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NDVI imaging within space exploration plant growth modules - A case study from EDEN ISS Antarctica

机译:太空勘探植物增长模块内的NDVI成像 - 伊甸园南极洲的案例研究

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The concept of using informative wavelength imagery to monitor plant health and ecosystem stability from space is derived from the deployment of Landsat and the development of the Normalized Difference Vegetative Index, or NDVI. NDVI presents the relative reflectance of the Near IR from plant leaves as a measure of relative plant health in terrestrial habitats and landscapes. However, the use of NDVI and NDVI-like imagery is rapidly evolving toward higher spatial resolution and more localized assessments of plant health, such as the use of drone imagery to monitor outdoor farms, and the use of mounted cameras within indoor growing facilities. With the advancement of plant growth systems in support of human space exploration, especially to the moon and Mars, remote assessment of plant health within exploration habitats becomes a critical element for development. This project examines the deployment of NDVI-like capabilities within a planetary analog greenhouse on the Antarctic ice shelf. The EDEN ISS Antarctica project provides a case study on the practical use of specific wavelength imagery to monitor plant health within space exploration environments. GoPro cameras, modified to dual bandpass capabilities, provided Single Image NDVI analyses for a year within the EDEN ISS Future Exploration Greenhouse at the Neumayer Station III in Antarctica. Images were acquired on site, analyzed remotely, and archived for the entire duration of the deployment through a combination of back-room science activities and operational communications with the Neumayer Station III. The results provide insights into the potential use of specific imaging wavelengths to enhance crop production in space exploration.
机译:使用信息波长图像来监测空间的植物健康和生态系统稳定的概念是从地雷和归一化差异营养指数的开发,或NDVI的发展。 NDVI呈现植物叶片近红外的相对反射率作为陆地栖息地和景观中相对植物健康的衡量标准。然而,使用NDVI和NDVI样图像正在迅速发展朝着更高的空间分辨率和更局部化的植物健康评估,例如使用无人机图像来监测室外农场,以及在室内种植设施内使用安装的摄像机。随着植物生长系统的推进,支持人类空间探索,特别是月球和火星,勘探栖息地的植物健康的远程评估成为发展的关键因素。该项目探讨了南极冰架上的行星模拟温室内的NDVI样功能的部署。 Eden Iss antarctica项目提供了关于特定波长图像的实际应用的案例研究,以监测太空勘探环境中的植物健康状况。 GOPRO相机修改为双带通功能,提供了在南极洲Neumayer Station III的EDEN ISS未来勘探温室内的单幅图像NDVI分析。在现场收购的图像,远程分析,并通过后室科学活动和与Neumayer Station III的操作通信的组合进行了部署的整个持续时间。结果提供了对特定成像波长的潜在使用,以增强空间探索的作物生产的见解。

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