Bai Lina, Su Xin, Zhou Wei, Ou Xiaojuan
Department of Measurement and Instrumentation, Xidian Univesity, Xi'an, Shaanxi, China.
State Key Laboratory of Astronautic Dynamics, Xi'an, Shaanxi, China.
Rev Sci Instrum. 2015 Jan;86(1):015106. doi: 10.1063/1.4905623.
For the precise phase difference measurement, this paper develops an improved dual phase coincidence detection method. The measurement resolution of the digital phase coincidence detection circuits is always limited, for example, only at the nanosecond level. This paper reveals a new way to improve the phase difference measurement precision by using the border stability of the circuit detection fuzzy areas. When a common oscillator signal is used to detect the phase coincidence with the two comparison signals, there will be two detection fuzzy areas for the reason of finite detection resolution surrounding the strict phase coincidence. Border stability of fuzzy areas and the fluctuation difference of the two fuzzy areas can be even finer than the picoseconds level. It is shown that the system resolution obtained only depends on the stability of the circuit measurement resolution which is much better than the measurement device resolution itself.
为了进行精确的相位差测量,本文提出了一种改进的双相位重合检测方法。数字相位重合检测电路的测量分辨率总是有限的,例如,仅在纳秒级别。本文揭示了一种利用电路检测模糊区域的边界稳定性来提高相位差测量精度的新方法。当使用一个公共振荡器信号来检测与两个比较信号的相位重合时,由于围绕严格相位重合的有限检测分辨率,会存在两个检测模糊区域。模糊区域的边界稳定性以及两个模糊区域的波动差异甚至可以比皮秒级别更精细。结果表明,所获得的系统分辨率仅取决于电路测量分辨率的稳定性,这比测量设备本身的分辨率要好得多。