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首页> 外文期刊>Applied optics >Optimizing three-frequency Na, Fe, and He lidars for measurements of wind, temperature, and species density and the vertical fluxes of heat and constituents
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Optimizing three-frequency Na, Fe, and He lidars for measurements of wind, temperature, and species density and the vertical fluxes of heat and constituents

机译:优化三频Na,Fe和He激光雷达,以测量风,温度和物种密度以及热量和成分的垂直通量

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摘要

The measurement accuracies of three-frequency resonance fluorescence Doppler lidars are limited by photon noise and uncertainties in the laser frequency and line width. We analyze the performance of Na, Fe, and He lidars using a new technique, which incorporates precise information about the absorption spectrum of the species and the pulse spectrum of the lasers. We derive the measurement errors associated with photon noise, laser frequency errors, and laser line width errors. Optimizing the lidar design, based upon the measurement requirements, can improve system performance by reducing the required integration times, enabling measurements to be made in less time or at higher altitudes where the densities and signal levels are smaller. The optimum frequency shift for observing heat and constituent transport velocities is 689 MHz (580 MHz) at night (day) for Na lidars and 774 MHz (597 MHz) for Fe lidars. The optimum frequency shift for observing winds, temperature, and He densities is 3.66 GHz (3.16 GHz) at night (day) for He lidars.
机译:三频共振荧光多普勒激光雷达的测量精度受到光子噪声以及激光频率和线宽不确定性的限制。我们使用一种新技术来分析Na,Fe和He激光雷达的性能,该技术结合了有关物质的吸收光谱和激光脉冲光谱的精确信息。我们得出与光子噪声,激光频率误差和激光线宽误差相关的测量误差。根据测量要求优化激光雷达设计,可以通过减少所需的积分时间来提高系统性能,从而可以在更短的时间内或在密度和信号电平较小的较高海拔下进行测量。对于Na激光雷达,观察热和成分传输速度的最佳频率偏移是晚上(白天)为689 MHz(580 MHz),对于Fe激光雷达是774 MHz(597 MHz)。对于He激光雷达,观察风,温度和He密度的最佳频移为晚上(白天)为3.66 GHz(3.16 GHz)。

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