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信号恢复中光子模数转换器通道采样定时走离的测量与数据校正

Measurement and Data Correction of Channel Sampling Timing Walk-Off of Photonic Analog-to-Digital Converter in Signal Recovery.

作者信息

Qi Junli, Chen Xin, Fu Meicheng, Zhang Hongyu, Yi Wenjun, Zhang Hui, Wei Xiaoming, Shi Bo, Xu Tengfei, Su Dezhi, Wang Weihua, Li Xiujian

机构信息

College of Science, National University of Defense Technology, Changsha 410073, China.

Institute of Plasma Physics, Hefei Institutes of Physical Sciences, Chinese Academy of Sciences, Hefei 230031, China.

出版信息

Micromachines (Basel). 2024 Feb 19;15(2):290. doi: 10.3390/mi15020290.

Abstract

A two-channel, time-wavelength interleaved photonic analog-to-digital converter (PADC) system with a sampling rate of 10.4 GSa/s was established, and a concise method for measuring and data correcting the channel sampling timing walk-off of PADCs for signal recovery was proposed. The measurements show that for the two RF signals of = 100 MHz and = 200 MHz, the channel sampling timing walk-off was 12 sampling periods, which results in an ENOB = -0.1051 bits for the 100 MHz directly synthesized signal, while the ENOB improved up to 4.0136 bits using shift synthesis. In addition, the peak limit method (PLM) and normalization processing were introduced to reduce the impacts of signal peak jitter and power inconsistency between two channels, which further improve the ENOB of the 100 MHz signal up to 4.5668 bits. All signals were analyzed and discussed in both time and frequency domains. The 21.1 GHz signal was also collected and converted using the established two-channel PADC system with the data correction method, combining the PLM, normalization, and shift synthesis, showing that the ENOB increased from the initial -0.9181 to 4.1913 bits, which demonstrates that our method can be effectively used for signal recovery in channel-interleaved PADCs.

摘要

建立了一个采样率为10.4 GSa/s的两通道、时间波长交织的光子模数转换器(PADC)系统,并提出了一种用于测量和数据校正PADC通道采样定时偏移以进行信号恢复的简洁方法。测量结果表明,对于100 MHz和200 MHz的两个射频信号,通道采样定时偏移为12个采样周期,这导致100 MHz直接合成信号的有效位数(ENOB)为 -0.1051比特,而使用移位合成时ENOB提高到4.0136比特。此外,引入了峰值限制方法(PLM)和归一化处理,以减少信号峰值抖动和两通道之间功率不一致的影响,这进一步将100 MHz信号的ENOB提高到4.5668比特。对所有信号在时域和频域进行了分析和讨论。还使用建立的两通道PADC系统结合数据校正方法、PLM、归一化和移位合成对21.1 GHz信号进行了采集和转换,结果表明ENOB从初始的 -0.9181提高到4.1913比特,这表明我们的方法可有效地用于通道交织PADC中的信号恢复。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b3dc/10892809/410d85afb4b6/micromachines-15-00290-g001.jpg

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