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Performance Analysis of Single Photon Avalanche Diode Underwater VLC System Using ARQ

机译:基于ARQ的单光子雪崩二极管水下VLC系统性能分析

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摘要

Single photon avalanche diode (SPAD) has recently been introduced as a powerful detector for long distance underwater visible light (UVLC) communication. In this paper, the performance of the SPAD detector in UVLC is analyzed considering the effect of the turbulence induced fading resulting from air bubbles in addition to the combined effect of attenuation and scattering. Automatic repeat request (ARQ) system is adopted to mitigate different underwater impairments and reduce the error probability at the receiver side. Approximate packet error rate (PER) expressions are derived using Laguerre Gauss polynomial for a finite number of transmission. Next, the average energy efficiency and throughput are analyzed to account for the increased energy consumption cost and the decreased effective transmission rate, which results from adopting the ARQ scheme. Finally, different numerical results are introduced to verify the derived PER expressions, demonstrate the ability of the proposed ARQ system in extending the transmission range, and show the trade-off between energy efficiency (EE) and throughput.
机译:最近,单光子雪崩二极管(SPAD)被用作功能强大的检测器,用于长距离水下可见光(UVLC)通信。在本文中,除了衰减和散射的综合影响外,还考虑了气泡引起的湍流引起的衰落影响,分析了SPAD检测器在UVLC中的性能。采用自动重发请求(ARQ)系统来减轻不同的水下损伤并降低接收方的错误概率。使用Laguerre Gauss多项式可得出有限传输次数的近似数据包错误率(PER)表达式。接下来,分析平均能量效率和吞吐量以解决因采用ARQ方案而导致的能耗成本增加和有效传输速率降低。最后,引入不同的数值结果以验证派生的PER表达式,证明拟议的ARQ系统扩展传输范围的能力,并显示能量效率(EE)和吞吐量之间的权衡。

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