The Gravity Recovery and Climate Experiment (GRACE) products provide valuable information about total water storage variations over the whole globe. Since GRACE detects mass variations integrated over vertical columns, it is desirable to separate its total water storage anomalies into their original sources. Among the statistical approaches, the principal component analysis (PCA) method and its extensions have been frequently proposed to decompose the GRACE products into space and time components. However, these methods only search for decorrelated components that on the one hand are not always interpretable and on the other hand often contain a superposition of independent source signals. In contrast, independent component analysis (ICA) r...
Fresh water is a necessity of the human civilization. But with the increasing global population, the...
Measurements of the spatio-temporal variations of Earth’s gravity field recovered from the Gravity R...
Observing global terrestrial water storage changes (TWSCs) from (inter-)seasonal to (multi-)decade t...
The Gravity Recovery and Climate Experiment (GRACE) products provide valuable information about tota...
International audienceIndependent component analysis (ICA) is a blind separation method based on sim...
The time-variable gravity fields from the Gravity Recovery and Climate Experiment (GRACE) satellit...
International audienceAn approach based on Independent Component Analysis (ICA) has been applied on ...
The Gravity Recovery and Climate Experiment (GRACE) products allow the quantification of total water...
The gravity recovery and climate experiment (GRACE) and GRACE-Follow on (FO) data provide valuable i...
We first use the independent component analysis (ICA) method to decompose the water storage changes ...
Component extraction techniques are used widely in the analysis and interpretation of high-dimension...
In recent decades, decomposition techniques have enabled increasingly more applications for dimensio...
A measure of the Earth's gravity contains contributions from solid Earth as well as climate-related ...
Gravity Recovery and Climate Experiment (GRACE) mission has amplified the knowledge of both static a...
Fresh water is a necessity of the human civilization. But with the increasing global population, the...
Measurements of the spatio-temporal variations of Earth’s gravity field recovered from the Gravity R...
Observing global terrestrial water storage changes (TWSCs) from (inter-)seasonal to (multi-)decade t...
The Gravity Recovery and Climate Experiment (GRACE) products provide valuable information about tota...
International audienceIndependent component analysis (ICA) is a blind separation method based on sim...
The time-variable gravity fields from the Gravity Recovery and Climate Experiment (GRACE) satellit...
International audienceAn approach based on Independent Component Analysis (ICA) has been applied on ...
The Gravity Recovery and Climate Experiment (GRACE) products allow the quantification of total water...
The gravity recovery and climate experiment (GRACE) and GRACE-Follow on (FO) data provide valuable i...
We first use the independent component analysis (ICA) method to decompose the water storage changes ...
Component extraction techniques are used widely in the analysis and interpretation of high-dimension...
In recent decades, decomposition techniques have enabled increasingly more applications for dimensio...
A measure of the Earth's gravity contains contributions from solid Earth as well as climate-related ...
Gravity Recovery and Climate Experiment (GRACE) mission has amplified the knowledge of both static a...
Fresh water is a necessity of the human civilization. But with the increasing global population, the...
Measurements of the spatio-temporal variations of Earth’s gravity field recovered from the Gravity R...
Observing global terrestrial water storage changes (TWSCs) from (inter-)seasonal to (multi-)decade t...