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首页> 外文期刊>Geoscience and Remote Sensing, IEEE Transactions on >Fengyun-3B MicroWave Humidity Sounder (MWHS) Data Noise Characterization and Filtering Using Principle Component Analysis
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Fengyun-3B MicroWave Humidity Sounder (MWHS) Data Noise Characterization and Filtering Using Principle Component Analysis

机译:风云3B微波声波测深仪(MWHS)数据噪声表征和主成分分析滤波

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摘要

MicroWave Humidity Sounder (MWHS) onboard both Fengyun-3A (FY-3A) and FY-3B satellites have three channels (channels 3–5) near the 183-GHz water-vapor absorption line. These channel frequencies are also used in other instruments such as Advanced Microwave Sounding Unit-B (AMSU-B) and Microwave Humidity Sounder (MHS) onboard MetOp and NOAA satellites. Both MWHS and MHS are cross-track scanners. In this paper, a comparison between the simulated brightness temperatures with MWHS measurements clearly shows that MWHS observations from the three sounding channels contain a scan-angle-dependent cohesive noise along the instrument scanline. This noise does not cancel out when a large amount of data over a sufficiently long period of time is averaged, which eliminates the possibility of such a noise to arise from the natural variability of the atmosphere and the surface. The noises are around 0.3, 0.2, and 0.2 K for channels 3–5, respectively. A principle component analysis is used for the characterization of this cohesive noise using one-month FY-3B MWHS data. It is shown that the MWHS cohesive noise is primarily contained in the first principal component (PC) mode, which mainly describes a scan-angle-dependent brightness temperature variation, i.e., a unique feature of the cross-tracking instrument. The first PC accounts for more than 99.91 $%$ total variance in the three MWHS sounding channels. A five-point smoother is then applied to the first PC, which effectively removes such a data noise in the MWHS data. The reconstruction of the MWHS radiance spectra using the noise-filtered first PC component is of good quality. The scan-angle-dependent bias from the reconstructed MWHS data becomes more uniform and is consistent with the NOAA-18 MHS data
机译:风云3A(FY-3A)和FY-3B卫星上的MicroWave湿度探测器(MWHS)在183 GHz水汽吸收线附近有3个通道(3-5通道)。这些通道频率还用于其他仪器,例如MetOp和NOAA卫星上的高级微波探测仪B(AMSU-B)和微波湿度探测仪(MHS)。 MWHS和MHS都是跨轨扫描仪。在本文中,模拟亮度温度与MWHS测量值之间的比较清楚地表明,来自三个探测通道的MWHS观测值沿仪器扫描线包含与扫描角度相关的内聚噪声。当在足够长的时间段内对大量数据求平均时,该噪声不会消除,这消除了由于大气和表面的自然变化而产生这种噪声的可能性。通道3–5的噪声分别约为0.3、0.2和0.2K。使用一个月的FY-3B MWHS数据,将主成分分析用于表征这种内聚噪声。结果表明,MWHS内聚噪声主要包含在第一主成分(PC)模式下,该模式主要描述了与扫描角度有关的亮度温度变化,即交叉跟踪仪器的独特功能。在三个MWHS探测通道中,第一台PC的总差异超过99.91 $%$。然后将五点平滑器应用于第一台PC,这可以有效消除MWHS数据中的此类数据噪声。使用经过噪声滤波的第一台PC组件重建MWHS辐射光谱的质量很高。来自重构的MWHS数据的扫描角度相关偏差变得更加均匀,并且与NOAA-18 MHS数据一致

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