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Advanced Intensity-Modulation Continuous-Wave Lidar Techniques for ASCENDS CO_2 Column Measurements

机译:用于ASCENDS CO_2色谱柱测量的高级强度调制连续波激光雷达技术

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Global atmospheric carbon dioxide (CO2) measurements for the NASA Active Sensing of CO2 Emissions over Nights, Days, and Seasons (ASCENDS) space mission are critical for improving our understanding of global CO_2 sources and sinks. Advanced Intensity- Modulated Continuous-Wave (IM-CW) lidar techniques are investigated as a means of facilitating CO2 measurements from space to meet the ASCENDS measurement requirements. In recent numerical, laboratory and flight experiments we have successfully used the Binary Phase Shift Keying (BPSK) modulation technique to uniquely discriminate surface lidar returns from intermediate aerosol and cloud contamination. We demonstrate the utility of BPSK to eliminate sidelobes in the range profile as a means of making Integrated Path Differential Absorption (IPDA) column CO2 measurements in the presence of optically thin clouds, thereby eliminating the need to correct for sidelobe bias errors caused by the clouds. Furthermore, high accuracy and precision ranging to the surface as well as to the top of intermediate cloud layers, which is a requirement for the inversion of column CO_2 number density measurements to column CO2 mixing ratios, has been demonstrated using new hyperfine interpolation techniques that takes advantage of the periodicity of the modulation waveforms. This approach works well for both BPSK and linear swept-frequency modulation techniques. The BPSK technique under investigation has excellent auto-correlation properties while possessing a finite bandwidth. A comparison of BPSK and linear swept-frequency is also discussed in this paper. These results are extended to include Richardson-Lucy deconvolution techniques to extend the resolution of the lidar beyond that implied by limit of the bandwidth of the modulation, where it is shown useful for making tree canopy measurements.
机译:NASA在夜间,白天和四季进行的CO2主动排放(ASCENDS)太空任务的全球大气二氧化碳(CO2)测量对于增进我们对全球CO_2来源和汇的了解至关重要。研究了先进的强度调制连续波(IM-CW)激光雷达技术,该技术是促进从太空进行CO2测量以满足ASCENDS测量要求的一种方法。在最近的数值,实验室和飞行实验中,我们已经成功地使用了二进制相移键控(BPSK)调制技术来唯一地区分来自中间气溶胶和云层污染的表面激光雷达回波。我们展示了BPSK的功能,它可以消除距离剖面中的旁瓣,作为在存在光学薄云的情况下进行积分路径差分吸收(IPDA)色谱柱CO2测量的一种方法,从而消除了校正由云引起的旁瓣偏差误差的需要。此外,使用新的超精细插值技术已经证明了对表面以及中间云层顶部的高精度和高精度测距,这是将柱CO_2数密度测量值转换为柱CO2混合比的要求。调制波形的周期性的优点。这种方法对于BPSK和线性扫频调制技术都适用。所研究的BPSK技术具有出色的自相关特性,同时具有有限的带宽。本文还讨论了BPSK和线性扫频的比较。这些结果扩展到包括Richardson-Lucy反卷积技术,以将激光雷达的分辨率扩展到超出调制带宽限制所暗示的范围,在此情况下,该分辨率可用于进行树冠测量。

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