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PRE-CALIBRATION OF THE PHASE INTERPOLATOR OF A PRECISION TIME INTERVAL METER

机译:精密时间间隔仪的相位插值器的预校准

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摘要

The issues of precision determinations of time intervals for which results are essential, such as to estimate the metrological characteristics of structural systems of space navigational systems, are considered. A precision time-interval measurement unit has been designed. The dependence between observations of the measurement unit and the value under test has been established. A procedure for pre-calibration of a phase interpolator with nonuniform step size of quantization from the composition of the precision time-interval measurement unit has been developed and tested. In the course of creating the procedure, an optimal value was selected for the reference frequency, and the optimal size for the measuring matrix, consisting of sequentially connected logic gates, was studied. The extent of the effect of FPGA crystal temperature (integrated circuit) on the operation of a phase interpolator was determined. Requirements for test signals were developed, and the possibility of applying the reference signals of secondary standards for time and frequency (for example, the State Secondary Standard of units of time and frequency VET 1-7) was evaluated in the process of pre-calibration of the phase interpolator. Special software for determining the subquanta boundaries of the phase interpolator with a resolution of units of picoseconds was developed, and probability density functions of the transient process from one subquantum to the subsequent one were calculated. Requirements for the spectral composition of the frequency of the reference signal were provided, and the frequency detuning of a test signal relative to reference was determined. Verification of the a developed methodology for pre-calibration of the temporal position of the interpolator phase transitions was accomplished by repeated recalibrations and comparison of the obtained results.
机译:考虑了结果的精度确定的时间间隔的问题是必不可少的,例如估计空间导航系统结构系统的计量特征。设计了精确的时间间隔测量单元。已经建立了测量单元的观察和测试值之间的依赖性。已经开发并测试了从精密时间间隔测量单元的组成的具有非均匀步长的相位插值器预校准相位插值器的过程。在创建过程的过程中,研究了参考频率选择最佳值,并且研究了由序贯连接的逻辑门组成的测量矩阵的最佳尺寸。确定了FPGA晶体温度(集成电路)对相位内插器的操作的影响的程度。开发了对测试信号的要求,并在预校准过程中评估了应用二级标准的参考信号的可能性(例如,时间和频率vet 1-7的状态和频率vet 1-7的单位二级标准)相位插值器的概念。特殊软件用于确定相位插值器的分辨率的分辨率的分辨率的亚基界限,并计算从一个子质子到随后的瞬态过程的概率密度函数。提供了参考信号频率的光谱组成的要求,并且确定了测试信号相对于参考的频率静脉静脉。通过重复的重新校准和获得所得结果的比较来完成对插值相转变的时间位置的用于预校准的开发方法的验证。

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