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Martin Weinmann
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2020 – today
- 2025
- [i14]Benjamin Kiefer, Lojze Zust, Jon Muhovic, Matej Kristan, Janez Pers, Matija Tersek, Uma Mudenagudi, Chaitra Desai, Arnold Wiliem, Marten Kreis, Nikhil Akalwadi, Yitong Quan, Zhiqiang Zhong, Zhe Zhang, Sujie Liu, Xuran Chen, Yang Yang, Matej Fabijanic, Fausto Ferreira, Seongju Lee, Junseok Lee, Kyoobin Lee, Shanliang Yao, Runwei Guan, Xiaoyu Huang, Yi Ni, Himanshu Kumar
, Yuan Feng, Yi-Ching Cheng, Tzu-Yu Lin, Chia-Ming Lee, Chih-Chung Hsu, Jannik Sheikh, Andreas Michel, Wolfgang Gross, Martin Weinmann, Josip Saric, Yipeng Lin, Xiang Yang, Nan Jiang, Yutang Lu, Fei Feng, Ali Awad, Evan Lucas, Ashraf Saleem, Ching-Heng Cheng, Chih-Chung Hsu:
3rd Workshop on Maritime Computer Vision (MaCVi) 2025: Challenge Results. CoRR abs/2501.10343 (2025) - 2024
- [j13]Boitumelo Ruf
, Martin Weinmann
, Stefan Hinz
:
FaSS-MVS: Fast Multi-View Stereo with Surface-Aware Semi-Global Matching from UAV-Borne Monocular Imagery. Sensors 24(19): 6397 (2024) - [c11]Benjamin Kiefer, Lojze Zust, Matej Kristan, Janez Pers, Matija Tersek, Arnold Wiliem, Martin Messmer, Cheng-Yen Yang, Hsiang-Wei Huang, Zhongyu Jiang, Heng-Cheng Kuo, Jie Mei, Jenq-Neng Hwang, Daniel Stadler, Lars Sommer, Kaer Huang, Aiguo Zheng, Weitu Chong, Kanokphan Lertniphonphan, Jun Xie, Feng Chen, Jian Li, Zhepeng Wang, Luca Zedda, Andrea Loddo
, Cecilia Di Ruberto
, Tuan-Anh Vu
, Hai Nguyen-Truong, Tan-Sang Ha, Quan-Dung Pham, Sai-Kit Yeung, Yuan Feng, Nguyen Thanh Thien, Lixin Tian, Sheng-Yao Kuan, Yuan-Hao Ho, Ángel Bueno Rodríguez, Borja Carrillo-Perez
, Alexander Klein, Antje Alex, Yannik Steiniger, Felix Sattler
, Edgardo Solano-Carrillo, Matej Fabijanic, Magdalena Sumunec, Nadir Kapetanovic, Andreas Michel, Wolfgang Gross, Martin Weinmann:
2nd Workshop on Maritime Computer Vision (MaCVi) 2024: Challenge Results. WACV (Workshops) 2024: 869-891 - [i13]Markus Hillemann
, Robert Langendörfer, Max Heiken, Max Mehltretter, Andreas Schenk, Martin Weinmann, Stefan Hinz, Christian Heipke, Markus Ulrich
:
Novel View Synthesis with Neural Radiance Fields for Industrial Robot Applications. CoRR abs/2405.04345 (2024) - 2023
- [c10]Andreas Michel
, Martin Weinmann
, Fabian Schenkel, Tomas Gomez, Mark Falvey, Rainer Schmitz, Wolfgang Middelmann, Stefan Hinz
:
DustNet: Attention to Dust. DAGM 2023: 211-226 - [c9]Andreas Michel
, Martin Weinmann, Fabian Schenkel, Thomas Gomez, Mark Falvey, Rainer Schmitz, Wolfgang Middelmann, Stefan Hinz:
Terrestrial Visual Dust Density Estimation Based On Deep Learning. IGARSS 2023: 4923-4926 - [i12]Benjamin Kiefer, Lojze Zust, Matej Kristan, Janez Pers, Matija Tersek, Arnold Wiliem, Martin Messmer, Cheng-Yen Yang, Hsiang-Wei Huang, Zhongyu Jiang, Heng-Cheng Kuo, Jie Mei, Jenq-Neng Hwang, Daniel Stadler, Lars Sommer, Kaer Huang, Aiguo Zheng, Weitu Chong, Kanokphan Lertniphonphan, Jun Xie, Feng Chen, Jian Li, Zhepeng Wang, Luca Zedda, Andrea Loddo, Cecilia Di Ruberto, Tuan-Anh Vu
, Hai Nguyen-Truong, Tan-Sang Ha, Quan-Dung Pham, Sai-Kit Yeung, Yuan Feng, Nguyen Thanh Thien, Lixin Tian, Sheng-Yao Kuan, Yuan-Hao Ho, Ángel Bueno Rodríguez, Borja Carrillo-Perez, Alexander Klein, Antje Alex, Yannik Steiniger, Felix Sattler, Edgardo Solano-Carrillo, Matej Fabijanic
, Magdalena Sumunec, Nadir Kapetanovic, Andreas Michel, Wolfgang Gross, Martin Weinmann:
The 2nd Workshop on Maritime Computer Vision (MaCVi) 2024. CoRR abs/2311.14762 (2023) - 2022
- [j12]Janine Florath
, Sina Keller
, Rodrigo Abarca-del-Río
