Dynamical Constrained Impulse System and application for designing discontinuous feedbacks

Reaching a target while remaining in a given set for impulse dynamics can be characterized by a non deterministic controlled differential equation and a controlled instantaneous reset equation. The set of initial conditions from which a given objective can be reached and the optimal control ensuring...

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Published inECC : 2007 European Control Conference : 2-5 July 2007 pp. 1300 - 1305
Main Author Saint-Pierre, Patrick
Format Conference Proceeding Journal Article
LanguageEnglish
Published IEEE 01.07.2007
Subjects
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ISBN3952417386
9783952417386
DOI10.23919/ECC.2007.7068918

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Abstract Reaching a target while remaining in a given set for impulse dynamics can be characterized by a non deterministic controlled differential equation and a controlled instantaneous reset equation. The set of initial conditions from which a given objective can be reached and the optimal control ensuring both target capture and viability are computed using the Hybrid Guaranteed Capture Basin Algorithm. After recalling how this can be extended for solving optimal control problems in the presence of impulse and in the presence of uncertainty and giving two applications relevant to engineering and to finance, we apply these approach for designing discontinuous controls selected in the class of linear feedbacks for the double integrator problem which substantially improve the efficiency for controlling systems with the only P.I.D. regulation.
AbstractList Reaching a target while remaining in a given set for impulse dynamics can be characterized by a non deterministic controlled differential equation and a controlled instantaneous reset equation. The set of initial conditions from which a given objective can be reached and the optimal control ensuring both target capture and viability are computed using the Hybrid Guaranteed Capture Basin Algorithm. After recalling how this can be extended for solving optimal control problems in the presence of impulse and in the presence of uncertainty and giving two applications relevant to engineering and to finance, we apply these approach for designing discontinuous controls selected in the class of linear feedbacks for the double integrator problem which substantially improve the efficiency for controlling systems with the only P.I.D. regulation.
Author Saint-Pierre, Patrick
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SubjectTerms Algorithms
Contracts
Control systems
Control theory
Cost accounting
Differential equations
Dynamics
Feedback
Heuristic algorithms
Impulses
Kernel
Mathematical analysis
Optimal control
Portfolios
Uncertainty
Title Dynamical Constrained Impulse System and application for designing discontinuous feedbacks
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