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Abstract: This study aimed to characterize the microwave Ku-band and Ka-band backscattering over the Mongolian three different vegetation density regions, ...
Oct 15, 2019 · We characterized backscatter (σ0) of GPM/DPR's two microwave bands (Ku and Ka) with respect to the dominant vegetation zones (forest, grassland, ...
Mongolian steppe is one of the largest and important ecosystems. The degradation of grassland and the expansion of desert are occurring due to drought and ...
ABSTRACT. This study aimed to characterize the microwave Ku-band and Ka-band backscattering over the Mongolian three different vegetation density regions, ...
This study aimed to characterize the microwave Ku-band and Ka-band backscattering over the Mongolian three different vegetation density regions, observed from ...
We characterized backscatter (σ0) of GPM/DPR's two microwave bands (Ku and Ka) with respect to the dominant vegetation zones (forest, grassland, desert). Both ...
Mar 17, 2020 · Vegetation mapping was conducted over Mongolian land using GPM/DPR satellite data. Backscatter signals from the Ku and Ka band radar were ...
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The Land Surface Vegetation Features Observed by GPM/DPR Backscattering in Mongolia. Baasankhuu, Nyamsuren ; Nasahara, Kenlo Nishida ...
The Land Surface Vegetation Features Observed by GPM/DPR Backscattering in Mongolia. N. Baasankhuu, K. Nasahara, T. Kubota, and T. Masaki.
The Land Surface Vegetation Features Observed by GPM/DPR Backscattering in MongoliaNyamsuren Baasankhuu, Kenlo Nishida Nasahara, Takuji Kubota, ...