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The hit array: a synthesis tool for multiple access frequency hop signals

机译:命中阵列:用于多个接入跳频信号的综合工具

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摘要

The hit array formalism was developed for the analysis of general frequency hop waveforms, in the context of coherent active radar and sonar echolocation systems, or multiple access spread spectrum communications. This formalism is shown to be useful for synthesis as well. Necessary and sufficient conditions are derived for a given hit array to be realizable, i.e., to correspond to a valid frequency hopping pattern. A general backtracking-type algorithm is presented to reconstruct the pattern(s) associated with this hit array. This makes it possible to synthesize a set of frequency hop waveforms directly from any given (realizable) hit array, and thus, because of the correspondence between hit array and ambiguity function, from any physically meaningful ambiguity function. In particular, for limited a priori range and Doppler shifts, this is the first efficient algorithm for direct synthesis from ideal ambiguity function specifications. Several reconstruction examples are shown for illustration purposes.
机译:命中阵列形式主义是在相干有源雷达和声纳回声定位系统或多址扩频通信的背景下开发的,用于分析一般的跳频波形。这种形式主义也显示出对合成也有用。对于给定的命中阵列,要能够实现,即对应于有效的跳频模式,需要导出必要和充分的条件。提出了一种通用的回溯型算法来重构与此匹配数组相关的模式。这使得可以直接从任何给定的(可实现的)匹配数组合成一组跳频波形,因此,由于匹配数组与模糊函数之间的对应关系,可以从任何物理上有意义的模糊函数合成一组跳频波形。特别是,对于有限的先验范围和多普勒频移,这是从理想歧义函数规范直接合成的第一个有效算法。为了说明的目的,示出了几个重建示例。

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