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Composition of Control Barrier Functions with Differing Relative Degrees for Safety under Input Constraints

Producción científica: Conference contributionrevisión exhaustiva

12 Citas (Scopus)

Resumen

This paper presents a new approach for guaranteed safety subject to input constraints (e.g., actuator limits) using a composition of multiple control barrier functions (CBFs). First, we present a method for constructing a single CBF from multiple CBFs, which can have different relative degrees. This construction relies on a soft minimum function and yields a CBF whose 0-superlevel set is a subset of the union of the 0-superlevel sets of all the CBFs used in the construction. Next, we extend the approach to systems with input constraints. Specifically, we introduce control dynamics that allow us to express the input constraints as CBFs in the closed-loop state (i.e., the state of the system and the controller). The CBFs constructed from input constraints do not have the same relative degree as the safety constraints. Thus, the composite soft-minimum CBF construction is used to combine the input-constraint CBFs with the safety-constraint CBFs. Finally, we present a feasible real-time-optimization control that guarantees that the state remains in the 0-superlevel set of the composite soft-minimum CBF. We demonstrate these approaches on a nonholonomic ground robot example.

Idioma originalEnglish
Título de la publicación alojada2024 American Control Conference, ACC 2024
Páginas3692-3697
Número de páginas6
ISBN (versión digital)9798350382655
DOI
EstadoPublished - 2024
Evento2024 American Control Conference, ACC 2024 - Toronto, Canada
Duración: jul 10 2024jul 12 2024

Serie de la publicación

NombreProceedings of the American Control Conference
ISSN (versión impresa)0743-1619

Conference

Conference2024 American Control Conference, ACC 2024
País/TerritorioCanada
CiudadToronto
Período7/10/247/12/24

Nota bibliográfica

Publisher Copyright:
© 2024 AACC.

Financiación

This work is supported in part by the National Science Foundation (1849213, 1932105) and Air Force Office of Scientific Research (FA9550- 20-1-0028).

FinanciadoresNúmero del financiador
National Science Foundation Arctic Social Science Program1849213, 1932105
Air Force Office of Scientific Research, United States Air ForceFA9550- 20-1-0028

    ASJC Scopus subject areas

    • Electrical and Electronic Engineering

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