International audienceWe provide a new generalization of a recent trajectory-based approach for proving global asymptotic stability properties, using new sup-delay inequalities. Our generalization eliminates the usual contractivity requirement from previous sup-delay inequality approaches. We show how the requirements of our generalization hold under less restrictive Halanay's conditions than those that were previously reported. While the usual Halanay's inequality requires the decay rate to exceed the gain, our less restrictive conditions allow the gain to exceed the decay rate. We apply our work to systems with switching delays and to a continuous-discrete system
International audienceWe provide a generalization of Halanay's inequality, where the decay rate is c...
International audienceWe present a generalized form of Halanay's inequality, having a time varying g...
For time-delay systems, it is known that global asymptotic stability is guaranteed by the existence ...
International audienceWe provide a new generalization of a recent trajectory-based approach for prov...
International audienceWe provide a new generalization of a recent trajectory-based approach for prov...
International audienceWe provide a new generalization of a recent trajectory-based approach for prov...
International audienceWe provide a new generalization of a recent trajectory-based approach for prov...
International audienceWe provide a new generalization of a recent trajectory-based approach for prov...
We provide a new generalization of a recent trajectory-based approach for proving global asymptotic ...
International audienceWe provide a new generalization of a recent trajectory-based approach for prov...
International audienceWe provide a new generalization of a recent trajectory-based approach for prov...
International audienceWe present a generalized form of Halanay's inequality, having a time varying g...
International audienceWe present a generalized form of Halanay's inequality, having a time varying g...
International audienceWe provide a generalization of Halanay's inequality, where the decay rate is c...
International audienceWe provide a generalization of Halanay's inequality, where the decay rate is c...
International audienceWe provide a generalization of Halanay's inequality, where the decay rate is c...
International audienceWe present a generalized form of Halanay's inequality, having a time varying g...
For time-delay systems, it is known that global asymptotic stability is guaranteed by the existence ...
International audienceWe provide a new generalization of a recent trajectory-based approach for prov...
International audienceWe provide a new generalization of a recent trajectory-based approach for prov...
International audienceWe provide a new generalization of a recent trajectory-based approach for prov...
International audienceWe provide a new generalization of a recent trajectory-based approach for prov...
International audienceWe provide a new generalization of a recent trajectory-based approach for prov...
We provide a new generalization of a recent trajectory-based approach for proving global asymptotic ...
International audienceWe provide a new generalization of a recent trajectory-based approach for prov...
International audienceWe provide a new generalization of a recent trajectory-based approach for prov...
International audienceWe present a generalized form of Halanay's inequality, having a time varying g...
International audienceWe present a generalized form of Halanay's inequality, having a time varying g...
International audienceWe provide a generalization of Halanay's inequality, where the decay rate is c...
International audienceWe provide a generalization of Halanay's inequality, where the decay rate is c...
International audienceWe provide a generalization of Halanay's inequality, where the decay rate is c...
International audienceWe present a generalized form of Halanay's inequality, having a time varying g...
For time-delay systems, it is known that global asymptotic stability is guaranteed by the existence ...