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Chunli Jiang

5 accepted papers

2025

Master Rules from Chaos: Learning to Reason, Plan, and Interact from Chaos for Tangram Assembly

ICRA 2025

Tangram assembly, the art of human intelligence and manipulation dexterity, is a new challenge for robotics and reveals the limitations of state-of-the-arts. Here, we describe our initial exploration and highlight key problems in reasoning, planning, and manipulation for robotic tangram assembly. We

Cited by 1SourcecodeScholar
2023

ERRA: An Embodied Representation and Reasoning Architecture for Long-Horizon Language-Conditioned Manipulation Tasks

RA-L 2023

This letter introduces ERRA, an embodied learning architecture that enables robots to jointly obtain three fundamental capabilities (reasoning, planning, and interaction) for solving long-horizon language-conditioned manipulation tasks. ERRA is based on tightly-coupled probabilistic inferences at tw

Cited by 17SourceScholar
2023

Flipbot: Learning Continuous Paper Flipping via Coarse-to-Fine Exteroceptive-Proprioceptive Exploration

ICRA 2023poster

This paper tackles the task of singulating and grasping paper-like deformable objects. We refer to such tasks as paper-flipping. In contrast to manipulating deformable objects that lack compression strength (such as shirts and ropes), minor variations in the physical properties of the paper-like def…

Cited by 4SourcecodeScholar
2023

Learn to Grasp Via Intention Discovery and Its Application to Challenging Clutter

RA-L 2023

Humans excel in grasping objects through diverse and robust policies, many of which are so probabilistically rare that exploration-based learning methods hardly observe and learn. Inspired by the human learning process, we propose a method to extract and exploit latent intents from demonstrations, a

Cited by 1SourceScholar
2019

Dynamic Flex-and-Flip Manipulation of Deformable Linear Objects

IROS 2019poster

This paper presents the technique of flex-and-flip manipulation. It is suitable for grasping thin, flexible linear objects lying on a flat surface. During the manipulation process, the object is first flexed by a robotic gripper whose fingers are placed on top of it, and later the increased internal…

Cited by 22SourcecodeScholar