Uniform Feasibility For Smoothed Backup Control Barrier Functions

Conference Paper (2026)
Author(s)

Anil Alan (TU Delft - Mechanical Engineering)

Bart De Schutter (TU Delft - Mechanical Engineering)

Research Group
Team Bart De Schutter
URL related publication
https://ieeexplore.ieee.org/document/11625595 Final published version
More Info
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Publication Year
2026
Language
English
Research Group
Team Bart De Schutter
Pages (from-to)
1063-1070
Publisher
IEEE
ISBN (electronic)
978-3-907144-13-8
Event
2026 European Control Conference, ECC 2026 (2026-07-07 - 2026-07-10), Reykjavik, Iceland
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28
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Abstract

We study feasibility guarantees for safety filters developed using Control Barrier Functions (CBFs) when a safe set is defined using the pointwise minimum of continuously differentiable functions, a construction that is common for the backup CBF (BCBF) method and typically nonsmooth. We replace the minimum by its log-sum-exp (soft-min) smoothing and show that, under a strict safety condition, the smooth function becomes a CBF (or extended CBF) for a range of the smoothing parameter. For compact safe sets, we derive an explicit lower bound on the smoothing parameter that makes the smooth function a CBF and hence renders the corresponding safety constraint feasible. For unbounded sets, we introduce tail conditions under which the smooth function satisfies an extended CBF condition uniformly. Finally, we apply these results to BCBFs. We show that safety of a compact (terminal) backup set under a backup controller, together with a condition ensuring safety of the backup trajectories on the relevant boundary of the safe set, is sufficient for constraint feasibility for BCBFs. These results provide a recipe for a priori feasibility guarantees for smooth inner approximations of nonsmooth safe sets without the need for additional online certification.

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