Le, Van Tung, and Trung Dung Ngo. “Virtual Pheromone Based Network Flow Control for Modular Robotic Systems”. Electronics, vol. 9, no. 3, 2020, p. 481, https://doi.org/10.3390/electronics9030481.

Genre

  • Journal Article
Contributors
Author: Le, Van Tung
Author: Ngo, Trung Dung
Date Issued
2020
Date Published Online
2020-03-14
Abstract

Guaranteeing data transmission between modules is the key for application development of modular robotic systems. In a multi-channel modular robotic system, intersection modules play an essential role of communication channel selection in controlling data flow toward desired destinations. The gradient-based routing algorithm is an ideal solution to create an one-way communication path from any robotic module to a designated destination. To create bi-directional communication for a communication path of robotic configuration, virtual pheromone-based routing algorithm is a promising mechanism for intersection modules due to its simplicity and distributivity. In this paper, we address a virtual pheromone based network flow control based on the integration of gradient and virtual pheromone-based routing algorithms. We validated this method through an education and entertainment application using our newly developed modular robotic system.

Language

  • English
Funding Note
Natural Sciences and Engineering Research Council of Canada;
Page range
481
Host Title
Electronics
Host Abbreviated Title
Electronics
Volume
9
Issue
3
ISSN
2079-9292