feasibility and stability of the approximate control law is ensured through the computation of a capture basin (region of attraction) for the closed-loop system. In a previous work, interval methods were used to construct the capture basin (feasible region), yet this approach suffered due to slow computation times and high grid complexity. In this chapter, we suggest an alternative to interval analysis based on zonotopes. The suggested method significantly reduces the complexity of the combined function approximation and verification procedure through the use of DC (difference of convex) programming, and recursive splitting. The result is a multiscale function approximation method with improved computational efficiency for fast nonlinear explicit model predictive control with guaranteed stability and constraint satisfaction.

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Type
book part or chapter
DOI
10.1007/978-1-4471-2265-4_13
Author(s)
Raimondo, Davide M.
Riverso, Stefano
Summers, Sean
Jones, Colin  
Lygeros, John
Morari, Manfred
Editors
Johansson, Rolf
•
Rantzer, Anders
Date Issued

2012

Publisher

Springer London

Publisher place

London

Published in
Distributed Decision Making and Control
ISBN of the book

978-1-4471-2264-7

Start page

289

End page

311

Series title/Series vol.

Lecture Notes in Control and Information Sciences

Written at

EPFL

EPFL units
LA  
Available on Infoscience
March 30, 2012
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/79130
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