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首页> 外文期刊>IEEE Transactions on Vehicular Technology >Index Modulation Based Frequency Hopping: Anti-Jamming Design and Analysis
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Index Modulation Based Frequency Hopping: Anti-Jamming Design and Analysis

机译:基于索引调制跳频:抗干扰设计与分析

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摘要

Reactive symbol-level jammer has attracted attention due to its low energy cost and high jamming efficiency. With the development of software-defined radio (SDR), the implementation of reactive symbol-level jamming has become more practical and efficient. To combat the reactive jammer, this paper proposes an index modulation based frequency hopping spread spectrum (IM-FHSS) scheme. Specifically, the current available frequencies are determined by multiple orthogonal frequency hopping (FH) patterns, and bit information is transmitted through the index of the active FH pattern. At the receiving side, we design an energy detector to distinguish the active and idle frequencies. With such implementation, IM-FHSS can obtain the improved resistance of reactive symbol-level jammer. Subsequently, we propose the alternative spectral efficiency (SE) mode of IM-FHSS in order to meet the high SE and low-power jamming scenarios. Furthermore, we analyze the BER of this scheme for the reactive symbol-level jamming under the cases of energy correlation, jamming rate, and phase offset. Theoretical analysis and simulation results show that IM-FHSS exhibits enhanced resistance to reactive symbol-level jamming than traditional FH scheme.
机译:由于其低能量成本和高干扰效率,反应性符号级干扰器引起了关注。随着软件定义的无线电(SDR)的开发,反应符号级干扰的实现变得更加实用和有效。为了对抗反应性干扰,本文提出了一种基于索引调制的跳频扩频(IM-FHSS)方案。具体地,当前可用频率由多个正交频率跳跃(FH)模式确定,并且通过有源FH模式的索引发送比特信息。在接收方面,我们设计能量检测器以区分主动和空闲频率。利用这种实现,IM-FHSS可以获得反应性符号级干扰器的改善电阻。随后,我们提出了IM-FHSS的替代光谱效率(SE)模式,以满足高SE和低功率的干扰场景。此外,我们在能量相关,干扰率和相位偏移的情况下分析该方案的BER。理论分析和仿真结果表明,除了传统的FH方案,IM-FHSS对反应性符号级干扰的抗性增强了抗性。

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