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John G. Rogers III

5 accepted papers

2026

Collaborative Planning with Concurrent Synchronization for Operationally Constrained UAV-UGV Teams

ICRA 2026poster

Collaborative planning under operational constraints is an essential capability for heterogeneous robot teams tackling complex large-scale real-world tasks. Unmanned Aerial Vehicles (UAVs) offer rapid environmental coverage, but flight time is often limited by energy constraints, whereas Unmanned Gr…

2026

Occlusion-Robust Relative Pose Estimation for Multi-Robot Systems Via Geometric-Aware Diffusion Matching

ICRA 2026poster

Relative pose estimation is crucial for coordinated multi-robot navigation. However, robots in close proximity often face intra-team occlusions, where teammates partially block each other's field of view, while dynamic environments further introduce environmental occlusions. Classical relative pose …

Cited by 0Scholar
2025

Subteaming and Adaptive Formation Control for Coordinated Multi-Robot Navigation

CoRL 2025poster

Coordinated multi-robot navigation is essential for robots to operate as a team in diverse environments. During navigation, robot teams usually need to maintain specific formations, such as circular formations to protect human teammates at the center. However, in complex scenarios such as narrow c…

Cited by 0SourceScholar
2016

Distributed trajectory estimation with privacy and communication constraints: A two-stage distributed Gauss-Seidel approach

ICRA 2016

We propose a distributed algorithm to estimate the 3D trajectories of multiple cooperative robots from relative pose measurements. Our approach leverages recent results [1] which show that the maximum likelihood trajectory is well approximated by a sequence of two quadratic subproblems. The main con

Cited by 44SourceScholar