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Photonic-assisted time-interleaved ADC based on optical delay line

机译:基于光延迟线的光子辅助时间交错ADC

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摘要

An approach to implement photonic-assisted time-interleaved analog-to-digital conversion and its calibration method are presented. The analog modulated optical signal is divided into M channels, suffering different time delay induced by optical delay lines which provide great flexibility in producing time intervals and is then sampled by electronic analog-to-digital converters (ADCs). The channel mismatches resulting in performance degradation are estimated by a modified sine wave fitting method. The time mismatch and other mismatches are corrected by fine optical delay adjustment and digital processing, respectively. A four-channel photonic-assisted time-interleaved analog-to-digital converter (TIADC) system operating at 40 GSa s(-1) was demonstrated experimentally. The photonic-assisted TIADC system was tested with a 6.31 GHz sine wave signal, exhibiting 40.3 dB signal-to-noise and distortion ratio (SINAD) and 57.6 dBc spurious-free dynamic range (SFDR). It is shown that the SINAD is dominated by the signal-to-noise ratio (SNR) of the analog optical link and the SFDR of the proposed system is limited by the linearity of the link.
机译:提出了一种实现光子辅助时间交错模数转换的方法及其校准方法。模拟调制的光信号分为M个通道,它们受光延迟线引起的不同时间延迟的影响,这在产生时间间隔方面具有很大的灵活性,然后由电子模数转换器(ADC)进行采样。通过改进的正弦波拟合方法可以估计导致性能下降的通道失配。时间不匹配和其他不匹配分别通过精细的光学延迟调整和数字处理来校正。实验证明了在40 GSa s(-1)下运行的四通道光子辅助时间交错模数转换器(TIADC)系统。使用6.31 GHz正弦波信号测试了光子辅助TIADC系统,该系统具有40.3 dB的信噪比和失真比(SINAD)和57.6 dBc的无杂散动态范围(SFDR)。结果表明,SINAD受模拟光链路的信噪比(SNR)支配,而所提出系统的SFDR受链路线性的限制。

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