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Learning Optimal Topology for Ad-hoc Robot Networks

Robotics 2024-04-08 v2 Machine Learning

Abstract

In this paper, we synthesize a data-driven method to predict the optimal topology of an ad-hoc robot network. This problem is technically a multi-task classification problem. However, we divide it into a class of multi-class classification problems that can be more efficiently solved. For this purpose, we first compose an algorithm to create ground-truth optimal topologies associated with various configurations of a robot network. This algorithm incorporates a complex collection of optimality criteria that our learning model successfully manages to learn. This model is an stacked ensemble whose output is the topology prediction for a particular robot. Each stacked ensemble instance constitutes three low-level estimators whose outputs will be aggregated by a high-level boosting blender. Applying our model to a network of 10 robots displays over 80% accuracy in the prediction of optimal topologies corresponding to various configurations of the cited network.

Keywords

Cite

@article{arxiv.2201.12900,
  title  = {Learning Optimal Topology for Ad-hoc Robot Networks},
  author = {Matin Macktoobian and Zhan Shu and Qing Zhao},
  journal= {arXiv preprint arXiv:2201.12900},
  year   = {2024}
}

Comments

This version is the one published in IEEE Robotics and Automation Letters

R2 v1 2026-06-24T09:09:42.787Z