GPRKEY&一种新的MANET组密钥重密钥技术

Chanthirika Shanmuganathan, P. Raviraj
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引用次数: 1

摘要

移动自组织网络(MANET)是一组自主节点或移动设备,它们可以以各种方式排列自己并在没有严格网络管理的情况下工作。确保移动自组织网络的安全是一个具有挑战性的问题,移动自组织网中的大多数应用都涉及面向组的通信。大多数加密技术用于为MANET提供安全性。如果密钥管理薄弱,加密技术将不是有效的安全机制。MANET中由于多播和前向和后向保密而导致的分组丢失问题导致了移动性。因此,我们对这个问题进行了研究,并提出了一种克服这种情况的方法。在分析这种情况时,我们发现频繁的重新密钥会导致巨大的消息开销,从而提高能源利用率。利用现有的密钥管理技术,它会导致频繁的断开连接和移动性问题。因此,一个高效的组播组密钥管理将有助于克服上述问题。在本文中,我们提出了一种新的组密钥重密钥技术GPRKEY(具有周期性重密钥的组密钥)来处理重密钥的可扩展性问题,并分析了新提出的使用密钥树的密钥管理方法的性能。在这种方法中,我们使用定期重新密钥来增强可扩展性并避免不同步问题。我们使用子树,并使用合并算法和周期性重密钥算法对它们进行组合。通过NS-2仿真对GPRKEY进行了评估,并与现有的密钥管理技术OFT(单向功能树)和LKH(逻辑密钥层次结构)进行了比较。通过详细的研究和仿真,分析了重密钥协议的安全性和性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
GPRKEY - A NOVEL GROUP KEY REKEYING TECHNIQUE FOR MANET
A Mobile Ad hoc Network (MANET) is a collection of autonomous nodes or mobile devices that can arrange themselves in various ways and work without strict network administration. Ensuring security in mobile ad hoc networks is a challenging issue and most of the applications in mobile ad hoc networks involve group oriented communication. Mostly cryptographic techniques are used to provide the security to MANETs. Cryptographic techniques will not be efficient security mechanism if the key management is weak. The issue of packet loss in MANET that is caused due to multi casting and backward and forward secrecy results in mobility. Hence, we investigate on this issue and propose a method to overcome this scenario. On analysing the situation we find that frequent rekeying leads to huge message overhead and hence increases energy utilization. With the existing key management techniques it causes frequent disconnections and mobility issues. Therefore, an efficient multi casting group key management will help to overcome the above problems. In this paper we propose a novel group key rekeying technique named GPRKEY (Group key with Periodic ReKEYing) deal with scalability issue of rekeying and also analyze the performance of the newly proposed key management method using key trees. In this approach we use the periodic rekeying to enhance the scalability and avoid out of sync problems. We use sub trees and combine them using the merging algorithm and periodic rekeying algorithm. The GPRKEY is evaluated through NS-2 simulation and compared with existing key management techniques OFT (Oneway Function Tree) and LKH (Logical Key Hierarchy). The security and performance of rekeying protocols are analyzed through detailed study and simulation.
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