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Smart Grid Infrastructure Using a Hybrid Network Architecture

机译:使用混合网络架构的智能电网基础架构

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Smart grid can be defined as a modern electric power grid infrastructure for improved efficiency, reliability and safety, with smooth integration of renewable and alternative energy sources through automated control and modern communications technologies. The increase need for more effective power electrical systems control turned the development of smart grids, the main object of study for many researchers. This paper proposes a digital system for condition monitoring, diagnosis and supervisory control applied to smart grids. The system is based on hybrid network architecture (HNA), consisting of a wired infrastructure, a wireless sensor network (WSN), a power line communications (PLC) and a controller area network (CAN). The system is based on three hardware topologies: remote data acquisition units (RDAUs), intelligent sensors modules (ISMs) and a PLC modem. The basic characteristics are: a) easy/low cost implementation, b) easy to set up by user, c) easy implementation of redundant routines (security), d) portability/versatility, and e) open system. To validate the developed system, it was implanted in one underground electric substation power distribution, characterized as an extremely hostile environment for supervisory control applications. In this application, the main challenge is to establish a communication system installed inside the substation with the outside (operations center—OC) considering that there are not commercial solutions appropriate to solve completely this problem.
机译:智能电网可以定义为现代电网基础设施,可通过自动控制和现代通信技术将可再生能源和替代能源平滑集成,从而提高效率,可靠性和安全性。对更有效的电力电气系统控制的需求的增长推动了智能电网的发展,这是许多研究人员的主要研究目标。本文提出了一种用于智能电网的状态监测,诊断和监督控制数字系统。该系统基于混合网络架构(HNA),由有线基础设施,无线传感器网络(WSN),电力线通信(PLC)和控制器局域网(CAN)组成。该系统基于三种硬件拓扑:远程数据采集单元(RDAU),智能传感器模块(ISM)和PLC调制解调器。基本特征是:a)易于实现/成本低廉; b)易于用户设置; c)易于实现冗余例程(安全性); d)可移植性/多功能性; e)开放系统。为了验证开发的系统,将其植入了一个地下变电站配电系统,该系统对于监控应用而言是极为恶劣的环境。在此应用程序中,主要挑战是要建立一个与变电站内部(外部)(运营中心OC)一起安装的通信系统,考虑到没有适合完全解决此问题的商业解决方案。

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