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Design and analysis of the optical transceiver for mobile atmospheric laser communication

机译:移动大气激光通信光收发器的设计与分析

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摘要

The concept of mobile atmospheric laser communication (MALC) is introduced in this paper. Atmospheric attenuation, turbulence-induced scintillation and beam wander cause deep fades in the beam power and degrade the optical channel. The optical transceiver presented in this paper is designed for a MALC test system. Currently achievable hardware performance capabilities for the MALC terminals are used as input parameters to the analysis. A novel optical transceiver structure is designed. Link margin is analyzed using the MALC analysis software, our optical link analysis program. Data rate, bit-error rate, prime transmit power requirements, optical link margin, pulse width, background signal, aperture quality and atmospheric effects drive the optical transmitter requirements. Results are displayed as required aperture size, aperture number and the spacing between apertures for a given range and terminal moving speed. The aperture size is parameterized by data rate, transmitting optical power and wavelength. Si-APD and CCD are selected as the main receive detectors. The receiver aperture, detector size (diameter), receiver speed and sensitivity are the main factors to consider in the design of the receiver.
机译:本文介绍了移动式大气激光通信(MALC)的概念。大气衰减,湍流引起的闪烁和光束漂移会引起光束功率的深度衰减并降低光通道的质量。本文介绍的光收发器是为MALC测试系统设计的。 MALC终端当前可实现的硬件性能能力被用作分析的输入参数。设计了一种新颖的光收发器结构。使用我们的光链路分析程序MALC分析软件来分析链路余量。数据速率,误码率,主要发射功率要求,光链路余量,脉冲宽度,背景信号,孔径质量和大气效应驱动了光发射器要求。结果将显示为给定范围和终端移动速度所需的孔径大小,孔径数以及孔径之间的间隔。孔径大小由数据速率,传输光功率和波长来参数化。 Si-APD和CCD被选作主要的接收探测器。接收器孔径,检测器尺寸(直径),接收器速度和灵敏度是接收器设计中要考虑的主要因素。

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