Frequency-coded waveforms for enhanced delay-Doppler resolution

Chieh-Fu Chang, M. Bell
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引用次数: 39

Abstract

In this paper, we propose techniques for the construction of frequency-coding sequences that give rise to frequency-coded waveforms having ambiguity functions with a clear area - containing no sidelobes - in a connected region surrounding the main lobe. These constructed sequences are called pushing sequences. First, two important properties of pushing sequences are investigated: the group D/sub 4/ dihedral symmetry property and the frequency omission property. Using the group D/sub 4/ dihedral symmetry property, we show how to construct additional pushing sequences from a given pushing sequence. Using the frequency omission property, we show how to construct pushing sequences of any length N and design proper frequency-coded waveforms that meet specific constraints in the frequency domain. Next, we use the Lempel T/sub 4/ construction of Costas sequences to construct pushing sequences with power 1. Finally, we show how to construct pushing sequences with any desired power using Lee codewords. Because these arbitrary-power pushing sequences constructed using Lee codewords do not have the Costas property, we derive expressions for the pattern of hits in the geometric array. Based on this, the general form of the positions and levels of all the sidelobe peaks are derived.
提高延迟-多普勒分辨率的频率编码波形
在本文中,我们提出了构建频率编码序列的技术,该技术可以产生具有模糊函数的频率编码波形,该波形在主瓣周围的连接区域中具有清晰区域(不包含副瓣)。这些构造的序列称为推入序列。首先,研究了推序列的两个重要性质:群D/次4/二面体对称性和频率省略性。利用群D/子4/二面体对称性质,给出了如何在给定的推序列上构造附加的推序列。利用频率省略特性,我们展示了如何构建任意长度N的推进序列,并设计满足频域特定约束的适当频率编码波形。接下来,我们利用Costas序列的Lempel T/sub 4/构造构造幂为1的push序列。最后,我们展示了如何使用Lee码字构造具有任意期望功率的推入序列。因为这些使用Lee码字构造的任意幂推序列不具有Costas性质,所以我们推导几何数组中命中模式的表达式。在此基础上,导出了各副瓣峰的位置和电平的一般形式。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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