无线传感器网络中密钥预分配优化的图论方法

A. C. Chan
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引用次数: 4

摘要

在无线传感器网络中,为密钥预分配方案寻找一个最优的密钥分配(受给定约束)是一个困难的任务。因此,大多数实际方案都是基于概率密钥分配,这导致次优方案需要密钥存储在节点总数中呈线性。引入了一个图论框架来研究无线传感器网络密钥预分配方案的密钥存储、平均密钥路径长度(与电池消耗直接相关)和弹性(对受损节点)之间的基本权衡。基于所提出的框架,导出了给定平均密钥路径长度的密钥存储下界。给出了妥协概率的上界。该框架还导致设计具有与下界相同顺序的存储复杂度的密钥分配方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A graph theoretic approach for optimizing key pre-distribution in wireless sensor networks
Finding an optimal key assignment (subject to given constraints) for a key predistribution scheme in wireless sensor networks is a difficult task. Hence, most of the practical schemes are based on probabilistic key assignment, which leads to sub-optimal schemes requiring key storage linear in the total number of nodes. A graph theoretic framework is introduced to study the fundamental tradeoffs between key storage, average key path length (directly related to the battery consumption) and resilience (to compromised nodes) of key predistribution schemes for wireless sensor networks. Based on the proposed framework, a lower bound on key storage is derived for a given average key path length. An upper bound on the compromising probability is also given. This framework also leads to the design of key assignment schemes with a storage complexity of the same order as the lower bound.
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