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HHT-Based Security Enhancement Approach with Low Overhead for Coding-Based Reprogramming Protocols in Wireless Sensor Networks

机译:无线传感器网络中基于HHT的低开销安全增强方法,用于基于编码的重编程协议

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Coding-based reprogramming protocols can effectively and remotely disseminate a new code image to all sensor nodes via wireless channels in wireless sensor networks. However, security service is crucial to these protocols when sensor nodes are deployed in adversarial environments. Existing security schemes can resist Pollution Attack, but the overheads are excessive. In this paper, a security enhancement approach with low overhead based on Hierarchical Hash Tree is proposed to enhance the security of the protocols. Our scheme is composed of two layers of Merkle Tree based on the ideas of hierarchy and aggregation. Then, the security of proposed approach is proven and the overheads of that are analyzed. Furthermore, our scheme is used to implement page authentication of Sreluge protocol, which is a representative reprogramming protocol based on random linear codes. Experimental results show that our scheme can cut authentication overhead by at least 43 % that of Merkle Tree and other overheads have been reduced markedly with the size of code image growing.
机译:基于编码的重编程协议可以通过无线传感器网络中的无线通道,将新的代码图像有效地远程分发给所有传感器节点。但是,在对抗性环境中部署传感器节点时,安全服务对于这些协议至关重要。现有的安全方案可以抵抗污染攻击,但是开销过大。本文提出了一种基于层次哈希树的低开销安全增强方法,以提高协议的安全性。我们的方案由两层Merkle树组成,基于层次结构和聚合的思想。然后,证明了所提出方法的安全性并分析了其开销。此外,我们的方案用于实现Sreluge协议的页面认证,Sreluge协议是基于随机线性代码的代表性重新编程协议。实验结果表明,该方案可以将认证开销至少减少Merkle Tree的43%,并且随着代码图像尺寸的增加,其他开销也得到了明显降低。

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