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Resolving frequency ambiguities in step : frequency compressive receivers

机译:逐步解决频率歧义:频率压缩接收机

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摘要

Present Compressive Receiver implementations are limited due to their analog implementation and the necessity for digital processing of the serial output data. Previous research has shown that a stepped-frequency digital design using sub-Nyquist sampling mitigates many of the limitations. An algorithm that implements the Chinese Remainder Theorem to solve the frequency ambiguities that occur in the design due to sub-Nyquist sampling with high resolutions is investigated. Different resolutions, a different number of sampling frequencies, and sampling frequency pairs and triples with various differences are simulated for one to five signals that overlap in the time domain. Predictions for the best achievable resolution, the minimum number of sampling frequencies needed, and the difference required between the sampling frequencies are made according to the comparison of simulation results.
机译:当前的压缩接收器实现方式由于其模拟实现方式以及对串行输出数据进行数字处理的必要性而受到限制。先前的研究表明,使用亚奈奎斯特采样的步进频率数字设计可以减轻许多限制。研究了一种实现中国余数定理的算法,以解决由于高分辨率的亚奈奎斯特采样而导致的设计中出现的频率歧义。对于在时域中重叠的一到五个信号,将模拟不同的分辨率,不同数量的采样频率以及具有各种差异的采样频率对和三元组。根据仿真结果的比较,可以得出最佳分辨率,所需最少采样频率以及所需采样频率之间的差异的预测。

著录项

  • 作者

    Ceylan Oktay.;

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  • 年度 1999
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  • 原文格式 PDF
  • 正文语种 en_US
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