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Modelling Tropical Cyclone Wind Radii in the Australian Region Using the Deviation Angle Variance Technique.

, , and . IGARSS, page 9342-9345. IEEE, (2019)

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Research issues in developing compact pulsed power for high peak power applications on mobile platforms., , , , , , , , , and 7 other author(s). Proc. IEEE, 92 (7): 1144-1165 (2004)Signal to Noise Ratio for Spectral Sensors with Overlapping Bands., and . IGARSS (4), page 581-584. IEEE, (2008)Climatology of Landfalling Tropical Cyclone Winds in the Southeast Asian Region Using the Deviation Angle Variance., , , and . IGARSS, page 851-854. IEEE, (2022)Improving feedback-integrated scene cancellation nonuniformity correction through optimal selection of available camera motion., and . J. Electronic Imaging, 23 (5): 053014 (2014)The Influence of Satellite Observation Angle on Tropical Cyclone Intensity Estimation using the Deviation Angle Variance Technique., , and . IGARSS, page 9863-9866. IEEE, (2019)Displaying Advanced Optical Imagery Information for Human Observers.. CIC, page 174-177. Society for Imaging Science and Technology, (2007)Modelling Tropical Cyclone Wind Radii in the Australian Region Using the Deviation Angle Variance Technique., , and . IGARSS, page 9342-9345. IEEE, (2019)Quantifying the Contribution of Tropical Cyclones to the Earth's Outgoing Radiation., , , and . IGARSS, page 10107-10110. IEEE, (2019)Application of spatiotemporal pattern recognition techniques on predicting extratropical transition (and reintensification) of tropical cyclones., , and . IGARSS, page 452-455. IEEE, (2004)Spatial and Spatiotemporal Projection Pursuit Techniques to Predict the Extratropical Transition of Tropical Cyclones., , and . IEEE Trans. Geosci. Remote. Sens., 45 (2): 418-425 (2007)