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Security Framework for Wireless Communications in Smart Distribution Grid

机译:智能配电网中无线通信的安全框架

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Communication networks play a critical role in smart grid, as the intelligence of smart grid is built based on information exchange across the power grid. In power transmission segments of smart grid, wired communications are usually adopted to ensure robustness of the backbone power network. In contrast, for a power distribution grid, wireless communications provide many benefits such as low cost high speed links, easy setup of connections among different devices/appliances, and so on. Connecting power equipment, devices, and appliances through wireless networks is indispensable for a smart distribution grid (SDG). However, wireless communications are usually more vulnerable to security attacks than wired ones. Developing appropriate wireless communication architecture and its security measures is extremely important for an SDG. Thus, these two problems are investigated in this paper. Firstly, a wireless communication architecture is proposed for an SDG based on wireless mesh networks (WMNs). The security framework under this communication architecture is then analyzed. More specifically, potential security attacks and possible counter-attack measures are studied. Within the security framework, a new intrusion detection and response scheme, called smart tracking firewall, is developed to meet the special requirements of SDG wireless communications. Performance results show that the smart tracking firewall can quickly detect and respond to security attacks and is thus suitable for real-time operation of an SDG.
机译:通信网络在智能电网中起着至关重要的作用,因为智能电网的智能是基于整个电网之间的信息交换而构建的。在智能电网的输电段中,通常采用有线通信以确保骨干电网的鲁棒性。相反,对于配电网,无线通信具有许多优势,例如低成本高速链路,易于在不同设备/设备之间建立连接等。对于智能配电网(SDG),通过无线网络连接电力设备,设备和家用电器是必不可少的。但是,无线通信通常比有线通信更容易受到安全攻击。开发适当的无线通信体系结构及其安全措施对于SDG极为重要。因此,本文研究了这两个问题。首先,提出了一种基于无线网状网络(WMN)的SDG无线通信架构。然后分析此通信体系结构下的安全框架。更具体地说,研究了潜在的安全攻击和可能的反击措施。在安全框架内,开发了一种新的入侵检测和响应方案,称为智能跟踪防火墙,以满足SDG无线通信的特殊要求。性能结果表明,智能跟踪防火墙可以快速检测并响应安全攻击,因此适合于SDG的实时运行。

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