无共享密钥的抗干扰广播通信

C. Pöpper, M. Strasser, Srdjan Capkun
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引用次数: 170

摘要

抗干扰广播通信对于紧急警报广播或敌对环境中导航信号的传播等安全关键应用至关重要。这些应用程序都需要保证消息的真实性和可用性,这些消息由基站广播给大量未知的(可能不受信任的)接收器。对抗干扰攻击的常用技术,如直接序列扩频(DSSS)和跳频,是基于在通信开始前需要在发送方和接收方之间共享的秘密。然而,依赖于密钥对或组密钥的广播抗干扰通信可能会受到可伸缩性和密钥设置问题的影响,或者分别提供较弱的抗干扰性。因此,在这项工作中,我们提出了一种称为非协调DSSS (UDSSS)的解决方案,该解决方案可以在不需要共享秘密的情况下实现扩频抗干扰广播通信。它适用于接收方持有发送方的真实公钥,但不与发送方共享密钥的广播场景。UDSSS可以处理无限数量的接收器,同时防止恶意接收器。我们分析了UDSSS的安全性和延迟,并通过对原型实现的实验评估来完成我们的工作。
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Jamming-resistant Broadcast Communication without Shared Keys
Jamming-resistant broadcast communication is crucial for safety-critical applications such as emergency alert broadcasts or the dissemination of navigation signals in adversarial settings. These applications share the need for guaranteed authenticity and availability of messages which are broadcasted by base stations to a large and unknown number of (potentially untrusted) receivers. Common techniques to counter jamming attacks such as Direct-Sequence Spread Spectrum (DSSS) and Frequency Hopping are based on secrets that need to be shared between the sender and the receivers before the start of the communication. However, broadcast antijamming communication that relies on either secret pairwise or group keys is likely to be subject to scalability and key-setup problems or provides weak jammingresistance, respectively. In this work, we therefore propose a solution called Uncoordinated DSSS (UDSSS) that enables spread-spectrum anti-jamming broadcast communication without the requirement of shared secrets. It is applicable to broadcast scenarios in which receivers hold an authentic public key of the sender but do not share a secret key with it. UDSSS can handle an unlimited amount of receivers while being secure against malicious receivers. We analyze the security and latency of UDSSS and complete our work with an experimental evaluation on a prototype implementation.
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