We present a system which grows and manages a network of remote viewpoints during the natural installation cycle for a newly installed camera network or a newly deployed robot fleet. No explicit notion of camera position or orientation is required, neither global - i.e. relative to a building plan - nor local - i.e. relative to an interesting point in a room. Furthermore, no metric relationship between viewpoints is required. Instead, we leverage our prior work in effective remote control without extrinsic or intrinsic calibration and extend it to the multi-camera setting. In this, we memorise, from simultaneous robot detections in the tracker thread, soft pixel-wise topological connections between viewpoints. We demonstrate our system with repeated autonomous traversals of workspaces connected by a network of six cameras across a productive office environment.
@article{arxiv.2310.15677,
title = {Robot-Relay : Building-Wide, Calibration-Less Visual Servoing with Learned Sensor Handover Network},
author = {Luke Robinson and Matthew Gadd and Paul Newman and Daniele De Martini},
journal= {arXiv preprint arXiv:2310.15677},
year = {2023}
}
Comments
Paper accepted to the 18th International Symposium on Experimental Robotics (ISER 2023)