International audienceThis work proposes a general framework to analyze robust safety for continuous-time systems described by differential inclusions. While the existing robust-safety literature studied only what we designate by uniform robust safety, in this paper, we make a clear distinction between the uniform and the non-uniform robust-safety notions. For both cases, we establish sufficient (infinitesimal) conditions on the nominal (unperturbed) system, involving only the barrier function and the system’s right-hand side. Our results allow for unbounded safety regions as well as non-smooth barrier functions. Throughout the paper, simple examples are provided to motivate the main results
This paper provides an introduction and overview of recent work on control barrier functions and the...
Barrier functions (also called certificates) have been an important tool for the verification of hyb...
This paper shows that a barrier certificate exists for any safe dynamical system. Specifically, we p...
In this brief paper we introduce a robust-safety notion for differential inclusions, and we propose ...
This paper presents converse theorems for robust safety in terms of barrier functions for continuous...
International audienceThe current paper proposes a converse robust-safety theorem, in terms of barri...
arXiv admin note: text overlap with arXiv:2208.10829This paper proposes a general framework to analy...
International audienceThis paper presents converse theorems for safety in terms of barrier functions...
This paper investigates characterizations of safety in terms of barrier functions for hybrid systems...
By this poster, we aim at presenting in a comprehensive manner our new results on safety characteriz...
For a broad class of nonlinear systems, we formulate the problem of guaranteeing safety with optimal...
Abstract: A methodology for safety verification of nonlinear systems using barrier certificates has ...
International audienceWe study the safety verification problem for a class of distributed parameter ...
In this paper, we propose a notion of high-order (zeroing) barrier functions that generalizes the co...
International audienceRecently, barrier certificates have been introduced to prove the safety of con...
This paper provides an introduction and overview of recent work on control barrier functions and the...
Barrier functions (also called certificates) have been an important tool for the verification of hyb...
This paper shows that a barrier certificate exists for any safe dynamical system. Specifically, we p...
In this brief paper we introduce a robust-safety notion for differential inclusions, and we propose ...
This paper presents converse theorems for robust safety in terms of barrier functions for continuous...
International audienceThe current paper proposes a converse robust-safety theorem, in terms of barri...
arXiv admin note: text overlap with arXiv:2208.10829This paper proposes a general framework to analy...
International audienceThis paper presents converse theorems for safety in terms of barrier functions...
This paper investigates characterizations of safety in terms of barrier functions for hybrid systems...
By this poster, we aim at presenting in a comprehensive manner our new results on safety characteriz...
For a broad class of nonlinear systems, we formulate the problem of guaranteeing safety with optimal...
Abstract: A methodology for safety verification of nonlinear systems using barrier certificates has ...
International audienceWe study the safety verification problem for a class of distributed parameter ...
In this paper, we propose a notion of high-order (zeroing) barrier functions that generalizes the co...
International audienceRecently, barrier certificates have been introduced to prove the safety of con...
This paper provides an introduction and overview of recent work on control barrier functions and the...
Barrier functions (also called certificates) have been an important tool for the verification of hyb...
This paper shows that a barrier certificate exists for any safe dynamical system. Specifically, we p...