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A multiagent system approach for a self-reconfigurable electric power distribution system.

机译:一种用于可自重构配电系统的多代理系统方法。

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Electric power distribution systems (EPDS) can be found almost everywhere, from ship power systems to data centers. In many critical applications, it is necessary to maintain minimal operating capabilities under fault conditions. Therefore, it is necessary to develop energy distribution control techniques, which allow the implementation of a self-reconfigurable EPDS. This research project focuses on the application of MultiAgent Systems (MAS) to develop a self-reconfigurable EPDS. MAS are composed of multiple interacting software elements, known as agents. An agent is an abstraction that describes autonomous software that "acts on behalf of" a user or another program. A prototype of a MAS is proposed to reconfigure an electric system in order to maximize the number of served loads with highest priority. We used three simulation test systems based on zonal architecture. The test systems were simulated using Matlab(TM) Simulink(TM) - SimPower-Systems toolbox, and the MAS was implemented using Java(TM) programming language and JADE platform.
机译:从船舶动力系统到数据中心,几乎每个地方都可以找到电力分配系统(EPDS)。在许多关键应用中,有必要在故障条件下保持最小的运行能力。因此,有必要开发能量分配控制技术,以实现可自我重构的EPDS。该研究项目专注于MultiAgent Systems(MAS)的应用,以开发可自我重新配置的EPDS。 MAS由多个交互软件元素(称为代理)组成。代理是描述“代表”用户或另一个程序运行的自治软件的抽象。提出了MAS的原型来重新配置电气系统,以使具有最高优先级的服务负载数量最大化。我们使用了三个基于区域架构的模拟测试系统。使用Matlab SimulinkTM-SimPower-Systems工具箱模拟了测试系统,并使用JavaTM编程语言和JADE平台实施了MAS。

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