无线光通信中大气湍流抑制方法
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1.西安理工大学自动化与信息工程学院西安710048;2.陕西省智能协同网络军民共建重点实验室西安710068

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TN929.1

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陕西省重点产业创新项目(2017ZDCXL-GY-06-01)、国家自然科学基金面上项目(61377080)资助


Atmospheric turbulence suppression method in optical wireless communication
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1.School of Automation and Information Engineering, Xi′an University of Technology, Xi′an 710048, China; 2.Shaanxi Provincial Key Laboratory of Intelligent Collaborative Network for Civil-Military Cooperation, Xi′an 710068, China

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    摘要:

    在无线光通信系统中,大气湍流会导致传输光束发生扩展、漂移和光强起伏,使得接收端信号质量严重下降,降低通信系统性能,因此,研究抑制大气湍流的方法是提升无线光通信系统性能的关键。大孔径接收技术、分集技术、部分相干光技术和自适应光学技术能够有效抑制大气湍流效应,是改善无线光通信系统性能的重要手段。详细阐述了各个关键技术抑制大气湍流的原理及其手段,这些关键技术可以通过改变传输或接收策略、调控光场结构、增大接收孔径、补偿波前畸变来改善接收信号的质量,提高通信系统的可靠性,同时分析了不同参数指标对系统性能的影响。讨论了相关抑制技术的国内外研究现状,并展示了相关技术在大气湍流的影响下对系统不同性能指标的改善情况。最后总结了当前无线光通信领域在大气湍流抑制方面所面临的挑战与亟待解决的问题,并对未来技术的发展趋势进行了展望,可为未来在该领域的发展提供参考借鉴。

    Abstract:

    Research questions: In optical wireless communication systems, atmospheric turbulence can cause the transmission beam to expand, drift and light intensity fluctuation, which will seriously reduce the signal quality of the receiving end and reduce the performance of the communication system. Therefore, the study of methods to suppress atmospheric turbulence is the key to improve the performance of optical wireless communication systems. Method and process: Large-aperture receiving technology, diversity technology, partially coherent beam technology and adaptive optics can effectively suppress the atmospheric turbulence effect, which is an important means to improve the performance of optical wireless communication systems. Detailed detail the principle of suppress atmospheric turbulence and its means. These key technologies can improve the quality of the received signals and enhance the reliability of the communication system by changing the transmission or reception strategy, regulating the structure of the optical field, enlarging the receiving aperture, and compensating for wavefront distortion. Meanwhile, the effects of different parameter indicators on the system performance are also analyzed. The current status of domestic and international research on the relevant suppression techniques is discussed, and the improvement of different performance indexes of the system under the influence of atmospheric turbulence by the relevant techniques is showed. Conclusions: Finally, the challenges and problems in atmospheric turbulence suppression in the field of optical wireless communication are summarized, and the future development trend of the technology is outlooked, which can provide a reference for the future development in this field.

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梁静远,庞明志,柯熙政.无线光通信中大气湍流抑制方法[J].电子测量与仪器学报,2024,38(11):1-14

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  • 在线发布日期: 2025-01-13
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