【24h】

SWIR Air Glow Mapping of the Night Sky

机译:危险空气焕发夜空的映射

获取原文

摘要

It is well known that luminance from photo-chemical reactions of hydroxyl ions in the upper atmosphere (-85 km altitude) produces a significant amount of night time radiation in the short wave infra-red (SWIR) band of wave length 0.9 to 1.7 μm. Numerous studies of these phenomena have demonstrated that the irradiance shows significant temporal and spatial variations in the night sky. Changes in weather patterns, seasons, sun angle, moonlight, etc have the propensity to alter the SWIR air glow irradiance pattern. By performing multiple SWIR measurements a mosaic representation of the celestial hemisphere was constructed and used to investigate these variations over time and space. The experimental setup consisted of two sensors, an InGaAs SWIR detector and a visible astronomical camera, co-located and bore sighted on an AZ-EL gimbal. This gimbal was programmed to view most of the sky using forty five discrete azimuth and elevation locations. The dwell time at each location was 30 seconds with a total cycle time of less than 30 minutes. The visible astronomical camera collected image data simultaneous with the SWIR camera in order to distinguish SWIR patterns from clouds. Data was reduced through batch processing producing polar representations of the sky irradiance as a function of azimuth, elevation, and time. These spatio-temporal variations in the irradiance, both short and long term, can be used to validate and calibrate physical models of atmospheric chemistry and turbulence. In this paper we describe our experimental setup and present some results of our measurements made over several months in a rural marine environment on the Islands of Kauai and Maui Hawaii.
机译:众所周知,上层大气中羟基离子的光学反应(-85km高度)的亮度产生大量的夜间时间辐射,在波长的短波红外线(SWIR)波长0.9至1.7μm 。对这些现象的许多研究表明,辐照度在夜空中显示出显着的时间和空间变化。天气模式,季节,太阳角,月光等的变化具有改变旋转空气发光辐照度模式的倾向。通过执行多次SWIR测量,构建天体半球的马赛克表示并用于研究这些变化随时间和空间。实验设置包括两个传感器,Ingaas SWIR探测器和可见的天文相机,共同定位和在AZ-EL万向节上窥探。这个Gimbal被编程为使用四十五间隔方位角和高程位置来查看大部分天空。每个位置的停留时间为30秒,总循环时间不到30分钟。可见天文相机与SWIR相机同时收集图像数据,以区分从云的SWIR模式。通过作为方位角,高度和时间的函数产生天空辐照度的极性表示的批处理来减少数据。这些时空变化在短期和长期内辐照度,可用于验证和校准大气化学和湍流的物理模型。在本文中,我们描述了我们的实验设置,并提出了在考艾岛和毛伊夏威夷岛的农村海洋环境中进行了几个月的测量结果。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号