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Jinhwi Lee

6 accepted papers

2021

Brick-by-Brick: Combinatorial Construction with Deep Reinforcement Learning

NeurIPS 2021poster

Discovering a solution in a combinatorial space is prevalent in many real-world problems but it is also challenging due to diverse complex constraints and the vast number of possible combinations. To address such a problem, we introduce a novel formulation, combinatorial construction, which requires…

Cited by 22SourcePDFScholar
2021

Tree Search-based Task and Motion Planning with Prehensile and Non-prehensile Manipulation for Obstacle Rearrangement in Clutter

ICRA 2021poster

We propose a tree search-based planning algorithm for a robot manipulator to rearrange objects and grasp a target in a dense space. We consider environments where tasks cannot be completed with prehensile planning only. As assuming that a manipulator is only allowed to grasp from the top, we aim to…

Cited by 25SourceScholar
2020

Fast and resilient manipulation planning for target retrieval in clutter

ICRA 2020poster

This paper presents a task and motion planning (TAMP) framework for a robotic manipulator in order to retrieve a target object from clutter. We consider a configuration of objects in a confined space with a high density so no collision-free path to the target exists. The robot must relocate some obj…

Cited by 44SourceScholar
2020

Where to relocate?: Object rearrangement inside cluttered and confined environments for robotic manipulation

ICRA 2020poster

We present an algorithm determining where to relocate objects inside a cluttered and confined space while rearranging objects to retrieve a target object. Although methods that decide what to remove have been proposed, planning for the placement of removed objects inside a workspace has not received…

Cited by 57SourceScholar
2019

Efficient Obstacle Rearrangement for Object Manipulation Tasks in Cluttered Environments

ICRA 2019poster

We present an algorithm that produces a plan for relocating obstacles in order to grasp a target in clutter by a robotic manipulator without collisions. We consider configurations where objects are densely populated in a constrained and confined space. Thus, there exists no collision-free path for t…

Cited by 72SourceScholar