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Efficient and Secure Aggregation of Sensor Data against Multiple Corrupted Nodes

机译:针对多个损坏的节点进行高效,安全的传感器数据聚合

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Wireless Sensor Networks (WSNs) rely on in-network aggregation for efficiency, that is, readings from sensor nodes are aggregated at intermediate nodes to reduce the communication cost. However, the previous optimally secure in-network aggregation protocols against multiple corrupted nodes require two round-trip communications between each node and the base station, including the result-checking phase whose congestion is O(log n) where n is the total number of sensor nodes. In this paper", we propose an efficient and optimally secure sensor network aggregation protocol against multiple corrupted nodes by a random-walk adversary. Our protocol achieves one round-trip communication to satisfy optimal security without the result-checking phase, by conducting aggregation along with the verification, based on the idea of TESLA technique. Furthermore, we show that the congestion complexity, communication complexity and computational cost in our protocol are constant, i.e., 0(1).
机译:无线传感器网络(WSN)依靠网络内聚合来提高效率,也就是说,来自传感器节点的读数在中间节点处聚合以降低通信成本。但是,针对多个损坏的节点的先前的最佳安全网络内聚合协议要求每个节点与基站之间进行两次往返通信,包括结果检查阶段,其拥塞为O(log n),其中n是传感器节点。在本文中”,我们提出了一种针对随机行走的对手针对多个损坏节点的高效且最佳安全的传感器网络聚合协议。我们的协议通过进行聚合来实现一次往返通信,从而在没有结果检查阶段的情况下满足了最佳安全性通过验证,基于TESLA技术的思想,并且我们证明了我们协议中的拥塞复杂度,通信复杂度和计算成本是恒定的,即0(1)。

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