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Translating high-level linguistic instructions into precise robotic actions in the physical world remains challenging, particularly when considering the feasibility of interacting with 3D objects. In this paper, we introduce 3D-TAFS, a…

Robotics · Computer Science 2025-04-08 Meng Chu , Xuan Zhang , Zhedong Zheng , Tat-Seng Chua

Point cloud semantic segmentation plays an essential role in autonomous driving, providing vital information about drivable surfaces and nearby objects that can aid higher level tasks such as path planning and collision avoidance. While…

Computer Vision and Pattern Recognition · Computer Science 2020-11-10 Ozan Unal , Luc Van Gool , Dengxin Dai

Although point-based networks are demonstrated to be accurate for 3D point cloud modeling, they are still falling behind their voxel-based competitors in 3D detection. We observe that the prevailing set abstraction design for down-sampling…

Computer Vision and Pattern Recognition · Computer Science 2022-01-07 Chen Chen , Zhe Chen , Jing Zhang , Dacheng Tao

Grounding 3D scene affordance aims to locate interactive regions in 3D environments, which is crucial for embodied agents to interact intelligently with their surroundings. Most existing approaches achieve this by mapping semantics to 3D…

Computer Vision and Pattern Recognition · Computer Science 2024-10-01 Cuiyu Liu , Wei Zhai , Yuhang Yang , Hongchen Luo , Sen Liang , Yang Cao , Zheng-Jun Zha

Affordance segmentation aims to decompose 3D objects into parts that serve distinct functional roles, enabling models to reason about object interactions rather than mere recognition. Existing methods, mostly following the paradigm of 3D…

Computer Vision and Pattern Recognition · Computer Science 2026-03-20 Yu Huang , Zelin Peng , Changsong Wen , Xiaokang Yang , Wei Shen

3D Affordance detection is a challenging problem with broad applications on various robotic tasks. Existing methods typically formulate the detection paradigm as a label-based semantic segmentation task. This paradigm relies on predefined…

Computer Vision and Pattern Recognition · Computer Science 2025-03-05 Hengshuo Chu , Xiang Deng , Qi Lv , Xiaoyang Chen , Yinchuan Li , Jianye Hao , Liqiang Nie

Building a generalized affordance grounding model to identify actionable regions on objects is vital for real-world applications. Existing methods to train the model can be divided into weakly and fully supervised ways. However, the former…

Computer Vision and Pattern Recognition · Computer Science 2025-08-26 Dengyang Jiang , Zanyi Wang , Hengzhuang Li , Sizhe Dang , Teli Ma , Wei Wei , Guang Dai , Lei Zhang , Mengmeng Wang

Grounding natural language questions to functionally relevant regions in 3D objects -- termed language-driven 3D affordance grounding -- is essential for embodied intelligence and human-AI interaction. Existing methods, while progressing…

Computer Vision and Pattern Recognition · Computer Science 2026-03-19 Dongqiang Gou , Xuming He

Recent advances in object-centric representation learning have shown that slot attention-based methods can effectively decompose visual scenes into object slot representations without supervision. However, existing approaches typically…

Computer Vision and Pattern Recognition · Computer Science 2025-12-11 Huankun Sheng , Ming Li , Yixiang Wei , Yeying Fan , Yu-Hui Wen , Tieliang Gong , Yong-Jin Liu

The concept of function and affordance is a critical aspect of 3D scene understanding and supports task-oriented objectives. In this work, we develop a model that learns to structure and vary functional affordance across a 3D hierarchical…

Computer Vision and Pattern Recognition · Computer Science 2025-02-25 Wenting Xu , Viorela Ila , Luping Zhou , Craig T. Jin

3D affordance reasoning, the task of associating human instructions with the functional regions of 3D objects, is a critical capability for embodied agents. Current methods based on 3D Gaussian Splatting (3DGS) are fundamentally limited to…

Computer Vision and Pattern Recognition · Computer Science 2025-08-01 Di Li , Jie Feng , Jiahao Chen , Weisheng Dong , Guanbin Li , Yuhui Zheng , Mingtao Feng , Guangming Shi

Affordance detection and pose estimation are of great importance in many robotic applications. Their combination helps the robot gain an enhanced manipulation capability, in which the generated pose can facilitate the corresponding…

Robotics · Computer Science 2023-09-21 Toan Nguyen , Minh Nhat Vu , Baoru Huang , Tuan Van Vo , Vy Truong , Ngan Le , Thieu Vo , Bac Le , Anh Nguyen

This paper develops and evaluates a novel method that allows for the detection of affordances in a scalable and multiple-instance manner on visually recovered pointclouds. Our approach has many advantages over alternative methods, as it is…

Computer Vision and Pattern Recognition · Computer Science 2018-12-04 Eduardo Ruiz , Walterio Mayol-Cuevas

Affordance learning is a complex challenge in many applications, where existing approaches primarily focus on the geometric structures, visual knowledge, and affordance labels of objects to determine interactable regions. However, extending…

Computer Vision and Pattern Recognition · Computer Science 2026-03-31 Nghia Vu , Tuong Do , Khang Nguyen , Baoru Huang , Nhat Le , Binh Xuan Nguyen , Erman Tjiputra , Quang D. Tran , Ravi Prakash , Te-Chuan Chiu , Anh Nguyen

3D affordance reasoning is essential in associating human instructions with the functional regions of 3D objects, facilitating precise, task-oriented manipulations in embodied AI. However, current methods, which predominantly depend on…

Computer Vision and Pattern Recognition · Computer Science 2025-04-17 Zeming Wei , Junyi Lin , Yang Liu , Weixing Chen , Jingzhou Luo , Guanbin Li , Liang Lin

Affordance information about a scene provides important clues as to what actions may be executed in pursuit of meeting a specified goal state. Thus, integrating affordance-based reasoning into symbolic action plannning pipelines would…

Robotics · Computer Science 2020-09-15 Fu-Jen Chu , Ruinian Xu , Chao Tang , Patricio A. Vela

We propose a novel 3D point cloud segmentation framework named SASO, which jointly performs semantic and instance segmentation tasks. For semantic segmentation task, inspired by the inherent correlation among objects in spatial context, we…

Computer Vision and Pattern Recognition · Computer Science 2020-06-29 Jingang Tan , Lili Chen , Kangru Wang , Jingquan Peng , Jiamao Li , Xiaolin Zhang

Vision-language segmentation models have recently achieved strong performance by leveraging high-level semantic object categories expressed in natural language. However, this semantic dependence limits their ability to reason about…

Computer Vision and Pattern Recognition · Computer Science 2026-05-28 Corentin Seutin , Mohamed Amine Ettaki , Michaël Clément , Pierrick Coupé , Rémi Giraud

Visual navigation for autonomous agents is a core task in the fields of computer vision and robotics. Learning-based methods, such as deep reinforcement learning, have the potential to outperform the classical solutions developed for this…

Computer Vision and Pattern Recognition · Computer Science 2021-03-23 Zachary Seymour , Kowshik Thopalli , Niluthpol Mithun , Han-Pang Chiu , Supun Samarasekera , Rakesh Kumar

We present SAGA, a versatile and adaptive framework for visuomotor control that can generalize across various environments, task objectives, and user specifications. To efficiently learn such capability, our key idea is to disentangle…

Robotics · Computer Science 2025-12-16 Kuan Fang , Yuxin Chen , Xinghao Zhu , Farzad Niroui , Lingfeng Sun , Jiuguang Wang
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