首页> 外文会议>Sensors, Systems, and Next-Generation Satellites >The NASA Plankton, Aerosol, Cloud, ocean Ecosystem (PACE) mission: an emerging era of global, hyperspectral Earth system remote sensing
【24h】

The NASA Plankton, Aerosol, Cloud, ocean Ecosystem (PACE) mission: an emerging era of global, hyperspectral Earth system remote sensing

机译:美国宇航局浮游生道,气溶胶,云,海洋生态系统(PACE)任务:全球高光谱系统遥感的新兴时期

获取原文

摘要

The Plankton, Aerosol, Cloud, ocean Ecosystem (PACE) mission represents NASA's next investment in satellite ocean color and the study of Earth's ocean-atmosphere system, enabling new insights into oceanographic and atmospheric responses to Earth's changing climate. PACE objectives include extending systematic cloud, aerosol, ocean biological and biogeochemical data records, making essential ocean color measurements to further understand marine carbon cycles and ecosystem responses to a changing climate, as well as improving knowledge of how aerosols influence ocean ecosystems and, conversely, how ocean ecosystems and photochemical processes affect the atmosphere. PACE objectives also encompass management of fisheries, large freshwater bodies, and water quality and reducing uncertainties in climate and radiative forcing models of the Earth system. PACE observations will also provide information on radiative properties of land surfaces and characterization of the vegetation and soils that dominate their reflectance. The primary PACE instrument - the Ocean Color Instrument (OCI) - is a hyperspectral imaging radiometer that spans the ultraviolet to shortwave infrared, with a ground sample distance of 1-km at nadir. This includes continuous collection of spectra from 340 nm to 890 nm in 5 nm steps. The PACE payload is complemented by two multi-angle polarimeters with spectral ranges that span the visible to near-infrared region. Scheduled for launch in late 2022-to-early 2023, the PACE observatory will enable significant advances in the study of Earth's biogeochemistry, carbon cycle, clouds, hydrosols, and aerosols in the ocean-atmosphere system. We present a brief overview of the PACE mission, followed by a discussion of the capabilities and design concept of OCI.
机译:浮游生物,气溶胶,云,海洋生态系统(PACE)任务代表了美国宇航局的下一次对卫星海洋颜色的投资和地球海洋气氛系统的研究,使新的海洋和大气对地球变化的气候反应进行了新的洞察力。步伐包括延伸系统云,气溶胶,海洋生物和生物地球化学数据记录,使得必要的海洋颜色测量,以进一步了解海洋碳循环和生态系统对变化的气候的反应,以及改善气溶胶如何影响海洋生态系统的知识,相反,海洋生态系统和光化学过程如何影响大气。步伐还包括渔业,大型淡水机构和水质的管理,降低地球系统气候和辐射强制模型的不确定性。速度观察还将提供有关陆地表面的辐射性质的信息,以及植被和土壤的表征,占主导地位的植被和土壤。主要速度仪器 - 海洋彩色仪器(OCI) - 是一个高光谱成像辐射计,它跨越紫外线到短波红外线,在Nadir的地面样品距离为1公里。这包括在5 nm步骤中从340nm到890nm的连续集合。步伐有效载荷由两个多角度偏振仪互补,具有跨越近红外区域可见的光谱范围。计划于2022年至2023年初期推出,步伐天文台将在海洋气氛系统中对地球生物绿化学,碳循环,云,加氢溶胶和气溶胶进行重大进展。我们简要介绍了步伐使命,然后讨论了OCI的能力和设计理念。

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