Relational activity processes for modeling concurrent cooperation
Marc Toussaint, Thibaut Munzer, Yoan Mollard, Li Yang Wu, Ngo Anh Vien, Manuel Lopes
Abstract
In human-robot collaboration, multi-agent domains, or single-robot manipulation with multiple end-effectors, the activities of the involved parties are naturally concurrent. Such domains are also naturally relational as they involve objects, multiple agents, and models should generalize over objects and agents. We propose a novel formalization of relational concurrent activity processes that allows us to transfer methods from standard relational MDPs, such as Monte-Carlo planning and learning from demonstration, to concurrent cooperation domains. We formally compare the formulation to previous propositional models of concurrent decision making and demonstrate planning and learning from demonstration methods on a real-world human-robot assembly task.
BibTeX
@inproceedings{icra2016_relationalactivi,
title = {Relational activity processes for modeling concurrent cooperation},
author = {Marc Toussaint and Thibaut Munzer and Yoan Mollard and Li Yang Wu and Ngo Anh Vien and Manuel Lopes},
booktitle = {ICRA 2016},
year = {2016}
}