基于多智能体的微电网能量管理系统

M. K. Perera, R. Disanayaka, E.M.C.S Kumara, W.M.C.S.B Walisundara, H. Priyadarshana, E. Ekanayake, K.T.M.U. Hemapala
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引用次数: 3

摘要

提出了一种基于多智能体系统的微电网能量管理系统的实现方法。在解决新兴的分布式发电概念时,微电网已被确定为集成的合适平台。对分布式可再生能源在微电网平台上的持续控制和监测至关重要。与复杂和传统的控制技术不同,多智能体系统概念为微电网提供了即插即用的控制特性。本文提出了一个具有5个主体主体的MAS,主要包括风力主体、太阳能主体、负载主体和服务器主体。建议的系统运行是基于通过可用的可再生能源的最佳负荷供应。本文采用Java代理开发环境对系统中代理之间的交互进行了仿真。为了实现多智能体系统的物理运行,实现了微电网试验台。本文的主要目的是讨论用于微电网应用的MAS的物理实现。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Multi Agent Based Energy Management System for Microgrids
This paper presents an implementation of a Multi Agent System based Energy Management System for a microgrid. In addressing the emerging distributed generation concept, microgrids have been identified as a suitable platform for integration. The continuous controlling and monitoring is essential for distributed renewable sources in a microgrid platform. Multi Agent System concept provides a plug and play controlling nature to a microgrid unlike complex and conventional controlling techniques. Here a MAS is proposed with five main agents, which mainly consists of a wind agent, a solar agent, load agents and a server agent. Proposed system operation is based on the optimum supply of loads through the available renewable sources. As presented in this paper the interaction between agents in the system is simulated through Java Agent Development Environment. A microgrid test bed is implemented, in order to apply Multi Agent System operation with physically implemented agents. The main purpose of this paper is to discuss the physical implementation of a MAS for a micro grid application.
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