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Fiber-Optic Analog-to-NRZ Binary Conversion

机译:光纤模拟到NRZ二进制转换

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摘要

A novel photonic analog-to-binary converter based on the first-order asynchronous delta-sigma modulation (ADSM) has been theoretically investigated and experimentally demonstrated. A fiber-optic prototype ADSM system is constructed and characterized. Delta-sigma modulation is a straightforward approach to A/D conversion because in this case an external clocking is not required and demodulation can be simply performed via a low-pass filtering process. To improve signal-to-noise ratio and thus system ENOB, a non-interferometric optical implementation has been constructed. The ADSM is comprised of three photonic devices: an inverted output photonic leaky integrator, bistable quantizer, and positive corrective feedback. The photonic integrator which is a recirculating loop performs the oversampling of an analog input using the cross-gain modulation in an SOA. We will show that the photonic ADSM produces an inverted non-return-to-zero (NRZ) pulse-density modulated output describing an input analog signal. This fiber-optic ADSM converts up to 7.6 MHz analog input at about 30 MS/s and effective ENOB of 6.
机译:基于一阶异步Δ-sigma调制(ADSM)的新型光子模数转换器已经过理论上研究和实验证明。制造和表征光纤原型ADSM系统。 Delta-Sigma调制是A / D转换的直接方法,因为在这种情况下,不需要外部时钟并且可以通过低通滤波过程简单地执行解调。为了提高信噪比和因此系统ENOB,已经构建了非干涉光学实现。 ADSM由三个光子器件组成:反转输出光子泄漏积分器,双稳态化器和正校正反馈。作为再循环回路的光子积分器使用SOA中的交叉增益调制执行模拟输入的过采样。我们将表明光子ADSM产生描述输入模拟信号的反相非返回到零(NRZ)脉冲密度调制输出。该光纤ADSM在大约30 ms / s和有效的eNOB下转换高达7.6MHz的模拟输入。

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