Establishing Pair-Wise Keys in Heterogeneous Sensor Networks

Patrick Traynor, Heesook Choi, G. Cao, Sencun Zhu, T. L. Porta
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引用次数: 105

Abstract

Many applications that make use of sensor networks require secure communication. Because asymmetric-key solutions are difficult to implement in such a resource-constrained environment, symmetric-key methods coupled with a priori key distribution schemes have been proposed to achieve the goals of data secrecy and integrity. These approaches typically assume that all sensors are similar in terms of capabilities, and hence deploy the same number of keys in all sensors in a network to provide the aforementioned protections. In this paper we demonstrate that a probabilistic unbalanced distribution of keys throughout the network that leverages the existence of a small percentage of more capable sensor nodes can not only provide an equal level of security but also reduce the consequences of node compromise. We demonstrate the effectiveness of this approach on small networks using a variety of trust models and then demonstrate the application of this method to very large systems. The approach and analysis presented in this paper can be applied to all protocols that use probabilistic keys including those that employ broadcast mechanisms, hash functions or polynomials for the generation of keys.
异构传感器网络中双密钥的建立
许多使用传感器网络的应用需要安全通信。由于非对称密钥解决方案难以在这种资源受限的环境中实现,因此提出了将对称密钥方法与先验密钥分发方案相结合来实现数据保密和完整性的目标。这些方法通常假设所有传感器在功能方面都相似,因此在网络中的所有传感器中部署相同数量的密钥以提供上述保护。在本文中,我们证明了整个网络中密钥的概率不平衡分布,利用一小部分更有能力的传感器节点的存在,不仅可以提供同等级别的安全性,还可以减少节点妥协的后果。我们使用各种信任模型证明了这种方法在小型网络上的有效性,然后演示了这种方法在非常大的系统中的应用。本文提出的方法和分析可以应用于所有使用概率密钥的协议,包括那些使用广播机制、哈希函数或多项式来生成密钥的协议。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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