Zou Zhengxing, Wang Ping, Chen Wenwen, Li Ang, Tian Hongxin, Guo Lixin
J Opt Soc Am A Opt Image Sci Vis. 2019 Sep 1;36(9):1463-1474. doi: 10.1364/JOSAA.36.001463.
The average capacity of a single-input single-output (SISO) underwater wireless optical communication (UWOC) system with partially coherent Gaussian beams in a weak oceanic turbulence regime is investigated. An approximate analytical expression of scintillation index is derived mathematically to characterize the impact of oceanic turbulence on the propagation behavior of the partially coherent Gaussian beams. Then, the path loss caused by absorption and scattering in the ocean is numerically simulated with the Monte Carlo method. With consideration for absorption, scattering, and oceanic turbulence, the combined channel fading model is established, and the average capacity of the UWOC system (defined as the maximum mutual information between the input and output) is examined. Results show that the scintillations are reduced by decreases in propagation distance, the dissipation rate of mean-square temperature, and the ratio of the temperature and salinity contributions to the refractive index spectrum. Scintillations are also decreased by increases in source beam width, degree of partial coherence, and the dissipation rate of turbulent kinetic energy per unit mass of fluid. As a result, the average capacity of the UWOC system is enhanced. Moreover, the average capacity of the UWOC system can be promoted with the availability of channel state information at the receiver. This work will benefit the research and development of UWOC systems.
研究了在弱海洋湍流条件下,具有部分相干高斯光束的单输入单输出(SISO)水下无线光通信(UWOC)系统的平均容量。通过数学推导得到了闪烁指数的近似解析表达式,以表征海洋湍流对部分相干高斯光束传播行为的影响。然后,利用蒙特卡罗方法对海洋中吸收和散射引起的路径损耗进行了数值模拟。考虑吸收、散射和海洋湍流,建立了组合信道衰落模型,并研究了UWOC系统的平均容量(定义为输入和输出之间的最大互信息)。结果表明,闪烁会随着传播距离、均方温度耗散率以及温度和盐度对折射率谱贡献的比值的减小而降低。闪烁也会随着源光束宽度、部分相干度以及单位质量流体湍动能耗散率的增加而减小。因此,UWOC系统的平均容量得到了提高。此外,接收机处信道状态信息的可用性可以提高UWOC系统的平均容量。这项工作将有利于UWOC系统的研发。