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Performance Evaluation of an OFDM-based Underwater Wireless Optical Communication Link by Considering Depth-Dependent Variations in Attenuation

机译:考虑衰减中深度相关变化的基于OFDM的水下无线光通信链路的性能评估

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This paper investigates the performance of a 10-meter length Orthogonal Frequency Division Multiplexing (OFDM)-based Underwater Wireless Optical Communications (UWOC) link by employing quadrature amplitude modulation (QAM)scheme for various depths, taking into account impact of the depth variation on the attenuation coefficient in the clear open ocean. The channel is simulated through the Monte Carlo modeling of light (MCML) method using the Henyey-Greenstein model of the scattering phase function. A least-square (LS) channel estimation method has been used for equalization whose coefficients are obtained using a comb type channel estimation (CE) arrangement and interpolation. The results show that increasing of depth has a significant effect on Bit Error Rate (BER) performance as the BER reaches from 5.25×10-6at a depth of 1 m to 1.21×10-2 at a depth of 30 m. Also, the intensity of the received light decreases by increasing depth water and distance between the transmitter and receiver.
机译:本文针对不同深度采用正交幅度调制(QAM)方案,研究了基于10米长正交频分复用(OFDM)的水下无线光通信(UWOC)链路的性能,同时考虑了深度变化对畅通无阻的海洋中的衰减系数。使用散射相位函数的Henyey-Greenstein模型通过光的蒙特卡洛建模(MCML)方法对通道进行仿真。最小二乘(LS)信道估计方法已用于均衡,其系数是使用梳型信道估计(CE)排列和插值获得的。结果表明,随着BER从5.25×10 \ n -6 \ n深度为1 m至1.21×10 \ n -2 \ n在30 m的深度同样,通过增加水的深度和发射器与接收器之间的距离,接收到的光的强度也会降低。

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