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首页> 外文期刊>IEEE Transactions on Antennas and Propagation >Atmospheric Phase Error in Coherent Laser Radar
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Atmospheric Phase Error in Coherent Laser Radar

机译:相干激光雷达的大气相位误差

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Coherent laser radar (ladar) deduces the shape, velocity and vibration of a remote target by measuring the round-trip optical phase or the Doppler shift of target-scattered light. Phase fluctuations from wind-driven atmospheric turbulence generate micro-Doppler or velocity error at mum/sec levels. The turbulence-induced noise spectra of all geometric phase components of the ladar, the average phase power spectral densities of arbitrary ladar receiver modes, and the resultant Doppler noise spectra, are derived in the Rytov approximation for any isotropic stationary turbulence, any wind velocity profile, any Fresnel number and any source illumination pattern. In Kolmogorov turbulence the piston phase noise spectrum, and the average phase shift over a time interval, are well-approximated by simple universal asymptotic forms dependent only on atmospheric coherence length, turbulence-weighted average wind speed Vmacr, and aperture size D. The spectrum slope changes at a critical frequency of order Vmacr/D. The approximate results do not depend on the usually-unknown outer scale of turbulence
机译:相干激光雷达(激光雷达)通过测量目标散射光的往返光学相位或多普勒频移来推断远程目标的形状,速度和振动。由风驱动的大气湍流引起的相位波动会在妈妈/秒的水平上产生微多普勒或速度误差。雷达的所有几何相位分量的湍流引起的噪声谱,任意雷达接收器模式的平均相功率谱密度以及由此产生的多普勒噪声谱都可以通过Rytov近似得出,对于任何各向同性的固定湍流,任何风速分布,任何菲涅尔数和任何光源照明模式。在Kolmogorov湍流中,活塞相​​位噪声谱以及在一个时间间隔内的平均相移由仅取决于大气相干长度,湍流加权平均风速Vmacr和孔径D的简单通用渐近形式很好地近似。斜率以Vmacr / D的临界频率变化。近似结果并不取决于通常未知的湍流外部尺度

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