Eprint already available on another site (E-prints, working papers and research blog)
Threshold Decision-Making Dynamics Adaptive to Physical Constraints and Changing Environment
Amorim, Giovanna; Santos, María; Park, Shinkyu et al.
2023
 

Files


Full Text
2312.06395v3.pdf
Author postprint (865.08 kB)
Download

All documents in ORBi are protected by a user license.

Send to



Details



Keywords :
Computer Science - Robotics; Mathematics - Dynamical Systems; Mathematics - Optimization and Control
Abstract :
[en] We propose a threshold decision-making framework for controlling the physical dynamics of an agent switching between two spatial tasks. Our framework couples a nonlinear opinion dynamics model that represents the evolution of an agent's preference for a particular task with the physical dynamics of the agent. We prove the bifurcation that governs the behavior of the coupled dynamics. We show by means of the bifurcation behavior how the coupled dynamics are adaptive to the physical constraints of the agent. We also show how the bifurcation can be modulated to allow the agent to switch tasks based on thresholds adaptive to environmental conditions. We illustrate the benefits of the approach through a decentralized multi-robot task allocation application for trash collection.
Disciplines :
Engineering, computing & technology: Multidisciplinary, general & others
Author, co-author :
Amorim, Giovanna
Santos, María
Park, Shinkyu
Franci, Alessio  ;  Université de Liège - ULiège > Département d'électricité, électronique et informatique (Institut Montefiore) > Brain-Inspired Computing
Ehrich Leonard, Naomi
Language :
English
Title :
Threshold Decision-Making Dynamics Adaptive to Physical Constraints and Changing Environment
Publication date :
01 December 2023
Available on ORBi :
since 02 July 2024

Statistics


Number of views
17 (2 by ULiège)
Number of downloads
3 (0 by ULiège)

OpenAlex citations
 
0

Bibliography


Similar publications



Contact ORBi