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An object-oriented approach to map wetland vegetation: a case study of yellow river delta.

, , and . IGARSS, page 4585-4587. IEEE, (2007)

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Using the Canny edge detector and mathematical morphology operators to detect vegetation patches., , , , and . ICDIP, volume 8009 of SPIE Proceedings, page 80091H. SPIE, (2011)Comparison of CBERS-04, GF-1, and GF-2 Satellite Panchromatic Images for Mapping Quasi-Circular Vegetation Patches in the Yellow River Delta, China., , , and . Sensors, 18 (8): 2733 (2018)Suitability evaluation of land in Yellow River Delta in China based on GIS., , , and . IGARSS, page 2426-2429. IEEE, (2005)Size distribution of the quasi-circular vegetation patches in the Yellow River Delta, China., , , , and . Ecol. Informatics, (2022)Integrating time-series and high-spatial remote sensing data based on multilevel decision fusion., , , and . IGARSS, page 212-215. IEEE, (2020)Vegetation Patch Structure and Dynamics at Gudong Oil Field of the Yellow River Delta, China., , , and . GRMSE (1), volume 398 of Communications in Computer and Information Science, page 177-187. Springer, (2013)Drivers of Change in River Deltas, , , , , and . (12.-13. Oktober 2011)Earth observation-based coastal zone monitoring of the Yellow River Delta: Dynamics in China's second largest oil producing region over four decades, , , , , and . Applied Geography, (2014)Remote sensing monitoring on coastline evolution in the Yellow River Delta since 1976., , , and . IGARSS, page 2161-2164. IEEE, (2005)Combining Tasseled Cap Transformation with Support Vector Machine to classify Landsat TM imagery data., and . ICNC, page 3570-3572. IEEE, (2010)