首页> 外文会议>Society of Photo-optical Instrumentation Engineers Europe Conference on Free-Space Laser Communication Technologies >Mitigation of aberration in a beam shaping telescope and optical inhomogeinity in a free-space optical path using an extended light source coupled to the telescope
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Mitigation of aberration in a beam shaping telescope and optical inhomogeinity in a free-space optical path using an extended light source coupled to the telescope

机译:使用延伸光源耦合到望远镜的自由空间光路中梁成形望远镜和光学欠孔的像差减轻

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One important challenge to implementation of efficient free-space optical (FSO) systems is optical signal scintillation and fade caused by atmospheric turbulence and optical aberration in output beam shaping devices and windows. A new method for mitigation of these harmful effects to delivery of optical radiation to remote subscriber terminals, such as aberration and refraction index non-uniformity in a free-space path, has been developed and tested in field experiments. A known approach to damping optical signal scintillation caused by the turbulence in a free-space path was based on forming several substantially parallel optical beams modulated by the same transmit signal and overlapping such beams on a receive aperture. The beams transmitted through different free-space paths with uncorrelated optical inhomogeinity have different, uncorrelated, transverse distribution of light intensity. Their overlapping provides for averaging out the light intensity non-uniformity and efficient suppression of the signal scintillation. The existing approach to mitigation of optical aberration in atmosphere requires targeting several beam shaping telescopes at a subscriber. This is not always practical. For example, in point-multipoint FSO systems servicing multiple subscribers it is advisable to allocate one telescope per subscriber to achieve highest compactness and cost effectiveness of a system. Also the existing method has limitations in solving a problem of window glass optical inhomogeinity and aberration in the telescope itself. A new method for optical aberration mitigation is based on using an extended light source with sufficiently large light emitting surface and properly selected width of output radiation angular spectrum coupled to the telescope targeted at a subscriber terminal. The method has been implemented in a point-multipoint base terminal having multiple output beams that could be independently targeted at different subscriber terminals. Results of the trials are presented in this paper. The extended source with given light emitting surface diameter d and angular spectrum widthΘmay be implemented with an optical fiber having core diameter d and numerical aperture NA = sin(Θ/2) installed in optical path between a light source with compact light emitting surface, such as a semiconductor laser, and the telescope. Exit end of such fiber coupled to the telescope acts as an extended light source with angular sizeαdetermined by the fiber core diameter and a focal length of the telescope via a formulaα= d/f. It has been proven in our field experiments, that by using the source with properly selected angular size and angular spectrum width the following results may be achieved with single telescope targeted at a subscriber terminal: a) damping of optical signal scintillation at a remote photo-detector (the signal standard deviation has been decreased by several times for wide range of scintillation indexes); and b) elimination of the signal fade caused by aberration in the telescope and output window (in our experiments the extended source provided 5 to 30 times increase in average signal power at the photo-detector for a variety of window glass samples used in residential construction).
机译:实现有效的自由空间光学(FSO)系统的一个重要挑战是光学信号闪烁和由大气湍流和输出光束整形装置和窗口中的光学像差引起的褪色。在现场实验中开发并在现场实验中开发了一种对远程用户终端输送到远程用户终端的远程用户终端的诸如像差和折射率不均匀性的新方法。通过自由空间路径中的湍流引起的抖动光学信号闪烁的已知方法是基于形成由相同的发射信号调制的几个基本平行的光束,并在接收孔上重叠这种梁。通过不同的自由空间路径传输的光束具有不相关的光学失衡,具有不同,不相关,光强度的横封分布。它们的重叠提供了平均光强度不均匀性和有效抑制信号闪烁。在大气中减轻光学像差的现有方法需要在订户处瞄准几个梁整形望远镜。这并不总是实用的。例如,在维修多个订阅者的点 - 多点FSO系统中,建议每个用户分配一个望远镜以实现系统的最高紧凑性和成本效益。现有方法还具有局限性解决望远镜本身的窗玻璃光学不足和像差的问题。一种用于光学像差缓解的新方法是基于使用具有足够大的发光表面的延伸光源并且正确选择的输出辐射角度宽度,该输出辐射角谱耦合到瞄准用户终端的望远镜。该方法已经在点 - 多点基本终端中实现,该终端终端终端具有多个输出波束,其可以在不同的用户终端上独立地定位。本文提出了试验结果。具有给定发光表面直径的延伸源和角谱宽度θmay用芯直径D和数值孔径Na = SIN(θ/ 2)安装在具有紧凑的发光表面的光源之间的光路中的光纤,例如作为半导体激光器和望远镜。这种光纤的出口端连接到望远镜作为延伸的光源,其具有通过纤维芯直径的角尺寸α和望远镜的焦距和望远镜的焦距。 It has been proven in our field experiments, that by using the source with properly selected angular size and angular spectrum width the following results may be achieved with single telescope targeted at a subscriber terminal: a) damping of optical signal scintillation at a remote photo-探测器(信号标准偏差已经减少了多次闪烁指数); b)消除由望远镜和输出窗口中的像差引起的信号衰落(在我们的实验中,扩展源提供5至30倍的平均信号功率在居住施工中使用的各种窗玻璃样本的平均信号电源增加)。

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