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Towards Global Remote Discharge Estimation: Using the Few to Estimate The Many,
Y. Gigi
, G. Elidan
,
A. Hassidim
, Y. Matias
, Z. Moshe
, S. Nevo
, G. Shalev
, Ami Wiesel
Department of Computer Science
Alphabet Inc.
Hebrew University of Jerusalem
Research output
:
Working paper / Preprint
›
Preprint
Overview
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Keyphrases
Discharge Measurement
100%
River Discharge Measurement
100%
Near-optimal
50%
Regression Model
50%
Local Measurement
50%
Local Component
50%
Common Mechanisms
50%
Global Optimum
50%
Nonconvex
50%
Learning Objectives
50%
Optimal Accuracy
50%
Discharge Mechanism
50%
Flood Prediction
50%
River Flood
50%
Descent Method
50%
Hydrologic Modeling
50%
Satellite Measurements
50%
Water Discharge
50%
Flood Causes
50%
Spectral Initialization
50%
Engineering
Global Optimum
100%
Great Importance
100%
Mathematics
Regression Model
100%
Global Optimum
100%
Earth and Planetary Sciences
River Discharge
100%
Flood Prediction
50%
Physics
Physics
100%