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Dongting Li

5 accepted papers

2026

HAIC: Humanoid Agile Object Interaction Control via Dynamics-Aware World Model

RSS 2026poster

Humanoid robots exhibit significant potential for executing complex whole-body interaction tasks in unstructured environments. While recent advancements in Human-Object Interaction (HOI) have been substantial, prevailing methodologies predominantly address the manipulation of fully actuated objects,…

Cited by 0SourceScholar
2025

InterAct: Advancing Large-Scale Versatile 3D Human-Object Interaction Generation

CVPR 2025poster

While large-scale human motion capture datasets have advanced human motion generation, modeling and generating dynamic 3D human-object interactions (HOIs) remain challenging due to dataset limitations. Existing datasets often lack extensive, high-quality motion and annotation and exhibit artifacts s…

Cited by 2SourcePDFScholar
2025

Multi-Functional Granular Propulsion: Bio-Inspired Orientation Control and Local Fluidization for Crawl-To-Dig Transitions

IROS 2025

Existing robots designed for locomotion in granular media typically excel at a single purpose—either surface travel or subsurface digging—while lacking the ability to perform both within the same platform. In contrast, nature offers various examples of burrowing organisms that exhibit multi-function

Cited by 0SourceScholar
2021

Compliant Fins for Locomotion in Granular Media

RA-L 2021

In this letter, we present an approach to study the behavior of compliant plates in granular media and optimize the performance of a robot that utilizes this technique for mobility. From previous work and fundamental tests on thin plate force generation inside granular media, we introduce an origami

Cited by 22SourcecodeScholar
2021

Tracking Control of a Miniature 2-DOF Manipulator With Hydrogel Actuators

RA-L 2021

Due to the nature of the complex spatiotemporal dynamics of stimuli-responsive soft materials, closed-loop control of hydrogel-actuated mechanisms has remained a challenge. This letter demonstrates, for the first time, closed-loop trajectory tracking control in real-time of a millimeter-scale, two d

Cited by 6SourceScholar