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Secure key loss recovery for network broadcast in single-hop wireless sensor networks

机译:用于单跳无线传感器网络中的网络广播的安全密钥丢失恢复

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摘要

Symmetric encryption of data at the base-station using time-varying keys has been proposed as an attractive method for securing broadcasts in wireless sensor networks: symmetric decryption keeps computational costs at sensor nodes low, while time-varying group keys protect the network against key compromise at any of the receivers. However, a significant problem is that interference or disconnections may cause a receiver to miss broadcast packets and the dynamic keys contained therein, rendering it unable to participate in subsequent broadcasts. In this paper, we develop a scheme which allows receivers to recover from key loss in a secure, efficient, and scalable manner. Our scheme appends recovery information to each broadcast message to help out-of-sync receivers reattach probabilistically using an older key. We analyze our scheme to quantify the recovery probability as a function of system parameters, and deduce fundamental asymptotic bounds on recovery. We further prototype our scheme on the MicaZ mote platform and show that it is lightweight and efficient. Our solution offers a highly configurable, efficient and scalable method for key recovery in large sensor networks that require secure broadcasts.
机译:已经提出使用时变密钥在基站上对数据进行对称加密,作为一种吸引人的方法来保护无线传感器网络中的广播:对称解密使传感器节点的计算成本降低,而时变组密钥可保护网络免受密钥攻击在任何接收者处妥协。但是,一个严重的问题是干扰或断开连接可能会导致接收机错过广播数据包及其中包含的动态密钥,从而使其无法参与后续广播。在本文中,我们开发了一种方案,该方案允许接收器以安全,有效和可扩展的方式从密钥丢失中恢复。我们的方案将恢复信息附加到每个广播消息中,以帮助不同步的接收者使用较旧的密钥以概率方式重新连接。我们分析我们的方案以量化恢复概率作为系统参数的函数,并推导恢复的基本渐近边界。我们在MicaZ Mote平台上进一步设计了该方案的原型,并证明该方案轻巧高效。我们的解决方案为需要安全广播的大型传感器网络中的密钥恢复提供了一种高度可配置,高效且可扩展的方法。

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