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Optomechanical Design and Application of Solar-Skylight Spectroradiometer

机译:太阳能天窗光谱仪的光机械设计与应用

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摘要

Using a solar radiometer is an effective approach for improving the remote sensing of solar irradiance distribution and atmospheric composition. Long-term development of a solar scanning radiometer enables frequent and reliable measurement of atmospheric parameters such as the water vapor column and aerosol optical properties. However, the discrete wavelength radiometer has encountered a bottleneck with respect to its insufficient spectral resolution and limited observation waveband, and it has been unable to satisfy the needs of refined and intelligent on-site experiments. This study proposes a solar-skylight spectroradiometer for obtaining visible and near-IR fine spectrum with two types of measurement: direct-sun irradiance and diffuse-sky radiance. The instrument adopts distributed control architecture composed of the ARM-Linux embedded platform and sensor networks. The detailed design of the measuring light-path, two-axis turntable, and master control system will be addressed in this study. To determine all coefficients needed to convert instrument outputs to physical quantities, integrating sphere and Langley extrapolation methods are introduced for diffuse-sky and direct-sun calibration, respectively. Finally, the agreement of experimental results between spectroradiometers and measuring benchmarks (DTF sun-photometer, microwave radiometer, and Combined Atmospheric Radiative Transfer simulation) verifies the feasibility of the spectroradiometer system, and the radiation information of feature wavelengths can be used to retrieve the characteristics of atmospheric optics.
机译:使用太阳能辐射计是一种改善太阳辐照度分布和大气组成的遥感的有效方法。太阳能扫描辐射计的长期开发能够频繁和可靠地测量大气参数,例如水蒸气柱和气溶胶光学性质。然而,离散波长辐射计已经遇到了频谱分辨率不足和有限观察波段的瓶颈,并且它无法满足精制和智能现场实验的需求。本研究提出了一种用于获得可见和接近IR细谱的太阳能天窗,具有两种测量:直接阳光辐照度和漫反射天空光泽。该仪器采用由ARM-Linux嵌入式平台和传感器网络组成的分布式控制架构。在本研究中将解决测量光路,双轴转盘和主控制系统的详细设计。为了确定将仪器输出转换为物理量所需的所有系数,分别为漫射天空和直接阳光校准引入集成球体和兰利推断方法。最后,分光剂吸尘器和测量基准(DTF太阳光度计,微波辐射计和组合的大气辐射转移模拟之间的实验结果的协议验证了光谱仪系统的可行性,并且可以使用特征波长的辐射信息来检索特性大气光学。

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