Media Summary: Authors: Himangi Mittal, Brian Okorn, David Held Description: When interacting with highly dynamic environments, Check the following link, and stay tuned with us! Code: Paper: ... The video presents our work "Self-Supervised

Deeplidarflow Deep Scene Flow Estimation - Detailed Analysis & Overview

Authors: Himangi Mittal, Brian Okorn, David Held Description: When interacting with highly dynamic environments, Check the following link, and stay tuned with us! Code: Paper: ... The video presents our work "Self-Supervised Video presentation of our CVPR 2023 paper: Self-Supervised 3D ... presentation for the paper: ICP-Flow: LiDAR First Principles of Computer Vision is a lecture series presented by Shree Nayar who is faculty in the Computer Science ...

Published at European Conference on Computer Vision, Zurich 2014. Recently, several frameworks for self-supervised learning of 3D

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DeepLiDARFlow: Deep Scene Flow Estimation Using a Monocular Camera and a Sparse LiDAR - IROS 2020
Just Go With the Flow: Self-Supervised Scene Flow Estimation
Floxels: Fast Unsupervised Voxel Based Scene Flow Estimation (CVPR 2025 Talk)
[NeurIPS'25 Spotlight] DeltaFlow: An Efficient Multi-frame Scene Flow Estimation Method
[RA-L & IROS 2022] Self-Supervised Scene Flow Estimation with 4-D Automotive Radar
Temporal Scene Flow Estimation
[CVPR 2023] Self-Supervised 3D Scene Flow Estimation Guided by Superpoints
ICP-Flow: LiDAR Scene Flow Estimation with ICP, CVPR24
full scene flow sequence
Coarse-to-Fine Flow Estimation | Optical Flow
Dense Semi-Rigid Scene Flow Estimation from RGBD images
SLIM: Self-Supervised LiDAR Scene Flow and Motion Segmentation
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DeepLiDARFlow: Deep Scene Flow Estimation Using a Monocular Camera and a Sparse LiDAR - IROS 2020

DeepLiDARFlow: Deep Scene Flow Estimation Using a Monocular Camera and a Sparse LiDAR - IROS 2020

https://av.dfki.de/ Video presentation for our paper "

Just Go With the Flow: Self-Supervised Scene Flow Estimation

Just Go With the Flow: Self-Supervised Scene Flow Estimation

Authors: Himangi Mittal, Brian Okorn, David Held Description: When interacting with highly dynamic environments,

Floxels: Fast Unsupervised Voxel Based Scene Flow Estimation (CVPR 2025 Talk)

Floxels: Fast Unsupervised Voxel Based Scene Flow Estimation (CVPR 2025 Talk)

You can find the paper here: https://arxiv.org/pdf/2503.04718.

[NeurIPS'25 Spotlight] DeltaFlow: An Efficient Multi-frame Scene Flow Estimation Method

[NeurIPS'25 Spotlight] DeltaFlow: An Efficient Multi-frame Scene Flow Estimation Method

Check the following link, and stay tuned with us! Code: https://github.com/Kin-Zhang/DeltaFlow Paper: ...

[RA-L & IROS 2022] Self-Supervised Scene Flow Estimation with 4-D Automotive Radar

[RA-L & IROS 2022] Self-Supervised Scene Flow Estimation with 4-D Automotive Radar

The video presents our work "Self-Supervised

Temporal Scene Flow Estimation

Temporal Scene Flow Estimation

Temporal Scene Flow Estimation

[CVPR 2023] Self-Supervised 3D Scene Flow Estimation Guided by Superpoints

[CVPR 2023] Self-Supervised 3D Scene Flow Estimation Guided by Superpoints

Video presentation of our CVPR 2023 paper: Self-Supervised 3D

ICP-Flow: LiDAR Scene Flow Estimation with ICP, CVPR24

ICP-Flow: LiDAR Scene Flow Estimation with ICP, CVPR24

... presentation for the paper: ICP-Flow: LiDAR

full scene flow sequence

full scene flow sequence

Estimation

Coarse-to-Fine Flow Estimation | Optical Flow

Coarse-to-Fine Flow Estimation | Optical Flow

First Principles of Computer Vision is a lecture series presented by Shree Nayar who is faculty in the Computer Science ...

Dense Semi-Rigid Scene Flow Estimation from RGBD images

Dense Semi-Rigid Scene Flow Estimation from RGBD images

Published at European Conference on Computer Vision, Zurich 2014.

SLIM: Self-Supervised LiDAR Scene Flow and Motion Segmentation

SLIM: Self-Supervised LiDAR Scene Flow and Motion Segmentation

Recently, several frameworks for self-supervised learning of 3D

DoGFlow:Self‑Supervised LiDAR Scene Flow via Cross‑Modal Doppler Guidance

DoGFlow:Self‑Supervised LiDAR Scene Flow via Cross‑Modal Doppler Guidance

Accurate 3D