首页> 外文期刊>International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences >IMPLEMENTATION STRATEGY OF VISIBLE AND NEAR-INFRARED IMAGING SPECTROMETER ON YUTU-2 ROVER BASED ON VISION MEASUREMENT TECHNOLOGY
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IMPLEMENTATION STRATEGY OF VISIBLE AND NEAR-INFRARED IMAGING SPECTROMETER ON YUTU-2 ROVER BASED ON VISION MEASUREMENT TECHNOLOGY

机译:基于视觉测量技术的Yutu-2流动站可见和近红外成像光谱仪的实施策略

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The Chang'e-4 successfully landed on the far side of the moon in January 2019. By the 12th lunar day, its Yutu-2 rover had achieved a breakthrough travel distance of greater than 300 m. A visible and near-infrared imaging spectrometer (VNIS), consisting of a visible and near-infrared (VNIR) imaging spectrometer and a shortwave infrared (SWIR) spectrometer was used for detecting mineralogical compositions of lunar-surface materials. Because VNIS is fixed on the front of the rover, and the field-of-view (FOV) of VNIR and SWIR are small (8.5° and 3.6° respectively), approaching and accurately pointing at the specific science target depend completely on the precise control of the moving rover.In this paper, a successful method of VNIS target detection based on vision measurement is proposed. First, the accurate position of the target is calculated via navigation camera imaging. Then, the moving path is planned by considering the terrain environment, illumination, communication condition, and other constraints. After the rover moves to the designed position, the binocular imaging of the hazard-avoidance cameras are activated, the detection direction and forward distance are calculated according to the images, and the FOV trajectory of the VINS is predicted while moving. Finally, by choosing the required moving control parameters, the imaging field of the VINS accurately cover the detected targets visually.These methods have been verified many times, and the results show that they are effective and feasible. The research results based on the VNIS data have successfully revealed the material composition on the far side of the moon and have deepened human understanding of its formation and evolution.
机译:长安4成功登陆月球的远端2019年1月。在月球日,其玉图-2流浪者已经实现了大于300米的突破行程距离。由可见光和近红外(VNIR)成像光谱仪和短波红外(SWIR)光谱仪组成的可见和近红外成像光谱仪(VNI)用于检测月球表面材料的矿物学组合物。因为vnis固定在流动站的前面,并且Vnir和swir的视野(foV)分别为小(8.5°和3.6°),接近和准确地指向特定的科学目标依赖于精确提出了一种控制移动漫游者。提出了一种基于视觉测量的VNIS目标检测的成功方法。首先,通过导航摄像机成像来计算目标的准确位置。然后,通过考虑地形环境,照明,通信条件和其他限制来计划移动路径。在流动站移动到设计位置之后,激活危险避免摄像机的双目成像,根据图像计算检测方向和正向距离,并且在移动时预测VINS的FOV轨迹。最后,通过选择所需的移动控制参数,VINS的成像场可视地覆盖检测到的目标。这些方法已经多次验证,结果表明它们是有效和可行的。基于VNIS数据的研究结果已成功揭示了月球远侧的材料组成,并加深了对其形成和进化的人类理解。

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