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Highly Secure Key Predistribution Using Affine Planes And Reed Muller Codes In Wireless Sensor Networks

机译:在无线传感器网络中使用仿射平面和Reed Muller码进行高度安全的密钥预分配

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Wireless Sensor Networks (WSN) consist of low powered and resource constrained sensor nodes which are left unattended for long duration of time. Hence it is very challenging to design and implement cost effective security protocols for such networks. Thus symmetric key cryptographic techniques are preferred over public key techniques for communication in such scenarios. Prior to deployment, keys are usually predistributed into the nodes and this problem has been well studied. Highlighting that connectivity and communication are two separate aspects of a WSN, we propose a secure connectivity model using Reed Muller codes. The model is then utilized to securely establish communication keys and exchange messages in a WSN designed on the basis of a scheme that uses affine planes for key predistribution. By the introduction of connectivity model, the node identifiers (ids) are converted from public to private information to each node. These private node ids can be used to generate new communication keys from old ones by applying cryptographic hash functions. Novel combination of these ideas yields highly resilient communication model with full connectivity between nodes.
机译:无线传感器网络(WSN)由低功率和资源受限的传感器节点组成,这些传感器节点长时间无人值守。因此,为这样的网络设计和实现具有成本效益的安全协议是非常具有挑战性的。因此,在这种情况下,对称密钥密码技术比公钥技术更可通信。在部署之前,通常将密钥预先分配到节点中,并且已经对该问题进行了深入研究。强调连接性和通信是WSN的两个独立方面,我们提出了使用里德穆勒(Reed Muller)代码的安全连接模型。然后使用该模型在基于仿射平面进行密钥预分发的方案设计的WSN中安全地建立通信密钥并交换消息。通过引入连通性模型,节点标识符(id)从公共信息转换为私有信息到每个节点。这些私有节点ID可以通过应用加密哈希函数从旧密钥生成旧的通信密钥。这些想法的新颖组合产生了节点之间具有完全连接性的高度弹性的通信模型。

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