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Design and engineering development of single-mode fiber coupling system for Laser Doppler Velocity Radar

机译:激光多普勒速度雷达单模光纤耦合系统的设计与工程开发

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Coupling of scattering light in space into a single-mode fiber is a key technology in the process of developing the Laser Doppler Velocity Radar. In order to make sure that the radar can get the longest detect distance, we have discussed the method of determining the key parameters of the receiver/transmitter common-path optical system based on the single-mode fiber coupling, from the points of laser radar detect distance equation, principle of single-mode fiber coupling efficiency reach maximum, and considerations of laser transmitter. In the engineering development process of an laser Doppler velocity radar, we have designed the optical system which fulfills the requirement of detect distance bigger than 3Km, then given out simulation results of single-mode fiber coupling efficiency versus lens spherical aberration, fiber defocus and fiber tilt. The tolerance analysis result indicates that the coupling efficiency will bigger than 52% under the usual levels of optical manufacture and assembly. At last we designed specialized equipment for testing the single-mode fiber coupling efficiency of the system we developed, the results showed that after mechanical vibration and thermal experiments, the single-mode coupling efficiency is 55.9%, and in the operating temperature range of 20±3°C, the lowest coupling efficiency is 45%. which is still bigger than 35% as the system required to make sure the detect distance bigger than 3Km.
机译:将空间中的散射光耦合到单模光纤中是开发激光多普勒速度雷达过程中的关键技术。为了确保雷达能够获得最长的检测距离,我们从激光雷达的角度出发,讨论了基于单模光纤耦合确定收发器共路径光学系统关键参数的方法。检测距离方程,单模光纤耦合效率达到最大的原理以及激光发射器的注意事项。在激光多普勒测速雷达的工程开发过程中,我们设计了满足检测距离大于3Km的光学系统,然后给出了单模光纤耦合效率与透镜球面像差,光纤散焦和光纤的仿真结果。倾斜。公差分析结果表明,在通常的光学制造和组装水平下,耦合效率将大于52%。最后,我们设计了专用设备来测试我们开发的系统的单模光纤耦合效率,结果表明,经过机械振动和热实验,单模耦合效率为55.9%,并且在20°C的工作温度范围内±3°C,最低耦合效率为45%。仍然大于35%,因为系统需要确保检测距离大于3Km。

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