AbstractAmbient systems are composed of many interacting entities, and their behaviour is constantly changing. Under these conditions, static models are insufficient to understand and control such systems. In this paper, we investigate the possibility to generate real-time dynamic model of an ambient system. For this, we present AMOEBA, a multi-agent system designed to address this problem. It is based on a set of cooperative mechanisms from the Adaptive Multi-Agent System theory. Experiments on simulated physical systems highlight the interesting properties of AMOEBA
Self-adaptive systems are distributed computing systems composed of different components that can ad...
Formal modelling of Multi-Agent Systems (MAS) is a challenging task due to high complexity, interact...
Our research investigates adaptive Multi-Agents Systems (MAS) in open environment. We are interested...
AbstractAmbient systems are composed of many interacting entities, and their behaviour is constantly...
Abstract: This paper highlights the benefits of using cooperation as the engine of adaptation and ro...
International audienceDesigning teams which have a task to execute in a very dynamic environment is ...
The body structure of snakes is composed of numerous natural components thereby making it resilient,...
AbstractAmbient systems are populated by many heterogeneous devices to provide adequate services to ...
In complex and changing environments, MASs (Multi-Agent Systems) have to be faced with many challeng...
In this paper we propose a methodological approach for tackling the early design stages of self-orga...
Collective behaviour in nature provides a source of inspiration for engineering artificial systems (...
In this contribution, we propose an adaptation-drivenmethodology for the technical design and implem...
Abstract—With the advent of embedded and mobile computing techniques, software systems are increasin...
In this work we present an evolving system of agents which interact with each other in game theoreti...
Multi-agent systems are highly dynamic since the agents ’ abilities and the system configuration oft...
Self-adaptive systems are distributed computing systems composed of different components that can ad...
Formal modelling of Multi-Agent Systems (MAS) is a challenging task due to high complexity, interact...
Our research investigates adaptive Multi-Agents Systems (MAS) in open environment. We are interested...
AbstractAmbient systems are composed of many interacting entities, and their behaviour is constantly...
Abstract: This paper highlights the benefits of using cooperation as the engine of adaptation and ro...
International audienceDesigning teams which have a task to execute in a very dynamic environment is ...
The body structure of snakes is composed of numerous natural components thereby making it resilient,...
AbstractAmbient systems are populated by many heterogeneous devices to provide adequate services to ...
In complex and changing environments, MASs (Multi-Agent Systems) have to be faced with many challeng...
In this paper we propose a methodological approach for tackling the early design stages of self-orga...
Collective behaviour in nature provides a source of inspiration for engineering artificial systems (...
In this contribution, we propose an adaptation-drivenmethodology for the technical design and implem...
Abstract—With the advent of embedded and mobile computing techniques, software systems are increasin...
In this work we present an evolving system of agents which interact with each other in game theoreti...
Multi-agent systems are highly dynamic since the agents ’ abilities and the system configuration oft...
Self-adaptive systems are distributed computing systems composed of different components that can ad...
Formal modelling of Multi-Agent Systems (MAS) is a challenging task due to high complexity, interact...
Our research investigates adaptive Multi-Agents Systems (MAS) in open environment. We are interested...