Cyber-physical interdependency in smart grid

H. Zeynal, Sima Ahmadpour
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引用次数: 1

Abstract

The edge of technology has yet to come at a very sophisticated level where hardware and software are integrated to form a sturdy system. High efficiently, self-reliance and self-healing are of main concerns when age of smart grids appeared. Smart grids play a crucial role in delivering seamless power supply efficiently with higher resiliency. However, the mellifluous operation of this grid, as a physical system, is subjugated by a cyborg network which contains data communication devices and it associated protocols. The resultant system which is a two coexistent incongruous network introduces a plethora of operational hurdles by far the interdependency that is a thorny issue. This work attempts simulating the codependent operation of both network elements when executing as a smart grid. To facilitate the modeling and analysis, a GUI tool is developed to make the simulation user-friendly and make the initial promises that every proposition towards optimizing smart grid has to take into account co-optimization of both networks elements.
智能电网中的网络物理相互依赖
技术的边缘还没有达到一个非常复杂的水平,硬件和软件集成在一起,形成一个坚固的系统。智能电网时代的到来,人们主要关注的是高效、自主和自愈。智能电网在高效无缝供电和高弹性供电方面发挥着至关重要的作用。然而,这个网格的流畅运行,作为一个物理系统,被一个包含数据通信设备及其相关协议的半机械人网络所征服。由此产生的系统是一个两个共存的不协调的网络,引入了大量的操作障碍,到目前为止,相互依赖是一个棘手的问题。这项工作试图模拟两个网络元素在作为智能电网执行时的相互依赖操作。为了便于建模和分析,开发了一个GUI工具,使仿真对用户友好,并做出了初始承诺,即优化智能电网的每个提议都必须考虑两个网元的协同优化。
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