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A Security Framework for SDN-Enabled Smart Power Grids

机译:启用S​​DN的智能电网的安全框架

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Emerging software defined networking (SDN) paradigm provides flexibility in controlling, managing, and dynamically reconfiguring smart grid networks. It can be seen in the literature that considerably less attention has been given to provide security in SDN-enabled smart grid networks. Most of the efforts focus on protecting smart grid networks against various forms of outsider attacks only by providing consistent access control, applying efficient and effective security policies, and managing and controlling the network through the use of a centralized SDN controller. Furthermore, centralized SDN controllers are plagued by reliability and security issues. This paper presents a framework with multiple SDN controllers and security controllers that provides a secure and robust smart grid architecture. The proposed framework deploys a local IDS in a substation to collect the measurement data periodically and to monitor the control-commands that are executed on SCADA slaves. A global IDS in control center collects the measurement data from the substations and estimates the state of the smart grid system by utilizing the theory of differential evolution. The global IDS further verifies the consequences of control-commands issued by SDN controller and SCADA master. An alarm is generated upon detection of an attacker or unsteady state of the smart grid system. The framework also deploys light-weight identity based cryptography to protect the smart grid network from outside attacks. Performance comparison and initial simulation result have been presented to show that the proposed framework is effective as compared to existing security frameworks for SDN-enabled smart grids.
机译:新兴的软件定义网络(SDN)范例为控制,管理和动态重新配置智能电网提供了灵活性。从文献中可以看出,在启用SDN的智能电网网络中提供安全性方面的关注已大大减少。大多数工作仅致力于通过提供一致的访问控制,应用高效有效的安全策略以及通过使用集中式SDN控制器来管理和控制网络,来保护智能电网网络免受各种形式的外部攻击。此外,集中式SDN控制器受到可靠性和安全性问题的困扰。本文提出了一个具有多个SDN控制器和安全控制器的框架,该框架提供了安全而强大的智能网格体系结构。拟议的框架在变电站中部署本地IDS,以定期收集测量数据并监视在SCADA从站上执行的控制命令。控制中心中的全球IDS收集来自变电站的测量数据,并利用差分演化理论估算智能电网系统的状态。全局IDS进一步验证了SDN控制器和SCADA主设备发出的控制命令的后果。在检测到攻击者或智能电网系统的不稳定状态时会生成警报。该框架还部署了基于轻量级身份的加密技术,以保护智能电网免受外部攻击。性能比较和初始仿真结果已经表明,与现有的支持SDN的智能电网安全框架相比,该框架是有效的。

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