首页> 外文期刊>Atmospheric Measurement Techniques Discussions >Thermal and near-infrared sensor for carbon observation Fourier transform spectrometer-2 (TANSO-FTS-2) on the Greenhouse gases Observing SATellite-2 (GOSAT-2) during its first year in orbit
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Thermal and near-infrared sensor for carbon observation Fourier transform spectrometer-2 (TANSO-FTS-2) on the Greenhouse gases Observing SATellite-2 (GOSAT-2) during its first year in orbit

机译:用于碳观察傅立叶变换光谱仪-2(坦托-FTS-2)的热和近红外传感器在轨道中的第一年观察卫星-2(Gosat-2)的温室气体

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The Japanese Greenhouse gases Observing SATellite-2 (GOSAT-2), in orbit since 29?October?2018, follows up the GOSAT mission, itself in orbit since 23?January?2009. GOSAT-2 monitors carbon dioxide and methane in order to increase our understanding of the global carbon cycle. It simultaneously measures carbon monoxide emitted from fossil fuel combustion and biomass burning and permits identification of the amount of combustion-related carbon. To do this, the satellite utilizes the Thermal and Near Infrared Sensor for Carbon Observation Fourier-Transform Spectrometer-2 (TANSO-FTS-2). This spectrometer detects gas absorption spectra of solar radiation reflected from the Earth's surface in the shortwave-infrared (SWIR) region as well as the emitted thermal infrared radiation (TIR) from the ground and the atmosphere. TANSO-FTS-2 can measure the oxygen A band (0.76? μ m), weak and strong CO 2 bands (1.6 and 2.0? μ m), weak and strong CH 4 bands (1.6 and 2.3? μ m), a weak CO band (2.3? μ m), a mid-wave TIR band (5.5–8.4? μ m), and a long-wave TIR band (8.4–14.3? μ m) with 0.2?cm ?1 spectral sampling intervals. TANSO-FTS-2 is equipped with a solar diffuser target, a monochromatic light source, and a blackbody for spectral radiance calibration. These calibration sources permit characterization of time-dependent instrument changes in orbit. The onboard-recalibrated instrumental parameters are considered in operational level-1 processing and released as TANSO-FTS-2 level-1 version 102102 products, which were officially released on 25?May?2020. This paper provides an overview of the TANSO-FTS-2 instrument, the level-1 processing, and the first-year in-orbit performance. To validate the spectral radiance calibration during the first year of operation, the spectral radiance of the version 102102 product is compared at temporally coincident and spatially collocated points from February?2019 to March?2020 with TANSO-FTS on GOSAT for SWIR and with AIRS on Aqua and IASI on METOP-B for TIR. The spectral radiances measured by TANSO-FTS and TANSO-FTS-2 agree within 2?% of the averaged bias and 0.5?% standard deviation for SWIR bands. The agreement of brightness temperature between TANSO-FTS-2 and AIRS–IASI is better than 1?K in the range from 220 to 320?K. GOSAT-2 not only provides seamless global CO 2 and CH 4 observation but also observes local emissions and uptake with an additional CO channel, fully customized sampling patterns, higher signal-to-noise ratios, and wider pointing angles than GOSAT.
机译:自29年以来,日本温室气体观察卫星-2(Gosat-2),在轨道上轨道?2018年10月份,从23起,在轨道上跟随Gosat Mission,自身在轨道上?2009年1月?2009年。 Gosat-2监测二氧化碳和甲烷,以提高我们对全球碳循环的理解。它同时测量从化石燃料燃烧和生物质燃烧发出的一氧化碳,并允许鉴定燃烧相关的碳量。为此,卫星利用用于碳观察傅里叶变换光谱仪-2(Tanso-FTS-2)的热和近红外传感器。该光谱仪检测从地球表面中的太阳辐射的气体吸收光谱,在短波红外(SWIR)区域以及从地面和大气中发出的热红外辐射(TIR)。 Tanso-FTS-2可以测量氧气(0.76Ωμm),弱和强的CO 2条带(1.6和2.0?μM),弱和强的CH 4带(1.6和2.3?μm),弱CO带(2.3?μM),中波TIR带(5.5-8.4Ωμm)和具有0.2Ω·cm的长波TIR带(8.4-14.3Ωμm),具有0.2Ω·cm≤1的光谱采样间隔。 Tanso-FTS-2配备有太阳漫射器目标,单色光源和用于光谱光散校准的黑体。这些校准源允许表征轨道上的时间依赖仪器变化。在运营级-1处理中考虑了车载重新校准的仪器参数,并作为Tanso-FTS-2等级-1版本102102产品被释放,这些产品在25中正式释放?5月?2020。本文概述了Tanso-FTS-2仪器,1级处理和第一年的轨道性能。为了验证在操作第一年期间的频谱光束校准,从2月2日期到3月到3月到3月的时间重合和空间并置地,在时间重合和空间并置出来的频谱辐射,在3月20日上与Gosat on Gosat on For Swir和Airs上的atso-fts达特拉德·博士的Aqua和IASI。由奇体FTS和TANSO-FTS-2测量的光谱辐射在平均偏置的平均偏差的2倍和0.5μm标准偏差范围内同意。 Tanso-FTS-2和Airs-IASi之间的亮度温度之间的协议优于1Ω·k,范围为220至320?k。 GOSAT-2不仅提供无缝的全球CO 2和CH 4观察,还可以使用额外的CO通道,完全定制的采样模式,更高的信噪比和比GOSAT更宽的指向角度观察本地排放和摄取。

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