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A 3 Tier Spectrum Management Scheme and Security Assessment in Synchrophasors

机译:同步相量的三层频谱管理方案和安全性评估

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The electric utility industries and distributed energy systems heavily relies on internet, as the primary mode of communication to deliver energy related information through interconnected sensors such as Digital Fault Recorders, Synchrophasors or Phasor measurement units (PMU). These sensors communicate in both wireless and wired network to a centralized system. As studied in many literatures, the internet is vulnerable to many cyber threats [1]. There is an immediate need to find solution on spectrum crunch for communication framework and how to defend against cyber-attacks while sustaining energy delivery function specifically carried by Phasor Measurement Units (PMUs) and Phasor Data concentrators (PDC) [2]. The paper uses the concept of exploiting antenna directivity by assigning the same frequency to all three directions, and thus co-channel isolation will be increased, and eventually reducing the interference and increasing the channel capacity. The paper also discuss the security challenges that are required in existing TCP/IP networks for PMU and PDC devices.
机译:电力行业和分布式能源系统高度依赖互联网,这是通过互连传感器(例如数字故障记录仪,同步相量或相量测量单元(PMU))传递与能源相关的信息的主要通信方式。这些传感器通过无线和有线网络与集中式系统通信。正如许多文献所研究的那样,互联网容易受到许多网络威胁的攻击[1]。迫切需要找到通信框架的频谱紧缩解决方案,以及如何在维持相量测量单元(PMU)和相量数据集中器(PDC)专门承担的能量传递功能的同时,防御网络攻击[2]。本文使用了通过向三个方向分配相同的频率来利用天线方向性的概念,因此将增加同频隔离度,并最终减少干扰并增加信道容量。本文还讨论了PMU和PDC设备在现有TCP / IP网络中所需的安全性挑战。

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