Westbrook, C. D. ORCID: https://orcid.org/0000-0002-2889-8815 and Nicol, J. C.
(2013)
A time-series method to identify and correct range sidelobes in meteorological radar data.
Journal of Atmospheric and Oceanic Technology, 30 (10).
pp. 2417-2424.
ISSN 1520-0426
doi: 10.1175/JTECH-D-13-00063.1
Abstract/Summary
The use of pulse compression techniques to improve the sensitivity of meteorological radars has become increasingly common in recent years. An unavoidable side-effect of such techniques is the formation of ‘range sidelobes’ which lead to spreading of information across several range gates. These artefacts are particularly troublesome in regions where there is a sharp gradient in the power backscattered to the antenna as a function of range. In this article we present a simple method for identifying and correcting range sidelobe artefacts. We make use of the fact that meteorological targets produce an echo which fluctuates at random, and that this echo, like a fingerprint, is unique to each range gate. By cross-correlating the echo time series from pairs of gates therefore we can identify whether information from one gate has spread into another, and hence flag regions of contamination. In addition we show that the correlation coefficients contain quantitative information about the fraction of power leaked from one range gate to another, and we propose a simple algorithm to correct the corrupted reflectivity profile.
Altmetric Badge
Item Type | Article |
URI | https://reading-clone.eprints-hosting.org/id/eprint/34921 |
Item Type | Article |
Refereed | Yes |
Divisions | Science > School of Mathematical, Physical and Computational Sciences > Department of Meteorology |
Uncontrolled Keywords | Cloud microphysics, Microwave observations, Radars/Radar observations, Remote sensing, Time series |
Publisher | American Meteorological Society |
Download/View statistics | View download statistics for this item |
Downloads
Downloads per month over past year
University Staff: Request a correction | Centaur Editors: Update this record