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Jonathan Scholz

6 accepted papers

2024

Deep SE(3)-Equivariant Geometric Reasoning for Precise Placement Tasks

ICLR 2024poster

Many robot manipulation tasks can be framed as geometric reasoning tasks, where an agent must be able to precisely manipulate an object into a position that satisfies the task from a set of initial conditions. Often, task success is defined based on the relationship between two objects - for instanc…

Cited by 14SourcePDFScholar
2020

S3K: Self-Supervised Semantic Keypoints for Robotic Manipulation via Multi-View Consistency

CoRL 2020

A robot’s ability to act is fundamentally constrained by what it can perceive. Many existing approaches to visual representation learning utilize general-purpose training criteria, e.g. image reconstruction, smoothness in latent space, or usefulness for control, or else make use of large datasets an

Cited by 0SourcePDFScholar
2020

Scaling data-driven robotics with reward sketching and batch reinforcement learning

RSS 2020poster

By harnessing a growing dataset of robot experience, we learn control policies for a diverse and increasing set of related manipulation tasks. To make this possible, we introduce reward sketching: an effective way of eliciting human preferences to learn the reward function for a new task. This rewar…

2019

Improved Exploration through Latent Trajectory Optimization in Deep Deterministic Policy Gradient

IROS 2019poster

Model-free reinforcement learning algorithms such as Deep Deterministic Policy Gradient (DDPG) often require additional exploration strategies, especially if the actor is of deterministic nature. This work evaluates the use of model-based trajectory optimization methods used for exploration in Deep…

Cited by 15SourceScholar
2016

Navigation Among Movable Obstacles with learned dynamic constraints

IROS 2016poster

In this paper we present the first planner for the problem of Navigation Among Movable Obstacles (NAMO) on a real robot that can handle environments with under-specified object dynamics. This result makes use of recent progress from two threads of the Reinforcement Learning literature. The first is…

Cited by 25SourceScholar
2015

Learning non-holonomic object models for mobile manipulation

ICRA 2015poster

For a mobile manipulator to interact with large everyday objects, such as office tables, it is often important to have dynamic models of these objects. However, as it is infeasible to provide the robot with models for every possible object it may encounter, it is desirable that the robot can identif…

Cited by 16SourceScholar