Detection and estimation of reflectivity gradients in the radar resolution volume using multiparameter radar measurements
Multiparameter radar measurements of rainfall, namely, reflectivity factor Z/sub H/, differential reflectivity Z/sub DR/, and specific differential phase K/sub DP/ lie in a constrained three-dimensional (3D) space and therefore measurement of Z/sub H/, Z/sub DR/, or, K/sub DP/ should be consistent w...
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Veröffentlicht in: | IEEE transactions on geoscience and remote sensing 1999-03, Vol.37 (2), p.1122-1127 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | Multiparameter radar measurements of rainfall, namely, reflectivity factor Z/sub H/, differential reflectivity Z/sub DR/, and specific differential phase K/sub DP/ lie in a constrained three-dimensional (3D) space and therefore measurement of Z/sub H/, Z/sub DR/, or, K/sub DP/ should be consistent with the other two. This self-consistency relationship between Z/sub H/, Z/sub DR/, and K/sub DP/ is valid when the radar resolution volume is homogeneous. When there are reflectivity gradients within the radar resolution cell, the self-consistency relation is perturbed. This perturbation can be utilized to detect the presence of gradients in the radar resolution volume. This paper presents a technique to detect and estimate reflectivity gradients in the resolution cell. The technique is evaluated using theoretical analysis as well as experimental data collected by the NCAR CP-2 radar. It is demonstrated that the presence of reflectivity gradients larger than a few decibels can be detected using the algorithm developed in this paper. |
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ISSN: | 0196-2892 1558-0644 |
DOI: | 10.1109/36.752230 |