自适应混沌跳频

Ahmed E. Mansour, Walid Saad, S. E. El Ramly
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引用次数: 6

摘要

在干扰环境下,混沌系统作为鲁棒、安全的通信系统得到了广泛的应用。跳频扩频(FHSS)是一种有效的机制,用于减轻干扰、衰落和干扰的影响。为了提高跳频系统的性能,采用了匹配跳频(MFH)、裁剪匹配跳频(CMFH)和高级匹配跳频(AMFH)等自适应跳频方案。这些方案自适应地选择只包含好的子信道的跳频模式。使用这些方案会迫使系统容易受到智能干扰机的攻击。本文提出了一种综合一维混沌映射生成随机码的新算法,该算法主要选择良好的子信道,以获得良好的误码率、良好的频率分集以及混沌系统的高随机性所提供的安全传输。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Adaptive chaotic frequency hopping
Chaotic systems are widely used as robust and secure communication systems in jamming environments. Frequency hopping spread spectrum (FHSS) is an effective mechanism used to mitigate the effects of jamming, fading, and interference. To improve the performance of FHSS many adaptive frequency hopping schemes are used such as matched frequency hopping (MFH), clipped matched frequency hopping (CMFH), and advanced matched frequency hopping (AMFH). These schemes adaptively select the hopping pattern that includes only good sub-channels. Using these schemes result in forcing the system to be vulnerable to smart jammer attack. In this paper we propose a new algorithm that synthesizes one dimensional chaotic map which generates a random code that mostly selects good sub-channels to achieve good bit error rate (BER), good frequency diversity, and secure transmission provided by the high randomness properties of the chaotic systems.
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