Natural deltas can provide human beings with flat and fertile land to be cultivated. It is important to monitor cropland dynamics to provide policy-relevant information for regional sustainable development. This paper utilized Landsat imagery to study the cropland dynamics of the Yellow River Delta during the last three decades. Multi-temporal Landsat data were used to account for the phenological variations of different plants. Several spectral and textural features were adopted to increase the between-class separability. The robust random forest classifier was used to generate the land cover maps of the Yellow River Delta for 1986, 1995, 2005 and 2015. Experimental results indicated that the proposed methodology showed good performance wi...
Regional vegetation pattern dynamics has bigchange dueto the climate change and even global change. ...
The problem of efficient use of multi-temporal remotely sensed data for land-cover and landscape pat...
Agricultural land use change substantially affects climate, water, ecosystems, biodiversity, and hum...
The Yellow River Basin is one of China's most dynamic regions, where past and recent anthropogenic l...
The temporal and spatial variation of ecological land use and its current distribution were studied ...
The temporal and spatial variation of ecological land use and its current distribution were studied ...
The temporal and spatial variation of ecological land use and its current distribution were studied ...
The Yellow River Basin is one of China’s most densely-populated, fastest growing and most dynamic re...
Long-term intensive land use/cover changes (LUCCs) of the Yellow River Delta (YRD) have been happeni...
Long-term intensive land use/cover changes (LUCCs) of the Yellow River Delta (YRD) have been happeni...
Long-term intensive land use/cover changes (LUCCs) of the Yellow River Delta (YRD) have been happeni...
Four models are employed in the landscape change detection of the newly created wetland. The models ...
Cultivated land in Middle-lower Yangtze Plain has been greatly reduced over the last few decades due...
The Yellow River Basin is one of China's most densely-populated, fastest growing and most dynamic re...
The main objective of this paper is to monitor the land cover change in the natural reserve of the Y...
Regional vegetation pattern dynamics has bigchange dueto the climate change and even global change. ...
The problem of efficient use of multi-temporal remotely sensed data for land-cover and landscape pat...
Agricultural land use change substantially affects climate, water, ecosystems, biodiversity, and hum...
The Yellow River Basin is one of China's most dynamic regions, where past and recent anthropogenic l...
The temporal and spatial variation of ecological land use and its current distribution were studied ...
The temporal and spatial variation of ecological land use and its current distribution were studied ...
The temporal and spatial variation of ecological land use and its current distribution were studied ...
The Yellow River Basin is one of China’s most densely-populated, fastest growing and most dynamic re...
Long-term intensive land use/cover changes (LUCCs) of the Yellow River Delta (YRD) have been happeni...
Long-term intensive land use/cover changes (LUCCs) of the Yellow River Delta (YRD) have been happeni...
Long-term intensive land use/cover changes (LUCCs) of the Yellow River Delta (YRD) have been happeni...
Four models are employed in the landscape change detection of the newly created wetland. The models ...
Cultivated land in Middle-lower Yangtze Plain has been greatly reduced over the last few decades due...
The Yellow River Basin is one of China's most densely-populated, fastest growing and most dynamic re...
The main objective of this paper is to monitor the land cover change in the natural reserve of the Y...
Regional vegetation pattern dynamics has bigchange dueto the climate change and even global change. ...
The problem of efficient use of multi-temporal remotely sensed data for land-cover and landscape pat...
Agricultural land use change substantially affects climate, water, ecosystems, biodiversity, and hum...