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Time domain analysis and its practical application to the measurement of phase noise and jitter

机译:时域分析及其对抖动和抖动测量的实际应用

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The precise determination of phase is necessary for a very large set of measurements. Traditionally, phase measurements have been made using analog phase detectors which suffer from limited accuracy and dynamic range. This paper describes how phase digitizing, which uses time domain techniques, removes these limitations. Phase digitizing is accomplished using a time interval analyzer, which measures the signal zero-crossing times. These zero-crossing times are processed to compute phase deviation, with the reference frequency specified as a numerical value or derived from the times themselves. Phase digitizing can be applied even in the presence of modulation, as the underlying clock can be reconstructed in software to fit the data. Measurements derived from this phase data such as phase noise, jitter analysis, Allan variance (AVAR), Maximum Time Interval Error (MTIE), and Time Deviation (TDEV) are applied to such applications as the characterization of oscillators, computer clocks, chirp radar, token ring networks, and tributaries in communication systems.
机译:精确的相位测定是一组非常大的测量所必需的。传统上,使用相位检测器进行了相位测量,其遭受有限的精度和动态范围。本文介绍了阶段数字化如何使用时域技术,从而消除这些限制。使用时间间隔分析器来完成相位数字化,该时间间隔分析器测量信号零交叉时间。这些过零时间被处理以计算相位偏差,参考频率指定为数值或从其自身衍生的。即使在调制存在下也可以应用相位数字,因为可以以软件重建底层以适合数据。从该相位数据源导出的测量,例如相位噪声,抖动分析,Allan方差(AVAR),最大时间间隔误差(MTIE)和时间偏差(TDEV)被应用于这种应用,作为振荡器,计算机时钟,Chirp雷达的表征,令牌环网和通信系统中的支流。

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