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Plankton, Aerosol, Cloud, ocean Ecosystem (PACE) Mission Integration and Testing

机译:浮游生物,气溶胶,云,海洋生态系统(PACE)任务集成和测试

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This paper describes the plans, flows, key facilities, components and equipment necessary to fully integrate, functionally test and qualify the Plankton, Aerosol, Cloud, ocean Ecosystem (PACE) Observatory. PACE is currently in the design phase of mission implementation. It is scheduled to launch in 2022, extending and improving NASA's twenty-year record of satellite observations of global ocean biology, aerosols and clouds. PACE will advance the assessment of ocean health by measuring the distribution of phytoplankton, which are small plants and algae that sustain the marine food web. It will also continue systematic records of key atmospheric variables associated with air quality and the Earth's climate. The PACE observatory is comprised of the spacecraft and three instruments, an Ocean Color Instrument (OCI) and two polarimeters, the Hyper-Angular Rainbow Polarimeter 2 (HARP2) and the Spectro-Polarimeter for Exploration (SPEXone). The spacecraft and the OCI, which is the primary instrument, are developed and integrated at the NASA Goddard Space Flight Center (GSFC). The OCI is a hyper-spectral scanning (HSS) radiometer designed to measure spectral radiances from the ultraviolet to shortwave infrared (SWIR) to enable advanced ocean color and heritage cloud and aerosol particle science. The HARP2 and SPEXone are secondary instruments on the PACE observatory, acquired outside of GSFC. The Hyper-Angular Rainbow Polarimeter instrument (HARP2) is a wide swath imaging polarimeter that is capable of characterizing atmospheric aerosols for purposes of sensor atmospheric correction as well as atmospheric science. The SPEXone provides atmospheric aerosol and cloud data at high temporal and spatial resolution. This paper will focus on the Integration and Test (I&T) activities for the PACE mission at NASA GSFC. This I&T phase consists of mechanical, electrical and thermal integration and test of all the spacecraft subsystems and the integration of the instruments with the spacecraft. The PACE observatory environmental tests include electromagnetic interference (EMI)/electromagnetic compatibility (EMC), vibration, acoustics, shock, thermal balance, thermal vacuum, mass properties and center of gravity. This paper will also discuss the observatory shipment to the launch site as well as the launch site processing.
机译:本文介绍了计划,流程,关键设施,组件和设备,它们是对浮游生物,气溶胶,云,海洋生态系统(PACE)天文台进行完全集成,对其功能进行测试和鉴定所必需的。 PACE目前处于任务执行的设计阶段。它计划于2022年发射,扩大并改善NASA二十年来对全球海洋生物学,气溶胶和云的卫星观测记录。 PACE将通过测量浮游植物的分布来推进对海洋健康的评估,浮游植物是维持海洋食物网的小型植物和藻类。它还将继续系统记录与空气质量和地球气候有关的关键大气变量。 PACE天文台由航天器和三台仪器组成,分别是海洋颜色仪器(OCI)和两台偏振仪,超角彩虹偏振仪2(HARP2)和探测光谱仪(SPEXone)。该航天器和作为主要仪器的OCI是在NASA戈达德太空飞行中心(GSFC)上开发和集成的。 OCI是一种高光谱扫描(HSS)辐射计,旨在测量从紫外线到短波红外(SWIR)的光谱辐射,以实现先进的海洋颜色以及传统云和气溶胶粒子科学。 HARP2和SPEXone是在GSFC之外购买的PACE天文台上的辅助仪器。超角彩虹旋光仪(HARP2)是一种宽幅成像旋光仪,能够表征大气气溶胶,用于传感器大气校正和大气科学。 SPEXone可提供高时空分辨率的大气气溶胶和云数据。本文将重点介绍NASA GSFC的PACE任务的集成和测试(I&T)活动。 I&T阶段包括机械,电气和热集成以及所有航天器子系统的测试以及仪器与航天器的集成。 PACE天文台的环境测试包括电磁干扰(EMI)/电磁兼容性(EMC),振动,声学,冲击,热平衡,热真空,质量特性和重心。本文还将讨论将天文台运送到发射场以及发射场的处理过程。

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