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High-Resolution Group Quantization Phase Processing Method in Radio Frequency Measurement Range

机译:射频测量范围内的高分辨率群量化相位处理方法

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摘要

Aiming at the more complex frequency translation, the longer response time and the limited measurement precision in the traditional phase processing, a high-resolution phase processing method by group quantization higher than 100 fs level is proposed in radio frequency measurement range. First, the phase quantization is used as a step value to quantize every phase difference in a group by using the fixed phase relationships between different frequencies signals. The group quantization is formed by the results of the quantized phase difference. In the light of frequency drift mainly caused by phase noise of measurement device, a regular phase shift of the group quantization is produced, which results in the phase coincidence of two comparing signals which obtain high-resolution measurement. Second, in order to achieve the best coincidences pulse, a subtle delay is initiatively used to reduce the width of the coincidences fuzzy area according to the transmission characteristics of the coincidences in the specific medium. Third, a series of feature coincidences pulses of fuzzy area can be captured by logic gate to achieve the best phase coincidences information for the improvement of the measurement precision. The method provides a novel way to precise time and frequency measurement.
机译:针对传统相位处理中频率转换更复杂,响应时间更长,测量精度有限的问题,提出了一种在射频测量范围内采用高于100 fs的水平组量化的高分辨率相位处理方法。首先,通过使用不同频率信号之间的固定相位关系,将相位量化用作阶跃值来量化组中的每个相位差。组量化是由量化的相位差的结果形成的。鉴于主要由测量设备的相位噪声引起的频率漂移,会产生群量化的规则相移,从而导致两个获得高分辨率测量的比较信号的相位一致。其次,为了获得最佳的巧合脉冲,根据巧合在特定介质中的传输特性,主动地使用微妙的延迟来减小巧合模糊区域的宽度。第三,逻辑门可以捕获一系列模糊区域的特征重合脉冲,以获得最佳的相位重合信息,从而提高测量精度。该方法提供了一种精确的时间和频率测量的新颖方法。

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