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A Receiver for Frequency Hopping Logarithmic Frequency Domain Ruler Codes

机译:用于跳频对数频域尺标码的接收器

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This paper studies a receiver for a new class of Doppler detection capable frequency hopping radar waveforms. These waveforms use a frequency set spaced according to a Golomb ruler after a logarithmic warping of the frequency axis. This gives the transmitted waveform Doppler detection capability while preserving the Golomb ruler's autocorrelation. An incoming waveform is detected via a running Chirp Z-Transform followed by squaring, frequency warping and matched filtering in the warped frequency domain, which also allows estimation of the Doppler shift. Code sets are constructed via orthogonal time-frequency patterns. Decoding is done by mapping the frequency hopping waveform onto its multicarrier equivalent and performing the detection process again. This paper gives an example of these waveforms and their code sets, derives the optimal detector and decoder, illustrates their performance, and exhibits the receiver's ambiguity function and Doppler estimation accuracy.
机译:本文研究了一种用于新类多普勒检测能力跳频雷达波形的接收器。在频率轴的对数翘曲之后,这些波形使用根据戈尔仑标尺间隔开的频率集。这使得传输的波形多普勒检测能力在保留Golomb Ruler的自相关时。通过运行的Chirp Z变换检测到传入波形,然后在翘曲的频域中进行平衡,频率翘曲和匹配滤波,这也允许估计多普勒偏移。代码集通过正交时频模式构造。通过将跳频波形映射到其多载波等效并再次执行检测过程来完成解码。本文给出了这些波形的示例和它们的代码集,得出了最佳探测器和解码器,说明了它们的性能,并且展示了接收器的模糊函数和多普勒估计精度。

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