传感器网络中密钥建立对等中介的两种变体

IF 0.6 Q4 COMPUTER SCIENCE, INTERDISCIPLINARY APPLICATIONS
Jingyuan Rao, M. Tu, Xuanjin Yang
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引用次数: 1

摘要

近年来,与传感器网络安全相关的问题是一个热门话题。特别是,由于传感器电池供电能量的限制,对称密码是传感器间秘密通信的合适选择之一,而非对称密码由于计算量大,消耗能量大,不适合进行加密。由于对称密码的使用,有许多研究论文集中在传感器网络中设计有效的密钥管理方案。由Chan和Perrig设计的PIKE是一个使用对等中介和他们预先安装的密钥将秘密信息从一个传感器传递到另一个传感器的方案。然而,他们没有考虑到传感器以非均匀方式分散的情况。此外,O(logn)足以使传感器网络实现扩展拓扑,而PIKE的存储开销为O(√n)。本文给出了PIKE的概括,以便为满足不同需求的开发人员提供更多选择。恒定存储协议(Constant Storage Protocol,简称CSP)消耗恒定的内存存储,更适合基于组的部署。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Two Variations of Peer Intermediaries for Key Establishment in Sensor Networks
Recently, the issue pertinent to sensor network security is a popular topic. Especially, due to the restriction of energy supplied by battery power of the sensors, symmetric cryptography is one of the suitable choices for the secret communication between sensors, while asymmetric cryptography is not appropriate because of its heavy loading on computation should consume a lot of energy. As a result of using symmetric cryptography, there are numerous research papers focusing on designing efficient key management scheme in sensor networks. PIKE designed by Chan and Perrig is a scheme using peer intermediaries and their pre-installed keys to deliver secret message from one sensor to another. However, they did not consider the case that the sensors are scattered in nonuniform way. Moreover, O(logn) is enough for sensor networks to achieve expander topology while PIKE has O(√n) storage overhead. This article gives generalizations of PIKE to offer more choices for developers under different requirements. The Constant Storage Protocol, abbreviated as CSP, costs constant memory storage and is more suitable for group-based deployment.
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来源期刊
International Journal of Digital Crime and Forensics
International Journal of Digital Crime and Forensics COMPUTER SCIENCE, INTERDISCIPLINARY APPLICATIONS-
CiteScore
2.70
自引率
0.00%
发文量
15
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