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Reducing Phase-Measurement Errors due to RF-Source Band Breaks

机译:由于RF源带断裂而降低相位测量误差

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A signal source can introduce phase-measurement errors when its output crosses through internal frequency-band breaks. The source phase lock circuits in this band-break region sometimes report approximate phase lock before complete phase lock occurs. The result of this approximate phase lock is a minor error in the output frequency, which can lead to phase-measurement errors at the system level. The magnitude of the phase errors depends on the amount of frequency offset and the difference in electrical lengths between the measurement system's signal and phase-reference paths. If this behavior were deterministic, then the resulting phase errors might be tolerable. Unfortunately, it was found that the final settling time (measured in many hundreds of milliseconds) was not consistent, depended in part on the two specific frequencies surrounding the band break, became more confused if a second sweep encountered the band break before the first break had settled, and of course changed behavior if the frequencies were sequenced in reverse order or measured one at a time. The design approach described herein reduced to negligible the phase-measurement errors due to frequency errors in two large multioctave test systems. The approach relies on managing range transmission line lengths so that propagation time is sufficiently equal among the various signal and reference paths. Measured data are presented that show the advantage of the optimized system design.
机译:当其输出跨越通过内部频带分解的信号源可引入相位测量误差。在发生完整阶段锁定之前,该带断区域中的源相位锁定电路有时会报告近似相位锁。该近似阶段锁的结果是输出频率的次要误差,这可能导致系统级别的相位测量误差。相位误差的幅度取决于测量系统信号和相位参考路径之间的频率偏移量和电长度的差异。如果此行为是确定性的,则可以将产生的相位误差可容许。遗憾的是,发现最终的沉降时间(在数百毫秒内测量)并不一致,依赖于围绕乐队中断的两个特定频率,如果第二次扫描在第一次休息前遇到乐队断裂,则变得更加困惑已经解决,如果频率以相反的顺序测序或一次测量频率,则当然改变了行为。由于两个大型多电流测试系统中的频率误差,所描述的设计方法缩短到可忽略不计的相位测量误差。该方法依赖于管理范围传输线长度,使得在各种信号和参考路径中的传播时间足够相等。提出了测量数据,其显示了优化的系统设计的优势。

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