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Michael Pantic

13 accepted papers

2026

Depth Completion in Unseen Field Robotics Environments Using Extremely Sparse Depth Measurements

ICRA 2026poster

Autonomous field robots operating in unstructured environments require robust perception to ensure safe and reliable operations. Recent advances in monocular depth estimation have demonstrated the potential of low-cost cameras as depth sensors; however, their adoption in field robotics remains limit…

2026

Pushing the Limits of Reactive Navigation: Learning to Escape Local Minima

ICRA 2026poster

Can a robot navigate a cluttered environment without an explicit map? Reactive methods that use only the robot’s current sensor data and local information are fast and flexible, but prone to getting stuck in local minima. Is there a middle-ground between reactive methods and map-based path planners?…

Cited by 0SourceScholar
2025

Pushing the Limits of Reactive Navigation: Learning to Escape Local Minima

RA-L 2025

Can a robot navigate a cluttered environment without an explicit map? Reactive methods that use only the robot's current sensor data and local information are fast and flexible, but prone to getting stuck in local minima. Is there a middle-ground between reactive methods and map-based path planners?

Cited by 4SourcecodeScholar
2024

Passive Aligning Physical Interaction of Fully-Actuated Aerial Vehicles for Pushing Tasks

ICRA 2024poster

Recently, the utilization of aerial manipulators for performing pushing tasks in non-destructive testing (NDT) applications has seen significant growth. Such operations entail physical interactions between the aerial robotic system and the environment. End-effectors with multiple contact points are…

Cited by 6SourceScholar
2024

Task Adaptation in Industrial Human-Robot Interaction: Leveraging Riemannian Motion Policies

RSS 2024poster

In real-world industrial environments, modern robots often rely on human operators for crucial decision-making and mission synthesis from individual tasks. Effective and safe collaboration between humans and robots requires systems that can adjust their motion to human intentions, enabling dynamic t…

Cited by 0SourcePDFScholar
2024

Waverider: Leveraging Hierarchical, Multi-Resolution Maps for Efficient and Reactive Obstacle Avoidance

ICRA 2024

Fast and reliable obstacle avoidance is an important task for mobile robots. In this work, we propose an efficient reactive system that provides high-quality obstacle avoidance while running at hundreds of hertz with minimal resource usage. Our approach combines wavemap, a hierarchical volumetric ma

Cited by 8SourceScholar
2023

Obstacle avoidance using Raycasting and Riemannian Motion Policies at kHz rates for MAVs

ICRA 2023poster

This paper presents a novel method for using Riemannian Motion Policies on volumetric maps, shown in the example of obstacle avoidance for Micro Aerial Vehicles (MAVs), Today, most robotic obstacle avoidance algorithms rely on sampling or optimization-based planners with volumetric maps. However, th…

Cited by 16SourcecodeScholar
2022

Reactive Motion Planning for Rope Manipulation and Collision Avoidance using Aerial Robots

IROS 2022poster

In this work we address the challenging problem of manipulating a flexible link, like a rope, with an aerial robot. Inspired by spraying tasks in construction and maintenance scenarios, we consider the case in which an autonomous end-effector (e.g., a spray nozzle moved by a robot or a human operato…

Cited by 6SourceScholar
2021

Mesh Manifold Based Riemannian Motion Planning for Omnidirectional Micro Aerial Vehicles

RA-L 2021

This letter presents a novel on-line path planning method that enables aerial robots to interact with surfaces. We present a solution to the problem of finding trajectories that drive a robot towards a surface and move along it. Triangular meshes are used as a surface map representation that is free

Cited by 14SourceScholar
2021

Multi-Resolution Elevation Mapping and Safe Landing Site Detection with Applications to Planetary Rotorcraft

IROS 2021poster

In this paper, we propose a resource-efficient approach to provide an autonomous UAV with an on-board perception method to detect safe, hazard-free landing sites during flights over complex 3D terrain. We aggregate 3D measurements acquired from a sequence of monocular images by a Structure-from-Moti…

Cited by 17SourceScholar
2020

An Efficient Sampling-Based Method for Online Informative Path Planning in Unknown Environments

RA-L 2020

The ability to plan informative paths online is essential to robot autonomy. In particular, sampling-based approaches are often used as they are capable of using arbitrary information gain formulations. However, they are prone to local minima, resulting in sub-optimal trajectories, and sometimes do

Cited by 285SourcecodeScholar
2020

Trajectory Tracking Nonlinear Model Predictive Control for an Overactuated MAV

ICRA 2020poster

This work presents a method to control omnidirectional micro aerial vehicles (OMAVs) for the tracking of 6-DoF trajectories in free space. A rigid body model based approach is applied in a receding horizon fashion to generate optimal wrench commands that can be constrained to meet limits given by th…

Cited by 41SourceScholar
2019

An Omnidirectional Aerial Manipulation Platform for Contact-Based Inspection

RSS 2019poster

This paper presents an omnidirectional aerial manipulation platform for robust and responsive interaction with unstructured environments, toward the goal of contact-based inspection. The fully actuated tilt-rotor aerial system is equipped with a rigidly mounted end-effector, and is able to exert a 6…

Cited by 132SourcePDFScholar