Securing Sensor Networks Using A Novel Multi-Channel Architecture

Chao Gui, Ashima Gupta, P. Mohapatra
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引用次数: 1

Abstract

In many applications of sensor networks, security is a very important issue. To be resistant against the various attacks, nodes in a sensor network can establish pairwise secret keys, authenticate all communications with cryptographic functions, and also apply secure information aggregation schemes or hop-by-hop filtering methods. However, these security measures can take considerable overhead in terms of storage, communication and computation, which are scarce resources in sensor nodes. Previously proposed security measures can only resist against a limited number of compromised nodes, which we define as the resistance level. In this paper, we propose a separate solution to any security measure. This technique either significantly reduces the overhead, or increases the resistance level without increasing overhead. The solution is based on a new "mixed multi-channel" (MMC) architecture. In this design, each node can only use one fixed channel. The whole network is thus divided into multiple "planes" by the different planes. Exploiting the characteristics of multi-channel communication, a series of methods are proposed, such as MMC-1, MMC-k and MMC-r. We then present designs to integrate the methods with current security measures, and analyze their resistance level and energy conservation.
利用新颖的多通道架构保护传感器网络
在传感器网络的许多应用中,安全是一个非常重要的问题。为了抵御各种攻击,传感器网络中的节点可以建立成对的密钥,使用加密功能对所有通信进行认证,还可以采用安全信息聚合方案或逐跳过滤方法。然而,这些安全措施在存储、通信和计算方面会带来相当大的开销,而这些资源在传感器节点中是稀缺资源。以前提出的安全措施只能抵抗有限数量的受损节点,我们将其定义为抵抗水平。在本文中,我们对任何安全措施都提出了单独的解决方案。这种技术要么显著降低了开销,要么在不增加开销的情况下增加了阻力水平。该解决方案基于一种新的“混合多通道”(MMC)架构。在这种设计中,每个节点只能使用一个固定通道。因此,整个网络被不同的平面划分为多个“平面”。利用多通道通信的特点,提出了MMC-1、MMC-k和MMC-r等一系列方法。然后,我们提出了将这些方法与当前的安全措施相结合的设计,并分析了它们的抵抗水平和节能性。
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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