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Mihir Kulkarni

11 accepted papers

2026

Efficient Knowledge Transfer for Jump-Starting Control Policy Learning of Multirotors Through Physics-Aware Neural Architectures

RA-L 2026

Efficiently training control policies for robots is a major challenge that can greatly benefit from utilizing knowledge gained from training similar systems through cross-embodiment knowledge transfer. In this work, we focus on accelerating policy training using a library-based initialization scheme

Cited by 0SourceScholar
2026

Semantically-Driven Deep Reinforcement Learning for Inspection Path Planning

ICRA 2026poster

This letter introduces a novel semantics-aware inspection planning policy derived through deep reinforcement learning. Reflecting the fact that within autonomous informative path planning missions in unknown environments, it is often only a sparse set of objects of interest that need to be inspected…

2025

Aerial Gym Simulator: A Framework for Highly Parallelized Simulation of Aerial Robots

RA-L 2025

This paper contributes the Aerial Gym Simulator, a highly parallelized, modular framework for simulation and rendering of arbitrary multirotor platforms based on NVIDIA Isaac Gym. Aerial Gym supports the simulation of under-, fully- and over-actuated multirotors offering parallelized geometric contr

Cited by 23SourcecodeScholar
2024

Neural Control Barrier Functions for Safe Navigation

IROS 2024poster

Autonomous robot navigation can be particularly demanding, especially when the surrounding environment is not known and safety of the robot is crucial. This work relates to the synthesis of Control Barrier Functions (CBFs) through data for safe navigation in unknown environments. A novel methodology…

Cited by 9SourceScholar
2023

Semantically-Enhanced Deep Collision Prediction for Autonomous Navigation Using Aerial Robots

IROS 2023poster

This paper contributes a novel and modularized learning-based method for aerial robots navigating cluttered environments containing hard-to-perceive thin obstacles without assuming access to a map or the full pose estimation of the robot. The proposed solution builds upon a semantically-enhanced Var…

Cited by 12SourceScholar
2022

Autonomous Teamed Exploration of Subterranean Environments using Legged and Aerial Robots

ICRA 2022poster

This paper presents a novel strategy for autonomous teamed exploration of subterranean environments using legged and aerial robots. Tailored to the fact that subterranean settings, such as cave networks and underground mines, often involve complex, large-scale and multi-branched topologies, while wi…

Cited by 112SourcecodeScholar
2022

MIMOSA: A Multi-Modal SLAM Framework for Resilient Autonomy against Sensor Degradation

IROS 2022poster

This paper presents a framework for Multi-Modal SLAM (MIMOSA) that utilizes a nonlinear factor graph as the underlying representation to provide loosely-coupled fusion of any number of sensing modalities. Tailored to the goal of enabling resilient robotic autonomy in GPS-denied and perceptually-degr…

Cited by 15SourceScholar
2021

Resilient Collision-tolerant Navigation in Confined Environments

ICRA 2021poster

This work presents the design and autonomous navigation policy of the Resilient Micro Flyer, a new type of collision-tolerant robot tailored to fly through extremely confined environments and manhole-sized tubes. The robot maintains a low weight (<500g) and implements a combined rigid-compliant desi…

Cited by 24SourceScholar