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Investigation of multiple input-single output technique for wireless optical communication system under coastal water

机译:沿海水下无线光通信系统多输入单输出技术的研究

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摘要

In this paper, a simulation was proposed to study underwater visible light communication (UVLC) system using a multiple input-single output (MISO) technique with different modulation schemes under coastal water. MISO technique has enhanced the distance link with high speed data rate compared with the traditional technique of single input-single output (SISO), MISO technique was also employed to examine the performance of BER and data rate under different Jerlov types of coastal water. Various impairments such as distance link, pathloss, channel loss and the attenuation of coastal water were introduced into the transmission of the optical signal to assess the reliability of the MISO technique. The simulation analysis shows the proposed technique can outperform the SISO technique in terms of BER and Q. factor. Moreover, the Q. factor of up to 16 dB and 10~(-10) BER under J9C of coastal water by using (4Tx/1Rx) technique. The radiation angle of LED and the attenuation coefficient of coastal water were restricted for achieving longer distances link. The system accomplished a distance link about 2.9 and 13.5 m for coastal water types J9C and JIC respectively. The 32-PPM is a suitable modulation for obtaining a best distance link for LoS and NLoS scenarios.
机译:本文提出了一种模拟,用于研究水下可见光通信(UVLC)系统,使用沿海水下的不同调制方案进行多种输入单输出(MISO)技术。 MISO技术与高速数据速率的距离链路与传统的单一输入单输出(SISO)进行了增强,也采用了MISO技术来检查不同捷径类型的沿海水下的BER和数据率的性能。引入了诸如距离链路,路径,信道丢失和沿海水的衰减的各种损伤,以评估MISO技术的可靠性。仿真分析显示所提出的技术可以在BER和Q.因素方面优于SISO技术。此外,通过使用(4TX / 1RX)技术,Q. Q.Ing of沿海水的J9C下的16dB和10〜(-10)BER。 LED的辐射角和沿海水的衰减系数被限制为实现更长的距离链路。该系统分别为沿海水型J9C和JIC完成了大约2.9和13.5米的距离连杆。 32 ppm是用于获得LOS和NLOS场景的最佳距离链路的适当调制。

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