English

On Self-Regulated Swarms, Societal Memory, Speed and Dynamics

Neural and Evolutionary Computing 2007-05-23 v1 Artificial Intelligence

Abstract

We propose a Self-Regulated Swarm (SRS) algorithm which hybridizes the advantageous characteristics of Swarm Intelligence as the emergence of a societal environmental memory or cognitive map via collective pheromone laying in the landscape (properly balancing the exploration/exploitation nature of our dynamic search strategy), with a simple Evolutionary mechanism that trough a direct reproduction procedure linked to local environmental features is able to self-regulate the above exploratory swarm population, speeding it up globally. In order to test his adaptive response and robustness, we have recurred to different dynamic multimodal complex functions as well as to Dynamic Optimization Control problems, measuring reaction speeds and performance. Final comparisons were made with standard Genetic Algorithms (GAs), Bacterial Foraging strategies (BFOA), as well as with recent Co-Evolutionary approaches. SRS's were able to demonstrate quick adaptive responses, while outperforming the results obtained by the other approaches. Additionally, some successful behaviors were found. One of the most interesting illustrate that the present SRS collective swarm of bio-inspired ant-like agents is able to track about 65% of moving peaks traveling up to ten times faster than the velocity of a single individual composing that precise swarm tracking system.

Keywords

Cite

@article{arxiv.cs/0512002,
  title  = {On Self-Regulated Swarms, Societal Memory, Speed and Dynamics},
  author = {Vitorino Ramos and Carlos Fernandes and Agostinho C. Rosa},
  journal= {arXiv preprint arXiv:cs/0512002},
  year   = {2007}
}

Comments

11 pages, 8 figures, http://alfa.ist.utl.pt/~cvrm/staff/vramos/refs_2005.html, KEYWORDS: Dynamic Optimization, Dynamic Optimal Control problems, Swarm Intelligence, Self-Organization, Societal Implicit Memory. Submitted to ALIFE-X, Int. Conf. on the Simulation and Synthesis of Living Systems, Bloomington, Indiana, USA, June 3-7, 2006

R2 v1 2026-07-22T12:24:40.411Z