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Signal demodulation method for underwater optical wireless communication by measuring the time interval between adjacent photons

机译:通过测量相邻光子之间的时间间隔来用于水下光无线通信的信号解调方法

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摘要

We proposed a signal demodulation method by measuring the time interval between adjacent photons and realized the recovery of the original signal from the discrete random pulse sequence output by the single-photon detector. On this basis, a new communication system model is established by comprehensively considering the photon statistical characteristics of the emitted light field, the statistical distribution of adjacent photon time interval and the performance of the detector. Finally, an underwater optical wireless communication (UOWC) system was built. The effects of the average time interval between adjacent photons, baud rate and demodulation threshold in the time-slot on the system bit error rate (BER) were verified by experiments. The experimental results show that when the baud rate is 100 Kbps and the average time interval between adjacent photons is 111 ns, the BER of the system is 2.52 x 10(-5).
机译:我们提出了一种通过测量相邻光子之间的时间间隔并实现由单光子检测器输出的离散随机脉冲序列的原始信号恢复的信号解调方法。在此基础上,通过综合考虑发射光场的光子统计特性,相邻光子时间间隔的统计分布和检测器的性能来建立新的通信系统模型。最后,建立了水下光学无线通信(UOWC)系统。通过实验验证了在系统塔错误率(BER)上的时隙中相邻光子,波特率和解调阈值之间的平均时间间隔的影响。实验结果表明,当波特率为100kbps时,相邻光子之间的平均时间间隔为111 ns,系统的BER为2.52×10(-5)。

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