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Dhruv Mauria Saxena

8 accepted papers

2024

Improved M4M: Faster and Richer Planning for Manipulation Among Movable Objects in Cluttered 3D Workspaces

ICRA 2024poster

We are interested in enabling robots to solve difficult pick-and-place manipulation tasks in cluttered and constrained environments. If the robot does not have collision-free access to the object-of-interest (OoI) which it intends to grasp and extract from the workspace, it must reason about which m…

Cited by 2SourceScholar
2023

Planning for Complex Non-prehensile Manipulation Among Movable Objects by Interleaving Multi-Agent Pathfinding and Physics-Based Simulation

ICRA 2023poster

Real-world manipulation problems in heavy clutter require robots to reason about potential contacts with objects in the environment. We focus on pick-and-place style tasks to retrieve a target object from a shelf where some ‘movable’ objects must be rearranged in order to solve the task. In particul…

Cited by 12SourceScholar
2021

Manipulation Planning Among Movable Obstacles Using Physics-Based Adaptive Motion Primitives

ICRA 2021poster

Robot manipulation in cluttered scenes often requires contact-rich interactions with objects. It can be more economical to interact via non-prehensile actions, for example, push through other objects to get to the desired grasp pose, instead of deliberate prehensile rearrangement of the scene. For e…

Cited by 16SourceScholar
2021

Search-based Planning for Active Sensing in Goal-Directed Coverage Tasks

ICRA 2021poster

Path planning for robotic coverage is the task of determining a collision-free robot trajectory that observes all points of interest in an environment. Robots employed for such tasks are often capable of exercising active control over onboard observational sensors during navigation. We address the p…

Cited by 7SourceScholar
2020

Driving in Dense Traffic with Model-Free Reinforcement Learning

ICRA 2020poster

Traditional planning and control methods could fail to find a feasible trajectory for an autonomous vehicle to execute amongst dense traffic on roads. This is because the obstacle-free volume in spacetime is very small in these scenarios for the vehicle to drive through. However, that does not mean…

Cited by 132SourceScholar
2019

Bidirectional Heuristic Search for Motion Planning with an Extend Operator

IROS 2019poster

Sampling-based approaches are often favored in robotics for high-dimensional motion planning for their fast exploration of the search space. However, at best they offer asymptotic guarantees on solution quality due to their inherent stochasticity. While planning, the majority of effort is often spen…

Cited by 10SourceScholar