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Construction of low-hit-zone frequency hopping sequences with optimal partial Hamming correlation by interleaving techniques

机译:交织技术构建具有最佳局部汉明相关性的低跳频跳频序列

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摘要

In quasi-synchronous frequency hopping code division multiple-access systems, frequency hopping sequences (FHSs) with low-hit-zone (LHZ) are commonly employed to minimize multiple-access interferences. Usually, the length of correlation window is shorter than the period of the chosen FHSs due to the limited synchronization time or hardware complexity. Thus the study of the partial Hamming correlation properties of LHZ FHSs is of particular importance. In this paper, we prove the nonexistence of LHZ FHS sets with strictly optimal partial Hamming correlation in some conditions. In addition, employing the interleaving techniques, we present a construction of LHZ FHS sets with optimal partial Hamming correlation from m-sequences. The fundamental idea of our design is to use short individual m-sequences together with certain appropriate shift sequences to construct long LHZ FHS sets with optimal partial Hamming correlation. In particular, our construction gives new parameters not covered in the literature.
机译:在准同步跳频码分多址系统中,通常采用具有低冲击区(LHZ)的跳频序列(FHS)来最大程度地减少多址干扰。通常,由于有限的同步时间或硬件复杂性,相关窗口的长度比所选FHS的周期短。因此,对LHZ FHS的部分汉明相关特性的研究尤为重要。在本文中,我们证明了在某些条件下具有严格最优局部汉明相关性的LHZ FHS集不存在。此外,采用交错技术,我们提出了一种具有m序列的最佳汉明相关性的LHZ FHS集的构造。我们设计的基本思想是使用短的单个m序列以及某些适当的移位序列来构建具有最佳局部汉明相关性的长LHZ FHS集。特别是,我们的构造提供了文献中未涵盖的新参数。

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