Formal Analysis for Dependable Supervisory Control and Data Acquisition in Smart Grids

M. Rahman, A. Jakaria, E. Al-Shaer
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引用次数: 12

Abstract

Smart grids provide innovative and efficient energy management services that offer operational reliability. The Supervisory Control and Data Acquisition (SCADA) system is a core component of a smart grid. Unlike the traditional cyber networks, these components consist of heterogeneous devices, such as intelligent electronic devices, programmable logic controllers, remote terminal units, control servers, routing and security devices, etc. SCADA devices communicate with one another under various communication protocols, physical media, and security properties. Failures or attacks on such networks have the potential of data unavailability and false data injection causing incorrect system estimations and control decisions leading to critical damages including power outages and destruction of equipment. In this work, we develop an automated security and resiliency analysis framework for SCADA in smart grids. This framework takes smart grid configurations and organizational security and resiliency requirements as inputs, formally models configurations and various security constraints, and verifies the dependability of the system under potential contingencies. We demonstrate the execution of this framework on an example problem. We also evaluate the scalability of the framework on synthetic SCADA systems.
智能电网可靠监控与数据采集的形式化分析
智能电网提供创新和高效的能源管理服务,提供运行可靠性。监控与数据采集(SCADA)系统是智能电网的核心组成部分。与传统的网络网络不同,这些组件由异构设备组成,如智能电子设备、可编程逻辑控制器、远程终端单元、控制服务器、路由和安全设备等。SCADA设备在各种通信协议、物理介质和安全属性下相互通信。对此类网络的故障或攻击有可能导致数据不可用和错误数据注入,从而导致错误的系统估计和控制决策,从而导致包括停电和设备破坏在内的重大损害。在这项工作中,我们为智能电网中的SCADA开发了一个自动化的安全和弹性分析框架。该框架以智能电网配置和组织安全与弹性需求为输入,对配置和各种安全约束进行形式化建模,并验证系统在潜在突发事件下的可靠性。我们将在一个示例问题上演示该框架的执行。我们还评估了该框架在综合SCADA系统上的可扩展性。
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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