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首页> 外文期刊>Microwave and Wireless Components Letters, IEEE >A Bandpass Sampling Receiver for Wide-Bandwidth, Spectrally-Sparse Waveforms for High-Accuracy Range Measurements
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A Bandpass Sampling Receiver for Wide-Bandwidth, Spectrally-Sparse Waveforms for High-Accuracy Range Measurements

机译:带通采样接收器,用于宽带,光谱稀疏的波形,用于高精度范围测量

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摘要

Measuring range to millimeter accuracy using microwave wireless systems is challenging due to the need for wide-bandwidth waveforms. This work presents a Sparse Ranging Receiver (SpaRR) that utilizes spectrally-sparse waveforms and bandpass sampling to achieve high range accuracy measurements without the need for expensive wideband digitizers. The accuracy of a ranging system varies inversely with the RMS bandwidth of the waveform, and the optimal ranging waveform is one that concentrates its frequency content at the edges of its bandwidth. The SpaRR utilizes widely separate two-tone waveforms from L to X band to achieve high range accuracy with a low-speed digitizer. The theory, architecture, and signal processing associated with the SpaRR are presented, and measurements are shown demonstrating accuracies on the order of 100 μm for tone separations on the order of 2 GHz.
机译:由于需要宽带波形,因此使用微波无线系统来测量毫米至毫米的精度具有挑战性。这项工作提出了一种稀疏测距接收器(SpaRR),它利用频谱稀疏的波形和带通采样来实现高范围精度的测量,而无需昂贵的宽带数字化仪。测距系统的精度与波形的RMS带宽成反比,并且最佳测距波形是将其频率内容集中在其带宽边缘的波形。 SpaRR利用从L到X波段广泛分离的两音波形,以低速数字转换器实现高范围精度。介绍了与SpaRR相关的理论,体系结构和信号处理,并显示了测量结果,这些结果证明了2 GHz量级的音调分离的精度为100μm。

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