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Routing Based Multi-Agent System for Network Reliability in the Smart Microgrid

机译:智能微电网中基于路由的多代理系统网络可靠性

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摘要

Microgrids help to achieve power balance and energy allocation optimality for the defined load networks. One of the major challenges associated with microgrids is the design and implementation of a suitable communication-control architecture that can coordinate actions with system operating conditions. In this paper, the focus is to enhance the intelligence of microgrid networks using a multi-agent system while validation is carried out using network performance metrics i.e., delay, throughput, jitter, and queuing. Network performance is analyzed for the small, medium and large scale microgrid using Institute of Electrical and Electronics Engineers (IEEE) test systems. In this paper, multi-agent-based Bellman routing (MABR) is proposed where the Bellman–Ford algorithm serves the system operating conditions to command the actions of multiple agents installed over the overlay microgrid network. The proposed agent-based routing focuses on calculating the shortest path to a given destination to improve network quality and communication reliability. The algorithm is defined for the distributed nature of the microgrid for an ideal communication network and for two cases of fault injected to the network. From this model, up to 35%–43.3% improvement was achieved in the network delay performance based on the Constant Bit Rate (CBR) traffic model for microgrids.
机译:微电网有助于为定义的负载网络实现功率平衡和能量分配的最优性。与微电网相关的主要挑战之一是设计和实现合适的通信控制体系结构,该体系结构可以将动作与系统操作条件进行协调。在本文中,重点是在使用网络性能指标(即延迟,吞吐量,抖动和排队)进行验证的同时,使用多代理系统增强微电网网络的智能。使用电气和电子工程师协会(IEEE)测试系统分析小型,中型和大型微电网的网络性能。在本文中,提出了基于多主体的Bellman路由(MABR),其中Bellman-Ford算法满足系统操作条件,以命令安装在覆盖微电网网络上的多个主体的行为。所提出的基于代理的路由专注于计算到达给定目的地的最短路径,以提高网络质量和通信可靠性。针对理想通信网络和两种故障注入网络的情况,针对微电网的分布式性质定义了该算法。通过此模型,基于微电网的恒定比特率(CBR)流量模型,网络延迟性能提高了35%–43.3%。

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