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USD-FH: Jamming-resistant wireless communication using Frequency Hopping with Uncoordinated Seed Disclosure

机译:USD-FH:使用跳频和不协调的种子披露的抗干扰无线通信

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Spread spectrum techniques (e.g., Frequency Hopping (FH), Direct Sequence Spread Spectrum (DSSS)) have been widely used for anti-jamming wireless communications. Such techniques require that communicating devices agree on a shared secret before communication. However, it is non-trivial for two devices that do not share any secret to establish one in presence of a jammer. Recently, several schemes relying on Uncoordinated Frequency Hopping (UFH) were proposed to allow two devices to establish a secret key using Diffie-Hellman (DH) key establishment protocol in presence of jammers. Unfortunately, all these schemes are limited in efficiency. In this paper, we propose a novel scheme named USD-FH, which uses Uncoordinated Seed Disclosure in Frequency Hopping to establish a shared secret in presence of jammers. The basic idea is to transmit each DH key establishment message using a one-time pseudo-random hopping pattern and disclose the corresponding seed in an uncoordinated manner before the actual message. Due to the large number of channels available for wireless communication, the jammers cannot control all channels at the same time. When the receiver and the sender use the same channel during seed disclosure, the receiver can get the seed. If the jammer does not listen on the same channel (and thus it does not know the hopping pattern), the receiver can receive the actual message without being jammed. We validate USD-FH through both theoretical analysis and simulation. Our results show that USD-FH is much more efficient and robust than previous solutions.
机译:扩频技术(例如,跳频(FH),直接序列扩频(DSSS))已被广泛用于抗干扰无线通信。这样的技术要求通信设备在通信之前就共享秘密达成一致。但是,对于两个没有共享任何秘密的设备在干扰器存在的情况下建立一个设备来说,这并非不平凡。最近,提出了几种依靠非协调跳频(UFH)的方案,以允许两个设备在存在干扰源的情况下使用Diffie-Hellman(DH)密钥建立协议来建立秘密密钥。不幸的是,所有这些方案的效率都受到限制。在本文中,我们提出了一种名为USD-FH的新方案,该方案使用跳频中的不协调种子披露在存在干扰者的情况下建立共享秘密。基本思想是使用一次性伪随机跳频模式发送每个DH密钥建立消息,并在实际消息之前以不协调的方式公开相应的种子。由于可用于无线通信的通道数量众多,干扰器无法同时控制所有通道。当接收者和发送者在种子公开期间使用相同的频道时,接收者可以获得种子。如果干扰者没有在同一频道上收听(因此它不知道跳频模式),则接收者可以接收实际的消息而不会被干扰。我们通过理论分析和模拟对USD-FH进行了验证。我们的结果表明,USD-FH比以前的解决方案更加有效和强大。

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