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Inversion of data from diffraction-limited multiwavelength remote sensors, 1, linear case

机译:来自衍射极限多波长遥感器的数据反转,线性情况1

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摘要

The remote sensing inverse problem is considered in which the sensor does not necessarily view the same area on the earth at each wavelength, and spatial correlations of the geophysical parameters may be present. Under the conditions of linearity and stationary statistics, the minimum mean-square error solution to the problem of inverting such data is a spatial filter of the Wiener-Kolmogorov class. The resulting remote-sensing system can be characterized by an impulse response matrix in ordinary space or by a transfer matrix in frequency space. A signal-to-noise matrix for the geophysical parameters to be sensed is also defined; this matrix depends on the postulated a priori statistics and on the characteristics of the remote-sensing instrument. The system transfer matrix and the signal-to-noise matrix are simultaneously diagonalizable. The optimum transfer matrix filters out of the estimate vector those eigenparameters for which eigenvalues of the signal-to-noise matrix are less than unity.
机译:考虑了遥感逆问题,其中传感器不一定在每个波长都观察地球上的同一区域,并且可能存在地球物理参数的空间相关性。在线性和平稳统计的条件下,解决此类数据反转问题的最小均方误差解决方案是Wiener-Kolmogorov类的空间滤波器。所得的遥感系统的特征在于普通空间中的脉冲响应矩阵或频率空间中的传递矩阵。还定义了要感测的地球物理参数的信噪矩阵;该矩阵取决于假定的先验统计数据和遥感仪器的特征。系统传输矩阵和信噪比矩阵同时可对角化。最佳传递矩阵从估计矢量中滤除信噪矩阵特征值小于1的特征参数。

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