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A Replay Attack-Resistant 0-RTT Key Management Scheme for Low-Bandwidth Smart Grid Communications

机译:用于低带宽智能电网通信的抗重放攻击的0-RTT密钥管理方案

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With the increasing digitization of different components of Smart Grid, there is an ongoing effort to design secure protocols and deploy them for different applications. A major need along with these efforts is to deal with key management for a large number of devices which are resource constrained and deployed within a very legacy communication environment. As the utilities rightly request to build the new systems on top of the legacy systems with limited investment, the research community needs to re-think the adaptation of the existing security approaches to such non- traditional environments. Assuming a legacy (i.e., 2G) radio communication infrastructure with bandwidths in the order of kilobits, the goal of this study is to enable basic security services in Smart Grid via a lightweight key management scheme. Specifically, the proposed scheme provides mutual authentication, key agreement, and key refreshment by utilizing a 0-RTT message exchange that relies neither on PKI or session resumption. It depends on dynamic hash chains to enable authentication and prevent any replay attacks. The evaluations results show that the proposed scheme out-performs other conventional approaches such as TLS and IKE and is suitable for Smart Grid legacy environments.
机译:随着智能电网中不同组件的数字化程度不断提高,人们正在努力设计安全协议并将其部署到不同的应用程序中。这些努力的主要需求是处理大量设备的密钥管理,这些设备在非常传统的通信环境中受到资源限制和部署。当公用事业正确地要求以有限的投资在旧系统之上构建新系统时,研究界需要重新考虑使现有安全方法适应这种非传统环境。假设带宽为千位的遗留(即2G)无线电通信基础架构,本研究的目标是通过轻量级密钥管理方案在智能电网中启用基本安全服务。具体地说,提出的方案通过利用既不依赖于PKI也不恢复会话的0-RTT消息交换来提供相互认证,密钥协商和密钥刷新。它依靠动态哈希链来启用身份验证并防止任何重放攻击。评估结果表明,该方案优于TLS和IKE等其他常规方法,适用于智能电网遗留环境。

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