The Dirac--Bergmann approach to optimal control theory

Fuente: arXiv
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Autori principali: Aghamalyan, Davit, Maity, Aleek, Narasimhachar, Varun, Sreedhar, V V
Natura: Preprint
Pubblicazione: 2025
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author Aghamalyan, Davit
Maity, Aleek
Narasimhachar, Varun
Sreedhar, V V
author_facet Aghamalyan, Davit
Maity, Aleek
Narasimhachar, Varun
Sreedhar, V V
contents We present a novel framework for optimal control in both classical and quantum systems. Our approach leverages the Dirac--Bergmann algorithm: a systematic method for formulating and solving constrained dynamical systems. In contrast to the standard Pontryagin Principle, which is used in control theory, our approach bypasses the need to perform a variation to obtain the optimal solution. Instead, the Dirac--Bergmann algorithm generates the optimal solution automatically, through the closure of the Poission Bracket algebra of the full set of constraints and the Hamiltonian. The efficacy of our framework is demonstrated through two quintessential examples: (1) the classical brachistochrone problem and (2) the time-optimal control of a generic quantum system, relevant for quantum technological applications. In the latter example, both closed and open quantum systems are discussed.
format Preprint
id arxiv_https___arxiv_org_abs_2506_17610
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle The Dirac--Bergmann approach to optimal control theory
Aghamalyan, Davit
Maity, Aleek
Narasimhachar, Varun
Sreedhar, V V
Quantum Physics
Mathematical Physics
Classical Physics
We present a novel framework for optimal control in both classical and quantum systems. Our approach leverages the Dirac--Bergmann algorithm: a systematic method for formulating and solving constrained dynamical systems. In contrast to the standard Pontryagin Principle, which is used in control theory, our approach bypasses the need to perform a variation to obtain the optimal solution. Instead, the Dirac--Bergmann algorithm generates the optimal solution automatically, through the closure of the Poission Bracket algebra of the full set of constraints and the Hamiltonian. The efficacy of our framework is demonstrated through two quintessential examples: (1) the classical brachistochrone problem and (2) the time-optimal control of a generic quantum system, relevant for quantum technological applications. In the latter example, both closed and open quantum systems are discussed.
title The Dirac--Bergmann approach to optimal control theory
topic Quantum Physics
Mathematical Physics
Classical Physics
url https://arxiv.org/abs/2506.17610