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Design and Implementation of Security Gateway for Synchrophasor based Real-time Control and Monitoring in Smart Grid

机译:基于同步相量的智能电网实时控制与监控安全网关的设计与实现

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摘要

Synchrophasor technology has numerous applications ranging from simple grid monitoring/visualization to real-time protection and control. Most legacy Phasor Measurement Units (PMUs) and Phasor Data Concentrators (PDCs) deployed in power grids support the IEEE C37.118.2 communication framework, which is highly vulnerable to cyber attacks due to lack of inherent security mechanisms. The IEC 61850-90-5 recently emerged as new communication framework with support for security features but its use in commercial devices is still very limited. The replacement of legacy PMUs/PDCs in power grids is a big challenge due to cost and deployment complexity. The concept of a gateway has recently been proposed in the literature to enable IEEE C37.118.2 compatible PMUs to send data in IEC 61850-90-5 format. However, the published gateway has limited features and also lacks security functionalities. This paper addresses security, interoperability, and integration issues between legacy and state-of-the-art phasor devices through the design of a security gateway. The security gateway is implemented with flexibility in mind and can be used for PMUs as well as PDCs under different configurations. It provides: 1) protocol conversion functionalities (from IEEE C37.118.2 to IEC 61850-90-5 and vice versa) and 2) security functionalities based on IEC recommended Group Domain Of Interpretation (GDOI) security mechanism. The security gateway is very compact in size, based on low-power ARM processor and inexpensive to be deployed in power systems. Through detailed experimental evaluation with real PMU data, this paper also validated the suitability of the security gateway for different types of synchrophasor applications with strict latency and data rate requirements.
机译:同步相量技术具有许多应用,从简单的网格监视/可视化到实时保护和控制。部署在电网中的大多数传统相量测量单元(PMU)和相量数据集中器(PDC)支持IEEE C37.118.2通信框架,由于缺乏固有的安全机制,该框架极易受到网络攻击。 IEC 61850-90-5最近作为支持安全功能的新通信框架出现,但在商业设备中的使用仍然非常有限。由于成本和部署复杂性,在电网中替换传统PMU / PDC是一个巨大的挑战。最近在文献中提出了网关的概念,以使IEEE C37.118.2兼容的PMU能够以IEC 61850-90-5格式发送数据。但是,已发布的网关功能有限,并且缺乏安全功能。本文通过安全网关的设计解决了旧式和最新相量设备之间的安全性,互操作性和集成问题。安全网关的实现考虑到灵活性,可以用于PMU以及不同配置下的PDC。它提供:1)协议转换功能(从IEEE C37.118.2到IEC 61850-90-5,反之亦然),以及2)基于IEC推荐的解释组域(GDOI)安全机制的安全功能。该安全网关基于低功耗ARM处理器,尺寸非常紧凑,并且价格低廉,可部署在电源系统中。通过使用真实PMU数据进行详细的实验评估,本文还验证了安全网关对具有严格延迟和数据速率要求的不同类型同步相量应用的适用性。

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