基于稀疏随机编码的无线传感器网络安全服务

F. Delgosha, Erman Ayday, K. Chan, F. Fekri
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引用次数: 6

摘要

由于传感器节点的资源限制,为无线传感器网络提供安全服务的任务并不简单。攻击者可以发起各种攻击,包括窃听、伪造消息、丢包和注入噪声。在本文中,我们提出了随机编码安全(RCS),提供对上述所有攻击的保护。为此,该协议广泛利用了节点协作和数据冗余。此外,使用位置信息,我们既可以将对抗活动定位到受到攻击的区域,又可以增强向接收器发送数据的路由。在RCS中使用稀疏随机编码的新思想有两个目的。首先,每个节点通过计算接收到的数据包的随机线性组合来生成相关数据。因此,高概率地保证了接收端数据的可用性。第二个优点是在实际场景中实现RCS的可行性,在实际场景中,传感器之间的通信介质通常被建模为擦除信道。现有的协议不能轻易修改以适应这种现实情况。总的来说,RCS提供了许多安全服务,其计算和通信开销与其他方案相当
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Security Services in Wireless Sensor Networks Using Sparse Random Coding
The task of providing security services for wireless sensor networks is not trivial due to the resource constraints of the sensor nodes. An adversary may launch a wide range of attacks including eavesdropping, message forgery, packet dropping, and noise injection. In this paper, we propose random coding security (RCS) that provides protection against all the aforementioned attacks. For this purpose, the proposed protocol makes extensive use of node collaboration and data redundancy. Moreover, using location information, we both localize adversarial activities to the area under attack and enhance routing the data toward the sink. The objectives of using the novel idea of sparse random coding in RCS are twofold. First, every node generates correlated data by calculating random linear combinations of the received packets. Hence, the availability of the data at the receiver is guaranteed with a high probability. The second advantage is the feasibility of implementing the RCS in the real case scenario in which the communication media between the sensors is usually modeled as the erasure channel. The existing protocols cannot be trivially modified to suit this realistic situation. In the overall, RCS provides many security services with computation and communication overheads comparable with other schemes
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