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Ajinkya Joglekar

4 accepted papers

2025

Deep Reinforcement Learning for Coordinated Payload Transport in Biped-Wheeled Robots

ICRA 2025

Coordinated payload transport via a fleet of modular wheeled mobile robots offers flexibility for handling larger loads in indoor and outdoor environments. Biped-wheeled robots have recently emerged as a viable architecture for an independent/stand-alone wheeled mobile robot. In this work, we explor

Cited by 2SourceScholar
2025

Digital Twins Meet the Koopman Operator: Data-Driven Learning for Robust Autonomy

ICRA 2025

Contrary to on-road autonomous navigation, off-road autonomy is complicated by various factors ranging from sensing challenges to terrain variability. In such a milieu, data-driven approaches have been commonly employed to capture intricate vehicle-environment interactions effectively. However, the

Cited by 1SourceScholar
2023

Data-Driven Modeling and Experimental Validation of Autonomous Vehicles Using Koopman Operator

IROS 2023poster

This paper presents a data-driven framework to discover underlying dynamics on a scaled F1TENTH vehicle using the Koopman operator linear predictor. Traditionally, a range of white, gray, or black-box models are used to develop controllers for vehicle path tracking. However, these models are constra…

Cited by 6SourceScholar
2023

Data-Driven Modeling and Experimental Validation of Autonomous Vehicles Using Koopman Operator: Distribution A: Approved for Public Release; Distribution Unlimited. OPSEC # 7248

IROS 2023

This paper presents a data-driven framework to discover underlying dynamics on a scaled F1TENTH vehicle using the Koopman operator linear predictor. Traditionally, a range of white, gray, or black-box models are used to develop controllers for vehicle path tracking. However, these models are constra

Cited by 2SourceScholar