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An enhanced public key infrastructure to secure smart grid wireless communication networks

机译:增强的公共密钥基础设施,可保护智能电网无线通信网络的安全

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It is expected that the smart grid will radically add new functionalities to legacy electrical power systems. However, we believe that this will in turn introduce many new security risks. With the smart grid??s backbone communication networks and subnetworks, there are possible scenarios when these subnetworks can become vulnerable to attacks. Ensuring security in these networks is challenging because most devices are resource constrained. In addition, different protocols that are used in these networks use their own set of security requirements. In this article, the security requirements of smart grid communication networks are firstly identified. We then point out that although public key infrastructure (PKI) is a viable solution, it has some difficulties to satisfy the requirements in availability, privacy preservation, and scalability. To complement the functions of PKI, we introduce some novel mechanisms so that those security requirements can be met. In particular, we propose a mechanism to efficiently resist Denial-of-Service (DoS) attacks, and some suggestions to the security protocol design for different application categories.
机译:预计智能电网将为传统电力系统从根本上增加新功能。但是,我们认为,这反过来会带来许多新的安全风险。使用智能电网的骨干通信网络和子网,在某些情况下这些子网可能容易受到攻击。由于大多数设备都受到资源的限制,因此确保这些网络的安全性具有挑战性。另外,这些网络中使用的不同协议使用它们自己的一组安全要求。本文首先确定了智能电网通信网络的安全要求。然后,我们指出,尽管公钥基础结构(PKI)是可行的解决方案,但要满足可用性,隐私保护和可伸缩性方面的要求仍然存在一些困难。为了补充PKI的功能,我们引入了一些新颖的机制,以便可以满足这些安全性要求。特别是,我们提出了一种有效抵抗拒绝服务(DoS)攻击的机制,并针对不同应用类别的安全协议设计提出了一些建议。

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    《IEEE Network》 |2014年第1期|10-16|共7页
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