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Spectrally Efficient Jamming Mitigation Based on Code-Controlled Frequency Hopping

机译:基于代码控制跳频的频谱有效干扰缓解

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This paper considers spectrally efficient anti-jamming system design based on code-controlled frequency hopping. Unlike conventional frequency hopping systems where hopping patterns are determined by preselected pseudo-random sequences, in the proposed scheme, part of source information is passed through a block encoder, and used to determine the selected frequency bands for signal transmission. By exploiting the redundancy provided by the block coding, the receiver can retrieve the hopping pattern without a priori knowledge. Through an integrated decoding-and-encoding process, the receiver can also perform partial jamming detection. It is observed that due to the combination of dynamic frequency hopping and coding diversities, the proposed system can effectively mitigate random jamming interference while maintaining high spectral efficiency.
机译:本文考虑了基于码控跳频的频谱高效抗干扰系统设计。与其中跳频模式由预选的伪随机序列确定的常规跳频系统不同,在提出的方案中,部分源信息通过块编码器传递,并用于确定信号传输的选定频带。通过利用分组编码提供的冗余,接收机可以在没有先验知识的情况下检索跳频模式。通过集成的解码和编码过程,接收器还可以执行部分​​干扰检测。可以看出,由于动态跳频和编码多样性的结合,所提出的系统可以有效地减轻随机干扰,同时保持较高的频谱效率。

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