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Heterodyne lidar returns in the turbulent atmosphere: performance evaluation of simulated systems

机译:异质激光雷达在湍流大气中返回:模拟系统的性能评估

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摘要

Simulations of beam propagation in three-dimensional random media were used to study the effects of atmospheric refractive turbulence on coherent lidar performance. By use of the two-beam model, the lidar return is expressed in terms of the overlap integral of the transmitter and the virtual (backpropa-gated) local oscillator beams at the target, reducing the problem to one of computing irradiance along the two propagation paths. This approach provides the tools for analyzing laser radar with general refractive turbulence conditions, beam truncation at the antenna aperture, beam-angle misalignment, and arbitrary transmitter and receiver configurations. Simplifying assumptions used in analytical studies, were tested and treated as benchmarks for determining the accuracy of the simulations. The simulation permitted characterization of the effect on lidar performance of the analytically intractable return variance that results from turbulent fluctuations as well as of the heterodyne optical power and systemantenna efficiency.
机译:模拟了三维随机介质中光束的传播,以研究大气折射湍流对相干激光雷达性能的影响。通过使用两光束模型,激光雷达的回波以发射器与目标处虚拟(反向传播)的本地振荡器光束的重叠积分表示,从而减少了沿两个传播方向计算辐照度的问题路径。这种方法为分析具有一般折射湍流条件,天线孔径处的光束截断,光束角度未对准以及任意发射器和接收器配置的激光雷达提供了工具。测试分析研究中使用的简化假设,并将其作为确定模拟准确性的基准。通过仿真可以表征湍流波动以及外差光功率和系统天线效率对难于分析的返回方差对激光雷达性能的影响。

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