, Stefan Hinz
, Guido Staub, Martin Weinmann
:
Glacier Monitoring Based on Multi-Spectral and Multi-Temporal Satellite Data: A Case Study for Classification with Respect to Different Snow and Ice Types. Remote. Sens. 14(4): 845 (2022) - [j11]Jihao Li
, Martin Weinmann
, Xian Sun
, Wenhui Diao
, Yingchao Feng
, Kun Fu
:
Random Topology and Random Multiscale Mapping: An Automated Design of Multiscale and Lightweight Neural Network for Remote-Sensing Image Recognition. IEEE Trans. Geosci. Remote. Sens. 60: 1-17 (2022) - [c8]Benedikt Kottler
, Ludwig List, Dimitri Bulatov, Martin Weinmann:
3GAN: A Three-GAN-based Approach for Image Inpainting Applied to the Reconstruction of Occluded Parts of Building Walls. VISIGRAPP (4: VISAPP) 2022: 427-435 - [i11]Yongqiang Mao, Kaiqiang Chen, Wenhui Diao, Xian Sun, Xiaonan Lu, Kun Fu, Martin Weinmann:
Beyond single receptive field: A receptive field fusion-and-stratification network for airborne laser scanning point cloud classification. CoRR abs/2207.10278 (2022) - 2021
- [j10]Patrick Hübner
, Martin Weinmann
, Sven Wursthorn
, Stefan Hinz
:
Pose Normalization of Indoor Mapping Datasets Partially Compliant with the Manhattan World Assumption. Remote. Sens. 13(23): 4765 (2021) - [j9]Boitumelo Ruf
, Jonas Mohrs, Martin Weinmann, Stefan Hinz, Jürgen Beyerer:
ReS2tAC - UAV-Borne Real-Time SGM Stereo Optimized for Embedded ARM and CUDA Devices. Sensors 21(11): 3938 (2021) - [j8]Xian Sun
, Peijin Wang
, Zhiyuan Yan
, Wenhui Diao, Xiaonan Lu, Zhujun Yang, Yidan Zhang
, Deliang Xiang
, Chen Yan, Jie Guo, Bo Dang
, Wei Wei, Feng Xu, Cheng Wang, Ronny Hänsch, Martin Weinmann, Naoto Yokoya
, Kun Fu:
Automated High-Resolution Earth Observation Image Interpretation: Outcome of the 2020 Gaofen Challenge. IEEE J. Sel. Top. Appl. Earth Obs. Remote. Sens. 14: 8922-8940 (2021) - [c7]Janine Florath, Sina Keller, Guido Staub, Martin Weinmann:
Optical Remote Sensing for Glacier Monitoring with Respect to Different Snow and Ice Types: A Case Study for the Southern Patagonian Icefield. WHISPERS 2021: 1-5 - [i10]Xian Sun, Peijin Wang, Zhiyuan Yan, Feng Xu, Ruiping Wang, Wenhui Diao, Jin Chen, Jihao Li, Yingchao Feng, Tao Xu, Martin Weinmann, Stefan Hinz, Cheng Wang, Kun Fu:
FAIR1M: A Benchmark Dataset for Fine-grained Object Recognition in High-Resolution Remote Sensing Imagery. CoRR abs/2103.05569 (2021) - [i9]Max Hermann, Boitumelo Ruf, Martin Weinmann:
Real-time dense 3D Reconstruction from monocular video data captured by low-cost UAVs. CoRR abs/2104.10515 (2021) - [i8]Boitumelo Ruf, Jonas Mohrs, Martin Weinmann, Stefan Hinz, Jürgen Beyerer:
ReS2tAC - UAV-Borne Real-Time SGM Stereo Optimized for Embedded ARM and CUDA Devices. CoRR abs/2106.07927 (2021) - [i7]Patrick Hübner, Martin Weinmann, Sven Wursthorn, Stefan Hinz:
Pose Normalization of Indoor Mapping Datasets Partially Compliant to the Manhattan World Assumption. CoRR abs/2107.07778 (2021) - [i6]Boitumelo Ruf, Martin Weinmann, Stefan Hinz:
FaSS-MVS - Fast Multi-View Stereo with Surface-Aware Semi-Global Matching from UAV-borne Monocular Imagery. CoRR abs/2112.00821 (2021) - 2020
- [j7]Patrick Hübner
, Kate Clintworth, Qingyi Liu, Martin Weinmann
, Sven Wursthorn
:
Evaluation of HoloLens Tracking and Depth Sensing for Indoor Mapping Applications. Sensors 20(4): 1021 (2020) - [c6]Dimitri Bulatov, Dominik Stütz, Lukas Lucks, Martin Weinmann:
Superpoints in RANSAC Planes: A New Approach for Ground Surface Extraction Exemplified on Point Classification and Context-aware Reconstruction. VISIGRAPP (1: GRAPP) 2020: 25-37 - [i5]Patrick Hübner, Martin Weinmann, Sven Wursthorn:
