Smart Grid applications with IEC 61499 reference architecture

G. Zhabelova, Sandeep Patil, Chen-Wei Yang, V. Vyatkin
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引用次数: 15

Abstract

This paper presents implementation of the Distributed Grid Intelligence (DGI) applications such as Intelligent Fault Management and Load Balancing using IEC61499 reference architecture. This enables system level design of distributed applications with a direct pathway to deployment to hardware. The use of IEC 61499 improves scalability, re-configurability and maintainability of automation software. Both applications were verified using co-simulation approach: control and power system simulated on PCs, and power system simulation on a PC networked with the number of distributed hardware running control algorithm. Both DGI applications were deployed to commercial programmable automation devices and embedded controllers. The use of IEC 61499 facilitates deployment of hardware independent function block model to the variety of compliant hardware. The paper also discusses distributed SCADA concept with IEC61499 implemented with the so-called Composite Automation Type (CAT) function blocks which combine functional and visual components. These blocks are used to implement human-machine interface of the FREEDM Smart Grid demonstrator reacting on plugging and unplugging of energy resources.
智能电网应用与IEC 61499参考架构
本文介绍了基于IEC61499参考体系结构的分布式网格智能(DGI)应用的实现,如智能故障管理和负载均衡。这使得分布式应用程序的系统级设计具有直接部署到硬件的途径。IEC 61499的使用提高了自动化软件的可扩展性、可重构性和可维护性。采用联合仿真方法验证了两种应用:在PC上模拟控制和电力系统,以及在PC上联网的电力系统仿真,其中分布式硬件运行控制算法。这两种DGI应用程序都被部署到商业可编程自动化设备和嵌入式控制器中。使用IEC 61499便于将独立于硬件的功能块模型部署到各种兼容的硬件上。本文还讨论了分布式SCADA的概念与IEC61499实现的所谓的复合自动化类型(CAT)功能块,结合功能和视觉组件。这些模块用于实现FREEDM智能电网演示器对能源插拔反应的人机界面。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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