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首页> 外文期刊>Atmospheric Measurement Techniques Discussions >Introduction of the in-orbit test and its performance for the first meteorological imager of the Communication, Ocean, and Meteorological Satellite
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Introduction of the in-orbit test and its performance for the first meteorological imager of the Communication, Ocean, and Meteorological Satellite

机译:通信,海洋和气象卫星的第一台气象成像仪的在轨测试及其性能介绍

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The first geostationary Earth observation satellite of Korea a?? the Communication, Ocean, and Meteorological Satellite (COMS) a?? was successfully launched on 27 June 2010. After arrival at its operational orbit, the satellite underwent an in-orbit test (IOT) that lasted for about 8 months. During the IOT period, the main payload for the weather application, the meteorological imager, went through successful tests for demonstrating its function and performance, and the test results are introduced here. brbr The radiometric performance of the meteorological imager (MI) is tested by means of signal-to-noise ratio (SNR) for the visible channel, noise-equivalent differential temperature (NEdT) for the infrared channels, and pixel-to-pixel nonuniformity for both the visible and infrared channels. In the case of the visible channel, the SNR of all eight detectors is obtained using the ground-measured parameters with the background signals obtained in orbit. The overall performance shows a value larger than 26 at 5% albedo, exceeding the user requirement of 10 by a significant margin. Also, the relative variability of detector responsivity among the eight visible channels meets the user requirement, showing values within 10% of the user requirement. For the infrared channels, the NEdT of each detector is well within the user requirement and is comparable with or better than the legacy instruments, except for the water vapor channel, which is slightly noisier than the legacy instruments. The variability of detector responsivity of infrared channels is also below the user requirement, within 40% of the requirement, except for the shortwave infrared channel. The improved performance result is partly due to the stable and low detector temperature obtained due to spacecraft design, i.e., by installing a single solar panel on the opposite side of the MI.
机译:韩国第一颗对地静止地球观测卫星通信,海洋和气象卫星(COMS)该卫星于2010年6月27日成功发射。到达其运行轨道后,该卫星进行了持续约8个月的在轨测试(IOT)。在物联网期间,气象应用的主要有效载荷气象成像仪通过了成功的测试,以证明其功能和性能,并在此介绍了测试结果。 通过可见通道的信噪比(SNR),红外通道的等效噪声温差(NEdT)和像素测试气象成像仪(MI)的辐射性能可见光通道和红外通道的像素到像素不均匀性。在可见通道的情况下,使用地面测量的参数以及在轨获得的背景信号,获得所有八个探测器的SNR。总体性能在5%反照率下显示大于26的值,大大超出了用户要求10。而且,八个可见通道之间的检测器响应度的相对可变性满足了用户要求,显示的值在用户要求的10%以内。对于红外通道,每个检测器的NEdT都在用户要求之内,并且与传统仪器相当或优于传统仪器,但水蒸气通道的噪音比传统仪器稍大。除短波红外通道外,红外通道检测器响应度的变化也低于用户要求,在要求的40%以内。性能改善的结果部分归因于航天器设计(即通过在MI的相对侧安装单个太阳能电池板)获得的稳定且较低的探测器温度。

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