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Extracting Eco-hydrological Information of Inland Wetland from L-band Synthetic Aperture Radar Image in Honghe National Nature Reserve, Northeast China

SUN Yonghua GONG Huili LI Xiaojuan et al

SUN Yonghua, GONG Huili, LI Xiaojuan, et al. Extracting Eco-hydrological Information of Inland Wetland from L-band Synthetic Aperture Radar Image in Honghe National Nature Reserve, Northeast China[J]. 中国地理科学, 2011, 21(2): 241-248.
引用本文: SUN Yonghua, GONG Huili, LI Xiaojuan, et al. Extracting Eco-hydrological Information of Inland Wetland from L-band Synthetic Aperture Radar Image in Honghe National Nature Reserve, Northeast China[J]. 中国地理科学, 2011, 21(2): 241-248.
SUN Yonghua, GONG Huili, LI Xiaojuan, et al. Extracting Eco-hydrological Information of Inland Wetland from L-band Synthetic Aperture Radar Image in Honghe National Nature Reserve, Northeast China[J]. Chinese Geographical Science, 2011, 21(2): 241-248.
Citation: SUN Yonghua, GONG Huili, LI Xiaojuan, et al. Extracting Eco-hydrological Information of Inland Wetland from L-band Synthetic Aperture Radar Image in Honghe National Nature Reserve, Northeast China[J]. Chinese Geographical Science, 2011, 21(2): 241-248.

Extracting Eco-hydrological Information of Inland Wetland from L-band Synthetic Aperture Radar Image in Honghe National Nature Reserve, Northeast China

Extracting Eco-hydrological Information of Inland Wetland from L-band Synthetic Aperture Radar Image in Honghe National Nature Reserve, Northeast China

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  • 刊出日期:  2011-03-24

Extracting Eco-hydrological Information of Inland Wetland from L-band Synthetic Aperture Radar Image in Honghe National Nature Reserve, Northeast China

摘要: Taking a typical inland wetland of Honghe National Nature Reserve (HNNR), Northeast China, as the study area, this paper studied the application of L-band Synthetic Aperture Radar (SAR) image in extracting eco-hydrological information of inland wetland. Landsat-5 TM and ALOS PALSAR HH backscatter images were first fused by using the wavelet-IHS method. Based on the fused image data, the classification method of support vector machines was used to map the wetland in the study area. The overall mapping accuracy is 77.5%. Then, the wet and dry aboveground biomass estimation models, including statistical models and a Rice Cloudy model, were established. Optimal parameters for the Rice Cloudy model were calculated in MATLAB by using the least squares method. Based on the validation results, it was found that the Rice Cloudy model produced higher accuracy for both wet and dry aboveground biomass estimation compared to the statistical models. Finally, subcanopy water boundary information was extracted from the HH backscatter image by threshold method. Compared to the actual water borderline result, the extracted result from L-band SAR image is reliable. In this paper, the HH-HV phase difference was proved to be valueless for extracting subcanopy water boundary information.

English Abstract

SUN Yonghua, GONG Huili, LI Xiaojuan, et al. Extracting Eco-hydrological Information of Inland Wetland from L-band Synthetic Aperture Radar Image in Honghe National Nature Reserve, Northeast China[J]. 中国地理科学, 2011, 21(2): 241-248.
引用本文: SUN Yonghua, GONG Huili, LI Xiaojuan, et al. Extracting Eco-hydrological Information of Inland Wetland from L-band Synthetic Aperture Radar Image in Honghe National Nature Reserve, Northeast China[J]. 中国地理科学, 2011, 21(2): 241-248.
SUN Yonghua, GONG Huili, LI Xiaojuan, et al. Extracting Eco-hydrological Information of Inland Wetland from L-band Synthetic Aperture Radar Image in Honghe National Nature Reserve, Northeast China[J]. Chinese Geographical Science, 2011, 21(2): 241-248.
Citation: SUN Yonghua, GONG Huili, LI Xiaojuan, et al. Extracting Eco-hydrological Information of Inland Wetland from L-band Synthetic Aperture Radar Image in Honghe National Nature Reserve, Northeast China[J]. Chinese Geographical Science, 2011, 21(2): 241-248.

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