In this work we formulate the satisfaction of a (syntactically co-safe) linear temporal logic specification on a physical plant through a recent hybrid dynamical systems formalism. In order to solve this problem, we introduce an extension to such a hybrid system framework of the so-called eventuality property, which matches suitably the condition for the satisfaction of such a temporal logic specification. The eventuality property can be established through barrier certificates, which we derive for the considered hybrid system framework. Using a hybrid barrier certificate, we propose a solution to the original problem. Simulations illustrate the effectiveness of the proposed method.

A hybrid barrier certificate approach to satisfy linear temporal logic specifications

Bisoffi, Andrea;
2018-01-01

Abstract

In this work we formulate the satisfaction of a (syntactically co-safe) linear temporal logic specification on a physical plant through a recent hybrid dynamical systems formalism. In order to solve this problem, we introduce an extension to such a hybrid system framework of the so-called eventuality property, which matches suitably the condition for the satisfaction of such a temporal logic specification. The eventuality property can be established through barrier certificates, which we derive for the considered hybrid system framework. Using a hybrid barrier certificate, we propose a solution to the original problem. Simulations illustrate the effectiveness of the proposed method.
2018
2018 Annual American Control Conference (ACC)
978-1-5386-5428-6
eventuality property, hybrid barrier certificate approach, physical plant, hybrid system framework, hybrid dynamical system formalism, syntactically co-safe linear temporal logic specifications
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11311/1226448
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