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Delta Modulation Technique for Improving the Sensitivity of Monobit Subsamplers in Radar and Coherent Receiver Applications

机译:Delta调制技术可提高雷达和相干接收机应用中的单位子采样器的灵敏度

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摘要

This paper introduces a technique for improving the sensitivity of RF subsamplers in radar and coherent receiver applications. The technique, referred to herein as “delta modulation” (DM), feeds the time-average output of a monobit analog-to-digital converter (ADC) back to the ADC input, but with opposite polarity. Assuming pseudostationary modulation statistics on the sampled RF waveform, the feedback signal corrects for aggregate dc offsets present in the ADC that otherwise degrade ADC sensitivity. Two RF integrated circuits (RFICs) are designed to demonstrate the approach. One uses analog DM to create the feedback signal; the other uses digital DM to achieve the same result. A series of tests validates the designs. The dynamic time-domain response confirms the feedback loop's basic operation. Measured output quantization imbalance, under noise-only input drive, significantly improves with the use of the DM circuit, even for large, deliberately induced dc offsets and wide temperature variation from ${-}$55 $^circ$C to ${+}hbox{85 }^{circ}$C. Examination of the corrected versus uncorrected baseband spectrum under swept input signal-to-noise ratio (SNR) conditions demonstrates the effectiveness of this approach for realistic radar and coherent receiver applications. Two-tone testing shows no impact of the DM technique on ADC linearity.
机译:<?Pub Dtl?>本文介绍了一种在雷达和相干接收机应用中提高RF子采样器灵敏度的技术。该技术在本文中称为“增量调制”(DM),它将单位模数转换器(ADC)的时间平均输出反馈到ADC输入,但极性相反。假设采样的RF波形具有伪平稳调制统计信息,则反馈信号会校正ADC中存在的总直流偏移,否则会降低ADC的灵敏度。设计了两个RF集成电路(RFIC)来演示该方法。一种是使用模拟DM来创建反馈信号;另一种是使用DM。另一种使用数字DM来达到相同的效果。一系列测试验证了设计。动态时域响应确定了反馈回路的基本操作。通过使用DM电路,在纯噪声输入驱动下,即使对于较大的,故意引起的直流偏移和较大的温度变化(来自 $ {-} $ 55 $ ^ circ $ C到 $ {+} hbox {85} ^ {circ} $ C。在扫频输入信噪比(SNR)条件下对校正后的基带频谱与未校正的基带频谱进行检验,证明了该方法对于实际雷达和相干接收机应用的有效性。两音调测试表明,DM技术对ADC线性没有影响。

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