Remote-sensing phenology detection can compensate for deficiencies in field observations and has the advantage of capturing the continuous expression of phenology on a large scale. However, there is some variability in the results of remote-sensing phenology detection derived from different vegetation parameters in satellite time-series data. Since the enhanced vegetation index (EVI) and the leaf area index (LAI) are the most widely used vegetation parameters for remote-sensing phenology extraction, this paper aims to assess the differences in phenological information extracted from EVI and LAI time series and to explore whether either index performs well for all vegetation types on a large scale. To this end, a GLASS (Global Land Surface S...
The objectives of this study are to explore the relationships between plant phenology and satellite-...
Retrievals of land surface phenology metrics depend on the choice of base variables selected to quan...
Accurately modeling the land surface phenology based on satellite data is very important to the stud...
Vegetation phenological stages are important indicators for monitoring vegetation growth, evaluating...
Leaf area index (LAI) is a key input for many land surface models, ecological models, and yield pred...
Assessing vegetation phenology is very important for better understanding the impact of climate chan...
Vegetation phenology is an important variable in a wide variety of Earth and atmospheric science app...
Vegetation phenology is considered a sensitive indicator of climate change, which controls carbon, n...
Continuous satellite datasets are widely used in tracking vegetation responses to climate variabilit...
Several methods exist for extracting plant phenological information from time series of satellite da...
Land surface phenology is a highly sensitive and simple indicator of vegetation dynamics and climate...
Land surface phenology derived from remotely sensed satellite data can substantially improve our mac...
The leaf area index (LAI) is not only an important parameter used to describe the geometry of vegeta...
Monitoring vegetation phonology using satellite data has been an area of growing research interest i...
With the development of vegetation indices, the reflection capability of vegetation indices to the s...
The objectives of this study are to explore the relationships between plant phenology and satellite-...
Retrievals of land surface phenology metrics depend on the choice of base variables selected to quan...
Accurately modeling the land surface phenology based on satellite data is very important to the stud...
Vegetation phenological stages are important indicators for monitoring vegetation growth, evaluating...
Leaf area index (LAI) is a key input for many land surface models, ecological models, and yield pred...
Assessing vegetation phenology is very important for better understanding the impact of climate chan...
Vegetation phenology is an important variable in a wide variety of Earth and atmospheric science app...
Vegetation phenology is considered a sensitive indicator of climate change, which controls carbon, n...
Continuous satellite datasets are widely used in tracking vegetation responses to climate variabilit...
Several methods exist for extracting plant phenological information from time series of satellite da...
Land surface phenology is a highly sensitive and simple indicator of vegetation dynamics and climate...
Land surface phenology derived from remotely sensed satellite data can substantially improve our mac...
The leaf area index (LAI) is not only an important parameter used to describe the geometry of vegeta...
Monitoring vegetation phonology using satellite data has been an area of growing research interest i...
With the development of vegetation indices, the reflection capability of vegetation indices to the s...
The objectives of this study are to explore the relationships between plant phenology and satellite-...
Retrievals of land surface phenology metrics depend on the choice of base variables selected to quan...
Accurately modeling the land surface phenology based on satellite data is very important to the stud...