系统用于远程读出多个无源传感器使用31太赫兹量子级联激光

M. Taslakov, V. Simeonov
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引用次数: 1

摘要

本文报道了脉冲分布反馈量子级联激光器(QCL)在多被动温度、压力、湿度或其他传感器的长开径读出系统中的应用。与通常使用的包含无线电或光学数据发射器的有源传感器不同,本系统在传感器侧不包含任何有源发射器。QCL和接收器在路径的一侧移位。在相反的路径侧,放置了一个改进的迈克尔逊干涉仪,基于角立方反反射器。一个后向反射器是固定的,另一个连接到相应的传感器上,当测量参数发生变化时,传感器就会移动。可移动后向反射器的有效行程范围小于lambda/2 (4.8 mum),以获得测量参数与接收信号之间的单调传递函数。该系统在微米和亚微米范围内测量距离,但距离发射台/接收站最远可达几公里。利用150 ~ 200ns的相对较长的激光脉冲扫描干涉仪并读出信息。在脉冲期间,QCL频率在40ghz范围内扫频。这种扫频可以显著降低大气湍流对数据传输精度的影响。当扫描辐射照亮干涉仪时,由于光束不同部分之间的干扰,接收信号发生振荡。振荡周期和振荡相位分别取决于后向反射器之间的距离和这一距离的变化。该系统的主要优点是,一个单一的收发对允许读取多组完全无源传感器,提供高水平的数据保护,由于低波束发散
本文章由计算机程序翻译,如有差异,请以英文原文为准。
System for a remote readout of multiple passive sensors using 31 THz quantum cascade laser
We report on an application of a pulsed distributed feedback quantum cascade laser (QCL) for long open path readout system of multiple passive temperature, pressure, humidity or other sensors. Unlike the usually used active sensors, containing radio or optical data transmitters, the presented system does not contains any active transmitters at the sensors side. The QCL and the receiver are displaced on one side of the path. On the opposite path side, a modified Michelson interferometer, based on corner cube retroreflectors, is placed. One retroreflector is fixed and another one is attached to the appropriate sensor, which moves it when the measured parameter is changed. The useful travel range of the movable retroreflector is less than lambda/2 (4.8 mum) to obtain a monotonic transfer function between the measured parameters and the received signals. This system measures distances in the micrometer and sub-micrometer range but displaced up to a few kilometers from the transmitter/receiver station. A relatively long laser pulse of 150-200 ns is used to scan the interferometers and to read out the information. During the pulse, the QCL frequency is swept within a 40 GHz range. This frequency sweeping allows decreasing significantly the influence of the atmospheric turbulence over the accuracy of the data transfer. When the swept radiation illuminates the interferometer, oscillations in the received signal occur due to the interference between the different parts of the beam. The period of the oscillations and the oscillation phase depend on the distance between retroreflectors and the changes in this distance, respectively. The main advantage of the system proposed is that a single transmitter-receiver pair allows reading out multiple sets of completely passive sensors offering high level of data protection due to the low beam divergency
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