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A certificateless public key encryption based return routability protocol for next-generation IP mobility to enhance signalling security and reduce latency

机译:基于无证书公钥加密的返回路由协议,用于下一代IP移动性,以增强信令安全性并减少延迟

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IPv6 mobility is an IETF standard that has added roaming capabilities of mobile node (MN). It allows MNs to travel from one network to another without any distraction in communication service. MNs register their current location to home stations and correspondent hosts via a process known as binding update.In IPv6 mobility, return routability protocol (RRP) is a standard procedure for updating the current location of MNs through binding update message to their communicants. However, RRP has several security threats and issues. Subsequently, RRP was integrated with identity-based encryption for improvement of security. Nevertheless, it suffers from some limitations such as inherent key escrow problem, lack of key revocation, high computational load and latency while providing security. Hence, this paper proposes a novel approach called optimised RRP using certificateless public key encryption to address these issues. The proposed protocol is simulated and validated using Automated Validation of Internet Security Protocols and Applications (AVISPA) – a model checker. Finally, the simulation and numerical results illustrate the extent to which the proposed protocol surpasses the existing method in terms of enhanced security and significant reduction in communication payload with minimised latency.
机译:IPv6移动性是一种IETF标准,已添加了移动节点(MN)的漫游功能。它允许MN从一个网络传播到另一个网络,而不会分散通信服务的注意力。 MN通过称为绑定更新的过程将其当前位置注册到归属站和相应的主机。在IPv6移动性中,返回路由协议(RRP)是通过将MN的更新消息绑定到其通信者来更新MN当前位置的标准过程。但是,RRP存在一些安全威胁和问题。随后,RRP与基于身份的加密集成在一起,以提高安全性。但是,它具有一些局限性,例如固有的密钥托管问题,缺少密钥吊销,高计算量和延迟,同时还提供了安全性。因此,本文提出了一种使用无证书公共密钥加密的称为优化RRP的新颖方法来解决这些问题。所提议的协议使用Internet安全协议和应用程序的自动验证(AVISPA)(一种模型检查器)进行仿真和验证。最后,仿真和数值结果说明了在提高安全性和显着减少通信有效负载并最大程度减少等待时间方面,所提出的协议在何种程度上超越了现有方法。

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