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Efficiently authenticating code images in dynamically reprogrammed wireless sensor networks

机译:在动态重新编程的无线传感器网络中有效地验证代码图像

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For large scale wireless sensor networks (WSNs), reprogramming sensor nodes through the wireless channel is an important capability. To avoid reprogramming false or viral code images, each sensor node needs to efficiently authenticate its received code image before propagating it. Public key schemes based on elliptic curve cryptography are feasible in WSNs, yet are still very expensive in terms of memory and CPU consumption. In this paper, we propose a hybrid mechanism that combines the speedy verification of hash schemes with the strong authenticity of public key schemes. A hash tree is computed from packetized code and its root is signed by the public key of the base station. Each sensor node can quickly authenticate the data packet as soon as it is received. Simulation shows that the proposed secure reprogramming scheme adds only a modest amount of overhead to a conventional non-secure reprogramming scheme, namely Deluge, and is therefore feasible and practical in a WSN.
机译:对于大规模无线传感器网络(WSN),通过无线通道对传感器节点进行重新编程是一项重要功能。为了避免对错误或病毒代码图像进行重新编程,每个传感器节点都需要在传播之前有效地验证其接收到的代码图像。基于椭圆曲线密码学的公钥方案在WSN中是可行的,但在内存和CPU消耗方面仍然非常昂贵。在本文中,我们提出了一种混合机制,该机制将哈希方案的快速验证与公钥方案的强真实性相结合。哈希树是从打包的代码中计算出来的,其根由基站的公钥签名。每个传感器节点可以在接收到数据包后迅速对其进行身份验证。仿真表明,所提出的安全重编程方案仅向常规的非安全重编程方案(即Deluge)增加了适度的开销,因此在WSN中是可行且实用的。

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