Wolfgang Wagner

About Wolfgang Wagner

Wolfgang Wagner, With an exceptional h-index of 96 and a recent h-index of 65 (since 2020), a distinguished researcher at Technische Universität Wien, specializes in the field of Microwave remote sensing, soil moisture, lidar remote sensing, big data.

His recent articles reflect a diverse array of research interests and contributions to the field:

Mitigating the impact of dense vegetation on the Sentinel-1 surface soil moisture retrievals over Europe

Assimilating ASCAT normalized backscatter and slope into the land surface model ISBA-A-gs using a Deep Neural Network as the observation operator: Case studies at ISMN stations …

Evaluation of limiting factors for SAR backscatter based cut detection of alpine grasslands

Satellite soil moisture for drought risk insurance

Dokumentation extremer Flutereignisse mit Radarsatelliten

Improving ASCAT slope estimation methods for representing vegetation water dynamics

Sensitivity of Sentinel-1 Backscatter Signal to Vegetation Dynamics over Mozambique: A comparison with MODIS data

30 years of scatterometer soil moisture research at TU Wien: What’s next?

Wolfgang Wagner Information

University

Position

Professor for Remote Sensing

Citations(all)

34650

Citations(since 2020)

16199

Cited By

25322

hIndex(all)

96

hIndex(since 2020)

65

i10Index(all)

312

i10Index(since 2020)

221

Email

University Profile Page

Google Scholar

Wolfgang Wagner Skills & Research Interests

Microwave remote sensing

soil moisture

lidar remote sensing

big data

Top articles of Wolfgang Wagner

Mitigating the impact of dense vegetation on the Sentinel-1 surface soil moisture retrievals over Europe

European Journal of Remote Sensing

2024/12/31

Assimilating ASCAT normalized backscatter and slope into the land surface model ISBA-A-gs using a Deep Neural Network as the observation operator: Case studies at ISMN stations …

Remote Sensing of Environment

2024/7/1

Evaluation of limiting factors for SAR backscatter based cut detection of alpine grasslands

Science of Remote Sensing

2024/6/1

Satellite soil moisture for drought risk insurance

2024/4/3

Dokumentation extremer Flutereignisse mit Radarsatelliten

2024/4/3

Improving ASCAT slope estimation methods for representing vegetation water dynamics

2024/3/7

Sensitivity of Sentinel-1 Backscatter Signal to Vegetation Dynamics over Mozambique: A comparison with MODIS data

2024/3/7

30 years of scatterometer soil moisture research at TU Wien: What’s next?

2024/3/7

Surface Soil Moisture retrieval via change detection using SAOCOM L-band data over the Po Valley (Italy)

2024/3/7

A Case Study on Agricultural Drought Monitoring using ASCAT Surface Soil Moisture at 6.25 km sampling over Eastern Africa

2024/3/7

Next-generation ASCAT surface soil moisture near real-time service

2024/3/7

On the assesment of a new 4D soil moisture product over Basilicata Region

2024/3/7

Mapping soils in arid regions with Sentinel-1

2024/3/7

Monitoring Metop ASCAT backscatter stability over tropical rainforests

2024/3/7

Monitoring The Development Of Land Heatwaves Using Spatiotemporal Models

2024/3/7

High-resolution drought monitoring with Sentinel-1: A case-study over Mozambique

2024/3/7

Drought monitoring and early warning with satellite soil moisture data

2024/3/7

Unleashing the power of Dask with a high-throughput Trust Region Reflectance solver for raster datacubes

2024/3/7

Scientific challenges when using SAR images for mapping of water bodies and floods everywhere and anytime

2024/3/7

EOmaps: An open-source python package for geographic data visualization and analysis.

2024/3/7

See List of Professors in Wolfgang Wagner University(Technische Universität Wien)

Co-Authors

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