Reservoir computing-based digital signal equalizer for equivalent-time sampling.

Ning Jing, Junpeng Zhao, Minjuan Zhang
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Abstract

A sampling oscilloscope is an important instrument for evaluating the quality of optical communication signals. Since its working principle is equivalent-time sampling, the data obtained for digital signals with random characteristics do not have continuity, which makes it impossible to use methods such as filtering and averaging to equalize the signal. For this reason, this paper proposes a signal equalization method based on reservoir computing. Through training of the reservoir model, an equivalent-time equalizer is established to solve the problem that the sampling oscilloscope cannot equalize random digital signals. Compared with the continuous-time equalizer, the coincidence degree exceeds 95%. The eye height and eye width are increased by 7 and 1.6, respectively, while the jitter in the eye diagram is reduced by 2.3 times, which solves the problem that the sampling oscilloscope cannot equalize random digital signals.
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基于油藏计算的等效时间采样数字信号均衡器。
采样示波器是评估光通信信号质量的重要仪器。由于其工作原理是等时间采样,对于具有随机特征的数字信号所获得的数据不具有连续性,因此无法使用滤波、平均等方法来均衡信号。为此,本文提出了一种基于储层计算的信号均衡方法。通过对储层模型的训练,建立了等效时间均衡器,解决了采样示波器无法均衡随机数字信号的问题。与连续时间均衡器相比,符合度超过95%。眼高和眼宽分别提高了7倍和1.6倍,眼图抖动降低了2.3倍,解决了采样示波器无法均衡随机数字信号的问题。
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