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Landsat 9: Status and Plans

机译:Landsat 9:状态和计划

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The Landsat 9 mission, currently under development and proceeding towards a targeted launch in late 2020, will be very similar to the Landsat 8 mission, launched in 2013. Like Landsat 8, Landsat 9 is a joint effort between NASA and USGS with two sensors, the Operational Land Imager 2 (OLI-2), essentially a copy of the OLI on Landsat 8 and the Thermal Infrared Sensor 2 (TIRS-2), very similar to the TIRS on Landsat 8. The OLI-2, like OLI, provides 14-bit image data, though for Landsat 9, all 14 bits will be retained and transmitted to the ground. The focal plane modules to be used for OLI-2 were flight spares for OLI and are currently being retested by Ball Aerospace. Results indicate radiometric performance comparable to OLI. The TIRS was a class C instrument, with a 3-year design lifetime, and therefore had limited redundancy. TIRS-2 will be a class B instrument, with a 5-year design lifetime, like OLI (and OLI-2), necessitating design changes to increase redundancy. The stray light and Scene Select Mechanism (SSM) encoder problems observed on orbit with TIRS have also instigated a few design changes to TIRS-2. Stray light analysis and testing have indicated that additional baffles in the TIRS-2 optical system will suppress the out-of-field response. The SSM encoder problems have not been definitively traced to a route cause, though conductive anodic filament growth in the circuit boards is suspected. Improved designs for the encoder are being considered for TIRS-2. The spare Focal Plane Array (FPA) from TIRS is planned for use in TIRS-2; FPA spectral and radiometric performance testing is scheduled for September of this year at NASA's Goddard Space Flight Center.
机译:目前正在开发和进入2020年代末期的兰德拉特9个使命,将与2013年推出的Landsat 8使命非常相似。就像Landsat 8一样,Landsat 9是NASA和USGS的共同努力,其中两个传感器操作陆地成像器2(OLI-2),基本上是Landsat 8上的Oli的副本和热红外传感器2(TiRS-2),与Landsat 8上的TIRS非常相似。奥利-2(如Oli)提供14位图像数据,但对于Landsat 9,所有14位将被保留并传输到地面。用于Oli-2的焦平面模块是Oli的飞行备件,目前正在通过球航空航天重新测试。结果表明与OLI相当的辐射性能。 TIRS是C类仪器,具有3年的设计寿命,因此冗余有限。 TIRS-2将是B类仪器,具有5年的设计寿命,如Oli(和Oli-2),需要更改以增加冗余。在轨道上观察到的杂散灯和场景选择机制(SSM)编码器在轨道上观察到TIRS的轨道也会溶解对TIRS-2的一些设计变更。杂散光分析和测试表明,TIRS-2光学系统中的额外挡板将抑制出现场响应。 SSM编码器问题没有明确地追踪路径原因,尽管疑似电路板中的导电阳极灯丝生长。对于TIRS-2,正在考虑改进的编码器设计。从TIRS的备用焦平面​​阵列(FPA)计划用于TIRS-2; FPA光谱和辐射测量性能测试计划今年9月在美国宇航局的戈达德太空飞行中心。

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