光子计数水下无线光测距与通信集成系统仿真

Hao Yang, Qiurong Yan, Shanglin Wang, Xiancheng Xiong, Peng Li, Wei Wang
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引用次数: 0

摘要

尽管许多研究者已经在雪崩光子二极管(APD)探测器和PIN探测器的基础上实现了无线光学测距和通信。然而,由于APD和PIN探测器的灵敏度较低,它们的工作距离受到限制。为了实现远距离水下无线光通信,采用了光子受限灵敏度的单光子雪崩二极管(SPAD)来检测光信号。此外,大多数文献没有专门设计测距和通信的数据帧,这给同时进行测距和通信带来了困难。针对水下光子计数下同时通信和高精度测距目前还没有系统的解决方案,本文对相关技术细节进行了梳理,提出了一种应用于光子计数的测距与通信一体化方案,设计了一种测距与通信一体化的专用数据帧,提出了测距与通信信号的提取与恢复方案。仿真结果表明,该方案可实现水下光子计数无线光通信,通信距离为160m, SER为9.75×10-6,测距精度优于1.59cm。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Simulation of Integrated System of Photon-Counting Underwater Wireless Optical Ranging and Communication
Although many researchers have achieved wireless optical ranging and communication based on Avalanche Photon Diode (APD) detectors and PIN detectors. However, due to the low sensitivity of APD and PIN detectors, their working distances are limited. In order to achieve long-distance underwater wireless optical communication, a Single-Photon Avalanche Diode (SPAD) with photon-limited sensitivity is used to detect optical signals. In addition, most literatures do not specially design the data frames of ranging and communication, which makes it difficult to perform ranging and communication at the same time. In view of the fact that there is currently no systematic solution for simultaneous communication and high-precision ranging under underwater photon counting, this paper sorts out the relevant technical details, proposes an integrated ranging and communication scheme applied to photon counting, designs a special data frame that integrates ranging and communication, and proposes an extraction and recovery scheme for ranging and communication signals. Simulation shows that this scheme can achieve underwater photon counting wireless optical communication with a communication distance of 160m and an SER of 9.75×10-6, and the ranging accuracy is better than 1.59cm.
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