Randomized Differential DSSS: Jamming-Resistant Wireless Broadcast Communication

Yao Liu, P. Ning, H. Dai, An Liu
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引用次数: 214

Abstract

Jamming resistance is crucial for applications where reliable wireless communication is required. Spread spectrum techniques such as Frequency Hopping Spread Spectrum (FHSS) and Direct Sequence Spread Spectrum (DSSS) have been used as countermeasures against jamming attacks. Traditional anti-jamming techniques require that senders and receivers share a secret key in order to communicate with each other. However, such a requirement prevents these techniques from being effective for anti-jamming broadcast communication, where a jammer may learn the shared key from a compromised or malicious receiver and disrupt the reception at normal receivers. In this paper, we propose a Randomized Differential DSSS (RD-DSSS) scheme to achieve anti-jamming broadcast communication without shared keys. RD-DSSS encodes each bit of data using the correlation of unpredictable spreading codes. Specifically, bit ``0'' is encoded using two different spreading codes, which have low correlation with each other, while bit ``1'' is encoded using two identical spreading codes, which have high correlation. To defeat reactive jamming attacks, RD-DSSS uses multiple spreading code sequences to spread each message and rearranges the spread output before transmitting it. Our theoretical analysis and simulation results show that RD-DSSS can effectively defeat jamming attacks for anti-jamming broadcast communication without shared keys.
随机差分DSSS:抗干扰无线广播通信
抗干扰对于需要可靠无线通信的应用至关重要。跳频扩频(FHSS)和直接序列扩频(DSSS)等扩频技术已被用于对抗干扰攻击。传统的抗干扰技术要求发送方和接收方共享密钥才能相互通信。然而,这样的要求使这些技术无法有效地用于抗干扰广播通信,其中干扰者可能从受损或恶意的接收器那里学习共享密钥,并破坏正常接收器的接收。在本文中,我们提出了一种随机差分DSSS (RD-DSSS)方案来实现无共享密钥的抗干扰广播通信。RD-DSSS使用不可预测的扩展码的相关性对每个数据位进行编码。其中,“0”位采用两种不同的扩频码编码,相关性较低;“1”位采用两种相同的扩频码编码,相关性较高。为了对抗被动干扰攻击,RD-DSSS使用多个扩频码序列对每条报文进行扩频,并在发送前对扩频输出进行重新排列。理论分析和仿真结果表明,RD-DSSS可以有效地挫败无共享密钥抗干扰广播通信的干扰攻击。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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