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Josiah Wong

10 accepted papers

2026

MoMaGen: Generating Demonstrations under Soft and Hard Constraints for Multi-Step Bimanual Mobile Manipulation

ICLR 2026poster

Imitation learning from large-scale, diverse human demonstrations has been shown to be effective for training robots, but collecting such data is costly and time-consuming. This challenge intensifies for multi-step bimanual mobile manipulation, where humans must teleoperate both the mobile base and…

Cited by 0SourcecodeScholar
2025

BEHAVIOR Robot Suite: Streamlining Real-World Whole-Body Manipulation for Everyday Household Activities

CoRL 2025poster

Real-world household tasks present significant challenges for mobile manipulation robots. An analysis of existing robotics benchmarks reveals that successful task performance hinges on three key whole-body control capabilities: bimanual coordination, stable and precise navigation, and extensive end-…

Cited by 0SourcecodeScholar
2024

Automated Creation of Digital Cousins for Robust Policy Learning

CoRL 2024poster

Training robot policies in the real world can be unsafe, costly, and difficult to scale. Simulation serves as an inexpensive and potentially limitless source of training data, but suffers from the semantics and physics disparity between simulated and real-world environments. These discrepancies can…

Cited by 11SourcecodeScholar
2024

BEHAVIOR Vision Suite: Customizable Dataset Generation via Simulation

CVPR 2024highlight

The systematic evaluation and understanding of computer vision models under varying conditions require large amounts of data with comprehensive and customized labels which real-world vision datasets rarely satisfy. While current synthetic data generators offer a promising alternative particularly fo…

2022

BEHAVIOR-1K: A Benchmark for Embodied AI with 1,000 Everyday Activities and Realistic Simulation

CoRL 2022oral

We present BEHAVIOR-1K, a comprehensive simulation benchmark for human-centered robotics. BEHAVIOR-1K includes two components, guided and motivated by the results of an extensive survey on "what do you want robots to do for you?". The first is the definition of 1,000 everyday activities, grounded in…

Cited by 205SourceScholar
2022

OSCAR: Data-Driven Operational Space Control for Adaptive and Robust Robot Manipulation

ICRA 2022poster

Learning performant robot manipulation policies can be challenging due to high-dimensional continuous actions and complex physics-based dynamics. This can be alleviated through intelligent choice of action space. Operational Space Control (OSC) has been used as an effective task-space controller for…

Cited by 15SourcecodeScholar
2021

Error-Aware Imitation Learning from Teleoperation Data for Mobile Manipulation

CoRL 2021poster

In mobile manipulation (MM), robots can both navigate within and interact with their environment and are thus able to complete many more tasks than robots only capable of navigation or manipulation. In this work, we explore how to apply imitation learning (IL) to learn continuous visuo-motor policie…

Cited by 66SourceScholar
2021

Learning Multi-Arm Manipulation Through Collaborative Teleoperation

ICRA 2021poster

Imitation Learning (IL) is a powerful paradigm to teach robots to perform manipulation tasks by allowing them to learn from human demonstrations collected via teleoperation, but has mostly been limited to single-arm manipulation. However, many real-world tasks require multiple arms, such as lifting…

Cited by 58SourceScholar
2021

What Matters in Learning from Offline Human Demonstrations for Robot Manipulation

CoRL 2021oral

Imitating human demonstrations is a promising approach to endow robots with various manipulation capabilities. While recent advances have been made in imitation learning and batch (offline) reinforcement learning, a lack of open-source human datasets and reproducible learning methods make assessing…

Cited by 523SourcecodeScholar
2021

iGibson 1.0: A Simulation Environment for Interactive Tasks in Large Realistic Scenes

IROS 2021poster

We present iGibson 1.0, a novel simulation environment to develop robotic solutions for interactive tasks in large-scale realistic scenes. Our environment contains 15 fully interactive home-sized scenes with 108 rooms populated with rigid and articulated objects. The scenes are replicas of real-worl…

Cited by 193SourceScholar