Voxel-Based Indoor Reconstruction From HoloLens Triangle Meshes. CoRR abs/2002.07689 (2020) - [i4]Max Hermann, Boitumelo Ruf, Martin Weinmann, Stefan Hinz:
Self-Supervised Learning for Monocular Depth Estimation from Aerial Imagery. CoRR abs/2008.07246 (2020)
2010 – 2019
- 2019
- [j6]Markus Hillemann
, Martin Weinmann, Markus S. Mueller, Boris Jutzi
:
Automatic Extrinsic Self-Calibration of Mobile Mapping Systems Based on Geometric 3D Features. Remote. Sens. 11(16): 1955 (2019) - [c5]Martin Weinmann, Michael Weinmann
:
Urban Scene Labeling Based on Multi-Modal Data Acquired from Aerial Sensor Platforms. JURSE 2019: 1-4 - [i3]Sylvia Schmitz, Martin Weinmann, Boitumelo Ruf:
Automatic Co-Registration of Aerial Imagery and Untextured Model Data Utilizing Average Shading Gradients. CoRR abs/1906.10882 (2019) - [i2]Boitumelo Ruf, Thomas Pollok, Martin Weinmann:
Efficient Surface-Aware Semi-Global Matching with Multi-View Plane-Sweep Sampling. CoRR abs/1909.09891 (2019) - 2018
- [j5]Martin Weinmann
, Michael Weinmann
:
Geospatial Computer Vision Based on Multi-Modal Data - How Valuable Is Shape Information for the Extraction of Semantic Information? Remote. Sens. 10(1): 2 (2018) - [j4]Patrick Erik Bradley
, Sina Keller
, Martin Weinmann:
Unsupervised Feature Selection Based on Ultrametricity and Sparse Training Data: A Case Study for the Classification of High-Dimensional Hyperspectral Data. Remote. Sens. 10(10): 1564 (2018) - [c4]Martin Weinmann, Uwe Weidner:
Land-Cover and Land-Use Classification Based on Multitemporal Sentinel-2 Data. IGARSS 2018: 4946-4949 - [c3]Kaiqiang Chen, Kun Fu, Xian Sun, Michael Weinmann
, Stefan Hinz
, Boris Jutzi, Martin Weinmann:
Deep Semantic Segmentation of Aerial Imagery Based on Multi-Modal Data. IGARSS 2018: 6219-6222 - [i1]Boitumelo Ruf, Laurenz Thiel, Martin Weinmann:
Deep cross-domain building extraction for selective depth estimation from oblique aerial imagery. CoRR abs/1804.08302 (2018) - 2017
- [j3]Steffen Urban, Martin Weinmann
, Stefan Hinz
:
mdBRIEF - a fast online-adaptable, distorted binary descriptor for real-time applications using calibrated wide-angle or fisheye cameras. Comput. Vis. Image Underst. 162: 71-86 (2017) - [j2]Martin Weinmann
, Michael Weinmann, Clément Mallet
, Mathieu Brédif:
A Classification-Segmentation Framework for the Detection of Individual Trees in Dense MMS Point Cloud Data Acquired in Urban Areas. Remote. Sens. 9(3): 277 (2017) - [c2]Loïc Landrieu, Clément Mallet, Martin Weinmann
:
Comparison of belief propagation and graph-cut approaches for contextual classification of 3D lidar point cloud data. IGARSS 2017: 2768-2771 - 2016
- [b1]Martin Weinmann
:
Reconstruction and Analysis of 3D Scenes - From Irregularly Distributed 3D Points to Object Classes. Springer 2016, ISBN 978-3-319-29244-1, pp. 1-229 - [c1]Sina Keller
, Andreas Ch. Braun
, Stefan Hinz
, Martin Weinmann
:
Investigation of the impact of dimensionality reduction and feature selection on the classification of hyperspectral EnMAP data. WHISPERS 2016: 1-5 - 2015
- [j1]Martin Weinmann
, Steffen Urban, Stefan Hinz
, Boris Jutzi
, Clément Mallet
:
Distinctive 2D and 3D features for automated large-scale scene analysis in urban areas. Comput. Graph. 49: 47-57 (2015) - 2013
- [p1]Martin Weinmann
:
Visual Features - From Early Concepts to Modern Computer Vision. Advanced Topics in Computer Vision 2013: 1-34
Coauthor Index

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last updated on 2025-04-03 00:15 CEST by the dblp team
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