首页> 外文会议>Instrumentation and Measurement Technology Conference, 1989. IMTC-89. Conference Record., 6th IEEE >Digital spectra of non-uniformly sampled signals: theories and applications. III. A robust sampling time offset estimation algorithm for ultra high speed waveform digitizers using interleaving
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Digital spectra of non-uniformly sampled signals: theories and applications. III. A robust sampling time offset estimation algorithm for ultra high speed waveform digitizers using interleaving

机译:非均匀采样信号的数字频谱:理论和应用。三,使用交织的超高速波形数字化仪的鲁棒采样时间偏移估计算法

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For pt.II see IEEE Transactions on Instrumentation and Measurement, vol.37, no.3 (Sept. 1988). The author presents an algorithm for estimating the sampling time offsets of the parallel sampling paths of an ultra-high-speed waveform digitizing system that is realized by interleaving many sample-and-hold and A/D (analog/digital) converter modules. One obvious application of this algorithm is to feed these estimates back to adjustable delay units in all the sampling paths to compensate the sampling time offsets. Simulation results indicate that with an 8-bit quantizer the residual timing error can be reduced to just about 0.05% of the sampling period.
机译:关于第二点,请参见IEEE Transactions on Instrumentation and Measurement,第37卷,第3期(1988年9月)。作者提出了一种算法,用于估计超高速波形数字化系统的并行采样路径的采样时间偏移,该算法是通过交错许多采样保持和A / D(模拟/数字)转换器模块实现的。该算法的一个明显的应用是将这些估计值反馈回所有采样路径中的可调延迟单元,以补偿采样时间偏移。仿真结果表明,使用8位量化器,残余时序误差可以减少到采样周期的0.05%左右。

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