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Signal optimization noise reduction and systematic error compensation methods in long-path DOAS measurements

机译:长距离DOAS测量中的信号优化降噪和系统误差补偿方法

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Abstract: The increment of the exploitable optical path represents one of the most important efforts in the differential optical absorption spectroscopy (DOAS) instruments improvement. The methods that allow long path measurements in the UV region are presented and discussed in this paper. These methods have been experimented in the new Italian DOAS instrument - SPOT - developed and manufactured by Kayser Italia. The system was equipped with a tele-controlled optical shuttle on the light source unit, allowing background radiation measurement. Wavelength absolute calibration of spectra by means of a collimated UV beam from a mercury lamp integrated in the telescope has been exploited. Besides, possible thermal effects on the dispersion coefficients of the holographic grating have been automatically compensated by means of a general non-linear fit during the spectral analysis session. Measurements in bistatic configuration have been performed in urban areas at 1300 m and 2200 m in three spectral windows from 245 to 380 nm. Measurements with these features are expected in the other spectral windows on path lengths ranging from about 5 to 10 km in urban areas. The DOAS technique can be used in field for very fast measurements in the 245-275 nm spectral range, on path lengths up to about 2500 m. !5
机译:摘要:可利用光路的增加代表了差分光吸收光谱(DOAS)仪器改进中最重要的努力之一。本文介绍并讨论了允许在UV区域进行长距离测量的方法。这些方法已经在由Kayser Italia开发和制造的新型意大利DOAS仪器SPOT中进行了实验。该系统在光源单元上配备了遥控光学梭,可以测量背景辐射。已经利用来自集成在望远镜中的水银灯的准直的紫外光束对光谱进行波长的绝对校准。此外,在光谱分析过程中,借助于一般的非线性拟合,已经自动补偿了对全息光栅的色散系数的可能的热影响。在城市地区,在245至380 nm的三个光谱窗口中,在1300 m和2200 m处进行了双基地配置的测量。具有这些特征的测量有望在其他光谱窗口中,在城市地区的路径长度范围从大约5到10 km。 DOAS技术可以在野外用于在245-275 nm光谱范围内进行非常快速的测量,最大路径长度约为2500 m。 !5

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