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首页> 外文期刊>Atmospheric Measurement Techniques Discussions >Field-of-view characteristics and resolution matching for the Global Precipitation Measurement (GPM) Microwave Imager (GMI)
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Field-of-view characteristics and resolution matching for the Global Precipitation Measurement (GPM) Microwave Imager (GMI)

机译:全球降水测量(GPM)微波成像仪(GMI)的视场特性和分辨率匹配

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Representative parameters of the scan geometry are empirically determined for the Global Precipitation Measurement (GPM) Microwave Imager (GMI). Effective fields of view (EFOVs) are computed for the GMI's 13 channels, taking into account the blurring effect of the measurement interval on the instantaneous fields of view (IFOVs). Using a Backusa??Gilbert procedure, coefficients are derived that yield an approximate spatial match between synthetic EFOVs of different channels, using the 18.7a?ˉGHz channels as a target and with due consideration of the tradeoff between the quality of the fit and noise amplification and edge effects. Modest improvement in resolution is achieved for the 10.65a?ˉGHz channels, albeit with slight qringing/q in the vicinity of coastlines and other sharp brightness temperature gradients. For all other channels, resolution is coarsened to approximate the 18.7a?ˉGHz EFOV. It is shown that the resolution matching procedure reduces nonlinear correlations between channels in the presence of coastlines as well as enables the more efficient separation of large brightness temperature variations due to coastlines from the much smaller variations due to other geophysical variables. As a byproduct of this work, we report accurate EFOV resolutions as well as a self-consistent set of parameters for modeling the scan geometry of the GMI.
机译:对于全球降水量测量(GPM)微波成像仪(GMI),凭经验确定扫描几何体的代表性参数。考虑到测量间隔对瞬时视场(IFOV)的模糊影响,为GMI的13个通道计算了有效视场(EFOV)。使用Backusa ?? Gilbert程序,以18.7a?ˉGHz信道为目标,并适当考虑了拟合质量和噪声放大之间的权衡关系,得出得出不同信道的合成EFOV之间近似空间匹配的系数。和边缘效果。尽管在海岸线附近有轻微的“ q”振铃和其他尖锐的亮度温度梯度,但10.65a?GHz信道的分辨率仍得到了适度的提高。对于所有其他通道,将分辨率粗化为大约18.7a?GHz GHz EFOV。结果表明,分辨率匹配程序减少了海岸线存在时通道之间的非线性相关性,并且能够更有效地将海岸线引起的大亮度温度变化与其他地球物理变量引起的小得多的变化更有效地分离。作为这项工作的副产品,我们报告了准确的EFOV分辨率以及用于建模GMI扫描几何形状的一组自洽参数。

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