International audienceThe aim of the presented work is the control of Timed Event Graph to meet tight temporal constraints. The problem of temporal constraints is formulated in terms of control of linear Max-Plus models. First, the synthesis of a control law that ensures the satisfaction of a single constraint for a single input system is presented. Then, the single input multi-constraints problem is tackled and finally, the method is extended to the multi-inputs, multi-constraints problem. The proposed method is illustrated on the example of a simple production process
In this paper, we study Discrete Events Dynamic Systems (DEDS) that can be modeled by a linear repre...
A class of timed discrete event systems can be modeled by using Timed-Event Graphs, a class of timed...
We deal with timed event graphs whose holding times associated with places are variable. Defining a ...
International audienceThe aim of the presented work is the control of Timed Event Graph to meet tigh...
International audienceWe consider a class of controlled timed event graphs subject to strict tempora...
26 pagesInternational audienceIn this paper, we propose a (max,+)-based method for the supervi- sion...
International audienceThe problem studied in this paper is the control of discrete event systems sub...
26 pagesInternational audienceIn this paper, we propose a (max,+)-based method for the supervi- sion...
International audienceA variety of problems in non-linear time-evolution systems such as manufacturi...
International audienceA variety of problems in non-linear time-evolution systems such as manufacturi...
This article deals with the control of discrete event systems subject to synchronization and delay p...
This paper deals with the control of discrete event systems subject to synchronization and time dela...
A variety of problems in non-linear time-evolution systems such as manufacturing plants, operations ...
This paper deals with the control of discrete event systems modelled by the Max-plus algebra. This a...
Max-plus algebra is a suitable algebraic setting to model discrete event systems involving synchroni...
In this paper, we study Discrete Events Dynamic Systems (DEDS) that can be modeled by a linear repre...
A class of timed discrete event systems can be modeled by using Timed-Event Graphs, a class of timed...
We deal with timed event graphs whose holding times associated with places are variable. Defining a ...
International audienceThe aim of the presented work is the control of Timed Event Graph to meet tigh...
International audienceWe consider a class of controlled timed event graphs subject to strict tempora...
26 pagesInternational audienceIn this paper, we propose a (max,+)-based method for the supervi- sion...
International audienceThe problem studied in this paper is the control of discrete event systems sub...
26 pagesInternational audienceIn this paper, we propose a (max,+)-based method for the supervi- sion...
International audienceA variety of problems in non-linear time-evolution systems such as manufacturi...
International audienceA variety of problems in non-linear time-evolution systems such as manufacturi...
This article deals with the control of discrete event systems subject to synchronization and delay p...
This paper deals with the control of discrete event systems subject to synchronization and time dela...
A variety of problems in non-linear time-evolution systems such as manufacturing plants, operations ...
This paper deals with the control of discrete event systems modelled by the Max-plus algebra. This a...
Max-plus algebra is a suitable algebraic setting to model discrete event systems involving synchroni...
In this paper, we study Discrete Events Dynamic Systems (DEDS) that can be modeled by a linear repre...
A class of timed discrete event systems can be modeled by using Timed-Event Graphs, a class of timed...
We deal with timed event graphs whose holding times associated with places are variable. Defining a ...