首页> 外文会议>International Astronautical Congress >THE THERMAL HYPERSPECTRAL IMAGER: AN INSTRUMENT FOR REMOTE SENSING OF EARTH'S SURFACE, ATMOSPHERE, AND OCEAN, FROM A MICROSATELLITE PLATFORM
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THE THERMAL HYPERSPECTRAL IMAGER: AN INSTRUMENT FOR REMOTE SENSING OF EARTH'S SURFACE, ATMOSPHERE, AND OCEAN, FROM A MICROSATELLITE PLATFORM

机译:热超光谱成像器:来自微卫星平台的遥感地球表面,大气和海洋的仪器

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The Thermal Hyperspectral Imager (THI) is a low cost,low mass, power efficient instrument designed to acquire hyperspectral remote sensing data in the long-wave infrared. The instrument has been designed to satisfy mass, volume, and power constraints necessary to allow for its accommodation in a 95 kg micro-satellite bus, designed by staff and students at the University of Hawai'i. THI acquires approximately 30 separate spectral bands in the 8 to 14 μm wavelength region, at 10 wavenumber resolution. Rather than using filtering or dispersion to generate the spectral information, THI uses an interferometric technique. Light from the scene is focused onto an uncooled microbolometer detector array through a stationary interferometer,causing the light incident at each detector at any instant in time to be phase shifted by an optical path difference which varies linearly across the array in the along-track dimension. As platform motion translates the detector array in the along-track direction at a rate of approximately one pixel per frame (the camera acquires data at 30 Hz) the radiance from each scene element can be sampled at each OPD, thus generating an interferogram. Spectral radiance as a function of wavelength is subsequently obtained for each scene element using standard Fourier transform techniques. Housed in a pressure vessel to shield COTS parts from the space environment, the total instrument has a mass of 15 kg. Peak power consumption, largely associated with the calibration procedure, is <90 W. Jrom a nominal altitude of 550 km the resulting data would have a spatial resolution of approximately 300 m. Although an individual imaging event yields approximately 1 Gbit of raw uncompressed data,onboard processing (to convert the interferograms into a conventional spectral hypercube) can reduce this to tens of Mbits per scene. In this presentation we will describe a) the rationale for the project, b) the instrument design, and c) how the data are processed. Finally we will present data acquired by THI on a laboratory microscope stage to demonstrate the spectro-radiometric quality of the data that the instrument can provide.
机译:热超光谱成像器(THI)是一种低成本,低质量,功率高效仪器,旨在在长波红外获取高光谱遥感数据。该仪器旨在满足质量,体积和功率约束,以便在95公斤微卫星公共汽车中,由夏威夷大学的工作人员和学生设计。在10个波数分辨率下,在8到14μm波长区域中获取大约30个独立的光谱带。 THI使用干涉技术而不是使用过滤或分散来生成光谱信息。来自现场的光通过静止干涉仪聚焦在一个加工的微电位器探测器阵列上,使得在任何时刻在每个检测器处入射的光在沿轨道尺寸沿阵列中线性变化的光路径偏移。 。随着平台运动以每帧的大约一个像素的速率转换沿轨道方向上的沿轨道方向(在30 Hz时的数据)的速率转换,每个场景元素的辐射可以在每个OPD上进行采样,从而产生干扰图。随后使用标准傅里叶变换技术随后为每个场景元件获得作为波长的函数的光谱辐射。容纳在压力容器中以防止空间环境屏蔽婴儿床部件,总仪器的质量为15千克。峰值功耗,主要与校准程序相关,<90 W.JROM标称高度为550 km,结果数据将具有约300米的空间分辨率。尽管单个成像事件产生大约1 Gbit的原始未压缩数据,但是在板载处理(将干涉图转换为传统光谱超晶板)可以将其降低到每个场景的数十个Mbits。在本演示文稿中,我们将描述一个项目的理由,b)仪器设计和c)如何处理数据。最后,我们将在实验室显微镜阶段呈现THI获取的数据,以证明仪器可以提供的数据的光谱辐射质量。

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