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火星2020漫游车桅杆相机变焦(Mastcam-Z)多光谱立体成像仪的飞行前校准

Pre-Flight Calibration of the Mars 2020 Rover Mastcam Zoom (Mastcam-Z) Multispectral, Stereoscopic Imager.

作者信息

Hayes Alexander G, Corlies P, Tate C, Barrington M, Bell J F, Maki J N, Caplinger M, Ravine M, Kinch K M, Herkenhoff K, Horgan B, Johnson J, Lemmon M, Paar G, Rice M S, Jensen E, Kubacki T M, Cloutis E, Deen R, Ehlmann B L, Lakdawalla E, Sullivan R, Winhold A, Parkinson A, Bailey Z, van Beek J, Caballo-Perucha P, Cisneros E, Dixon D, Donaldson C, Jensen O B, Kuik J, Lapo K, Magee A, Merusi M, Mollerup J, Scudder N, Seeger C, Stanish E, Starr M, Thompson M, Turenne N, Winchell K

机构信息

Department of Astronomy, Cornell University, Ithaca, NY 14850 USA.

Cornell Center for Astrophysics and Planetary Science, Cornell University, Ithaca, NY 14850 USA.

出版信息

Space Sci Rev. 2021;217(2):29. doi: 10.1007/s11214-021-00795-x. Epub 2021 Feb 18.

Abstract

UNLABELLED

The NASA rover Mast Camera Zoom (Mastcam-Z) system is a pair of zoomable, focusable, multi-spectral, and color charge-coupled device (CCD) cameras mounted on top of a 1.7 m Remote Sensing Mast, along with associated electronics and two calibration targets. The cameras contain identical optical assemblies that can range in focal length from 26 mm ( ) to 110 mm ( ) and will acquire data at pixel scales of 148-540 μm at a range of 2 m and 7.4-27 cm at 1 km. The cameras are mounted on the rover's mast with a stereo baseline of  cm and a toe-in angle of (per camera). Each camera uses a Kodak KAI-2020 CCD with active pixels and an 8 position filter wheel that contains an IR-cutoff filter for color imaging through the detectors' Bayer-pattern filters, a neutral density (ND) solar filter for imaging the sun, and 6 narrow-band geology filters (16 total filters). An associated Digital Electronics Assembly provides command data interfaces to the rover, 11-to-8 bit companding, and JPEG compression capabilities. Herein, we describe pre-flight calibration of the Mastcam-Z instrument and characterize its radiometric and geometric behavior. Between April 26 and May 9 , 2019, ∼45,000 images were acquired during stand-alone calibration at Malin Space Science Systems (MSSS) in San Diego, CA. Additional data were acquired during Assembly Test and Launch Operations (ATLO) at the Jet Propulsion Laboratory and Kennedy Space Center. Results of the radiometric calibration validate a 5% absolute radiometric accuracy when using camera state parameters investigated during testing. When observing using camera state parameters not interrogated during calibration (e.g., non-canonical zoom positions), we conservatively estimate the absolute uncertainty to be . Image quality, measured via the amplitude of the Modulation Transfer Function (MTF) at Nyquist sampling (0.35 line pairs per pixel), shows across all zoom, focus, and filter positions, exceeding the design requirement. We discuss lessons learned from calibration and suggest tactical strategies that will optimize the quality of science data acquired during operation at Mars. While most results matched expectations, some surprises were discovered, such as a strong wavelength and temperature dependence on the radiometric coefficients and a scene-dependent dynamic component to the zero-exposure bias frames. Calibration results and derived accuracies were validated using a Geoboard target consisting of well-characterized geologic samples.

SUPPLEMENTARY INFORMATION

The online version contains supplementary material available at 10.1007/s11214-021-00795-x.

摘要

未标注

美国国家航空航天局(NASA)的火星车桅杆相机变焦(Mastcam-Z)系统是一对可变焦、可对焦、多光谱且彩色电荷耦合器件(CCD)相机,安装在1.7米高的遥感桅杆顶部,还包括相关电子设备和两个校准目标。这些相机包含相同的光学组件,焦距范围从26毫米( )到110毫米( ),在2米的距离处将以148 - 540微米的像素尺度采集数据,在1千米处则为7.4 - 27厘米。相机安装在火星车的桅杆上,立体基线为 厘米,每个相机的前束角为 (每个相机)。每个相机使用柯达KAI - 2020 CCD,有 个有效像素,以及一个8位置滤光轮,其中包含一个红外截止滤光片,用于通过探测器的拜耳图案滤光片进行彩色成像,一个中性密度(ND)太阳滤光片用于拍摄太阳,还有6个窄带地质滤光片(总共16个滤光片)。一个相关的数字电子组件为火星车提供命令数据接口、11位到8位的压缩扩展以及JPEG压缩功能。在此,我们描述了Mastcam-Z仪器的飞行前校准,并对其辐射和几何行为进行了表征。在2019年4月26日至5月9日期间,在加利福尼亚州圣地亚哥的马林空间科学系统公司(MSSS)进行独立校准时采集了约45,000张图像。在喷气推进实验室和肯尼迪航天中心的组件测试和发射操作(ATLO)期间还采集了其他数据。辐射校准结果验证了在使用测试期间研究的相机状态参数时,绝对辐射精度为5%。当使用在校准期间未询问的相机状态参数(例如非标准变焦位置)进行观测时,我们保守估计绝对不确定度为 。通过奈奎斯特采样(每像素0.35线对)时调制传递函数(MTF)的幅度测量的图像质量,在所有变焦、对焦和滤光位置均显示 ,超过了 的设计要求。我们讨论了校准过程中的经验教训,并提出了战术策略,这些策略将优化在火星运行期间获取的科学数据的质量。虽然大多数结果符合预期,但也发现了一些意外情况,例如辐射系数对波长和温度有很强的依赖性,以及零曝光偏置帧存在场景依赖的动态分量。使用由特征明确的地质样本组成的测板目标验证了校准结果和导出的精度。

补充信息

在线版本包含可在10.1007/s11214 - 021 - 00795 - x获取的补充材料。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ee11/7892537/a75232c6a859/11214_2021_795_Fig1_HTML.jpg

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