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To avoid load peaks periods and reduce the electricity bill price, it is necessary to jeopardize appliances models and requirements. That allows controlling equipment energy needs and customizing the global home consumption profile. This paper gives smart home appliances modeling aiming to generate their energy power profiles according to local environmental circumstances. Moreover, the proposed models...
In this paper we give an adaptation of the standard FIPA Contract net Protocol for a multi-agent based smart home simulation. Smart home appliances are controlled by software agents that can communicate their needs and un/satisfaction to the Home Energy Manager Agent. The problem we encountered with FIPA specification is that each interacting agent is either initiator or participant during his life...
This paper presents architecture for smart grid elements and concepts modeling. We choose the Multi-Agent Systems (MAS) technology, because it meets this new generation network's requirements and objectives. There is a need of potential redesign and jeopardize of the traditional electrical networks. As several huge blackouts happened this last decade, they are being gradually left in favor of smart...
In this paper, we present a new approach for demand side management in Smart Grid. The Multi Agent Systems (MAS) Technology is actually the most suitable to face its emerging challenges, such as complex management and control, self-healing with necessity of collaboration and communication to solve a local or global problem, and many other problematic aspects. Nowadays, there is no complete environment...
This paper presents algorithms and architecture models for a home energy management system. It's based on customers' behavior that is modeled by a decision-making chain, and smart appliances' use for demand side management. The proposed architecture is scalable and extensible to upper levels of smart grid as the development approach used is bottom-up. Once the model is validated for home use, we can...
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