空海跨域通信双波模型传输相干统计特性研究

Coherent statistical characteristics of two-wave model for air-sea cross-domain communication transmission

  • 摘要: 空中与海洋之间激光通信和数据传输技术需求增长迅速,亟须研究稳健可靠的空海跨域通信技术。通过采用Rytov近似理论对平面波和球面波双波模型在空海跨域混合信道下行链路传输进行分析,推导出波结构函数、空间相干长度及空间相干函数的解析公式,并结合数值仿真进行验证。研究揭示了双波模型光束在大气和海洋复杂湍流介质中传输的相干统计特性,发现了大气湍流中的波结构函数Kolmogorov三分之五幂律在海洋湍流的惯性范围适应性,并进一步探讨了双波模型在大气湍流和海洋湍流传输过程中的波结构函数、空间相干长度和空间相干函数的变化规律。该研究为激光在空海跨域传输中高可靠性的相干探测提供了重要的理论依据和技术支撑。

     

    Abstract: The demand for laser communication and data transmission technology between atmosphere and ocean is rapidly increasing, necessitating robust and reliable air-sea cross-domain communication technologies. By deriving analytical formulas for the wave structure function, spatial coherence length, and spatial coherence function, this work analyzes the downlink transmission of plane wave and spherical wave two-wave model for air-sea cross-domain mixed channel using the Rytov approximation method. Numerical simulations are conducted to validate these findings. This work reveals the coherence characteristics of two-wave model beams during transmission through complex and weak turbulent media in the atmosphere and ocean. It is found that the Kolmogorov five-thirds power law of wave structure functions in atmospheric turbulence is adaptable to the inertial range of oceanic turbulence. Furthermore, this work explores the variations of wave structure function, spatial coherence length, and spatial coherence function for plane wave and spherical wave during transmission through atmospheric and oceanic turbulence. This work provides important theoretical guidance and technical support for coherent detection of the robustness and reliability of laser transmission for air-sea cross-domain communication.

     

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