激光通信技术

  • 网络laser communication technology
激光通信技术激光通信技术
  1. 激光通信技术应用于卫星通信系统中能够很好的解决上述问题。

    Laser communication technology in satellite communication systems can be a good solution to the above problems .

  2. 自由空间激光通信技术具有高码率、高保密性、高可靠性的优点。

    The free space laser communication technology has an advantage of high speed , high confidentiality and high security .

  3. 卫星激光通信技术与展望

    The technology and prospect of inter - satellite laser communication

  4. 空间激光通信技术若干问题的讨论

    Discussion on some technological issues in space laser communications

  5. 无纤激光通信技术及其应用展望

    Free Space Optical Communications Technology and Its Application

  6. 自由空间激光通信技术及其发展

    Technology of Free-space Laser Communication and Its Development

  7. 大气中激光通信技术

    Technology of laser communication in atmosphere

  8. 空间激光通信技术

    FreeSpace Laser Communications Technique

  9. 随着空间激光通信技术的不断发展,其展现出的应用价值越来越被人们所重视。

    With the constant development of space laser communications , the benefits of its applicability become more and more notable .

  10. 因而为发展空间激光通信技术提供了理论依据,并为仿真实际效果奠定了重要的基础。

    Thus it supports theoretically the development of space laser communication technology , and provides important foundation for the practical technology .

  11. 自由空间激光通信技术起源较早,近几年基于成熟的光纤通信技术和无线电通信技术,自由空间激光通信技术发展较快。

    Free-space laser communications based on optical fiber communications and wireless communications is not a new technology , but it is developing rapidly .

  12. 文章详细介绍了卫星激光通信技术在国外的最新发展状况;

    New developments of satellite laser communication in the world are described and key technologies and corresponding solutions are discussed in this paper .

  13. 随着激光通信技术的飞速发展,偏振调制技术在光纤激光通信中得到了成功应用,并逐步向大气激光通信发展。

    With the rapid development of laser communication technology , polarization modulation has been gradually applied in the atmosphere laser communication after succeed in fiber-optic laser communications .

  14. 即以无线激光通信技术为基础,根据舰载平台的特点进行针对性设计,实现舰载无线激光通信。

    It based on the free space laser communication technology and the existing light communication , and was specially designed according to the characteristics of the Shipborne platform .

  15. 仿真结果为系统的设计以及系统的可靠性提供了保证,为进一步发展空间激光通信技术提供了理论依据。

    The data got from this experiment agree with the theories ; it ensures the design and reliability of the system and supports the development of free space laser communication theoretically .

  16. 同时,大气激光通信技术由于其单色性好、方向性强、光功率集中、难以窃听、成本低、安装快等优点,越来越多地被人们应用于工程和实践中。

    At the same time , the laser communication technology is increasingly used in engineering and practice because of its low cost , quick installment , eavesdropping-proof character and so on .

  17. 空间激光通信技术以其高速率、高保密性、抗干扰能力强的优势在通信技术中具有较高的地位,成为通信领域关注的焦点。

    With unique advantages of high bit rate , reliable privacy , and anti-interference ability , space laser communication has higher status in communications , and become the focus of telecommunication field .

  18. 通信领域中激光通信技术由于自身的优越性得到了广泛的应用。通过将空间激光通信与微波通信比较,介绍空间激光通信的优点:大容量、低功耗及体积小、质量轻等。

    By Comparison with microwave communication , the advantages of the free-space laser communication system , such as big capacity , low power consumption , small volume and light weight , are introduced .

  19. 激光通信技术具有通信速率高、数据容量大、传输安全保密等优点,现已成为无线通信领域中最具有潜力的技术。

    Laser communication technology has a high speed data communication , large capacity , safe and secret transmission etc , now it has become the most potential of the technology in the wireless communication field .

  20. 通过室内耦合基本参数测量和室外演示实验,验证了上述理论分析的可靠性,对进一步的大气激光通信技术提供理论和实验数据支持。

    By means of testing of indoor basic parameters and outdoor demonstrate experience , and the analyses before turned out to be reliable , which supplied theory and experience date support in further atmospheric laser communication experience .

  21. 激光通信技术具有保密性好,组网方便,通信容量大,小巧轻便,功耗低等一系列优点而被各国所关注。

    The technology of laser communication was concerned by great nation in the world , because of its advantage of good security , building network conveniently , large communication capacity , smallness and portable , low power consumption and the other advantages .

  22. 但是,无线激光通信技术的广泛应用受到了很多问题的制约,其中最主要的问题之一就是大气信道对无线光通信的影响。

    Nevertheless , wireless optical communication technology still has many problems which limit its development , the primary one of which is the influence of atmosphere channel on wireless laser communication . Firstly , this paper analyze two effect that atmosphere exerts on optical communication .

  23. 基于VxWorks的水下机器人声通信系统软件设计空中对水下平台激光声通信技术的探讨

    Development of Acoustic Communication System on Underwater Robot under VxWorks ; An Opto-Acoustic Method for Communication between Aerial and Underwater Platforms

  24. 国外空间激光通信系统技术最新进展

    The Latest Progress of Technology of Overseas Space Laser Communication System

  25. 空中对水下平台激光声通信技术的探讨

    An Opto-Acoustic Method for Communication between Aerial and Underwater Platforms

  26. 国外空间激光链路通信技术进展

    The Development of Space Laser Link Communications Technique

  27. 悄然复兴的激光大气通信技术

    Reviving Quietly Laser Atmospheric Communication Technology

  28. 激光光纤通信技术如何应用于地震勘探领域,乃是一个新课题。

    It is a new subject how we use laser optical fibre communication technique in seismic exploration .

  29. 本文介绍了激光无线通信技术在宽带接入中的优势,网络拓扑结构,调制和编码的方式以及传输波长的选择。

    The technology advantage , network topology , modulator and coding mode and choice of the wavelength of laser wireless access network are introduced in this paper .

  30. 激光大气通信技术由于具有宽带大容量、低成本、无需频率许可等优点,近几年来作为一种新的宽带无线接入方式受到人们的广泛关注。

    Free-space laser communication is becoming attractive as a new wideband wireless access technology in recent years by virtue of its many advantages , such as high-bandwidth , low cost and being license-free .