Path Selection for Relay-Assisted Underwater Visible Light Communication Systems

M. Elamassie, M. Uysal
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Abstract

In this paper, we consider underwater visible light communication (UVLC) system with M parallel relaying paths where each path has N decode-and-forward (DF) relays. One path (not necessarily the best one) out of M paths is selected for transmission. Such a multi-hop system is especially useful since some relay nodes might break down or malfunction and hence single path might not be sufficient. Furthermore, selection of the best path is not always possible due to several reasons such as the effect of noise on the estimation of the best path and feedback error. Under the assumption of lognormal (LN) turbulence channels, we derive a closed-form expression for the outage probability of UVLC system where the $m^{\mathrm{th}}$ best path is selected for transmission. We then use our derived closed-form outage probability for investigating the so-called incremental diversity order (IDO).
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中继辅助水下可见光通信系统路径选择
本文考虑具有M条并联中继路径的水下可见光通信(UVLC)系统,其中每条路径有N个译码转发(DF)中继。从M条路径中选择一条路径(不一定是最好的)进行传输。这种多跳系统特别有用,因为一些中继节点可能会崩溃或故障,因此单路径可能不够。此外,由于噪声对最佳路径估计的影响和反馈误差等原因,选择最佳路径并不总是可能的。在对数正态(LN)湍流信道的假设下,导出了选择$m^{\ mathm {th}}$最优路径进行传输的UVLC系统中断概率的封闭表达式。然后,我们使用导出的封闭式中断概率来研究所谓的增量分集顺序(IDO)。
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