Title :
An approach to design a robust software architecture and an intelligent model for multi-agent systems
Author :
Norouzi, Amir ; Acosta, Carlos Antonio
Author_Institution :
Sch. of Electr. & Electron. Eng., Singapore Polytech., Singapore, Singapore
Abstract :
A successful multi-agent system requires the intelligent agents to perform within a dynamically complex environment where proper and quick response in a cooperative manner is a primary key to successfully complete a task. This paper proposes a non-deterministic decision making method using electric fields and high-level decision making. Different layers are designed, defined, and implemented for the software architecture with focus on system adaptability, sustainability, and optimization. Consequently, a software architecture is proposed in this paper to complement the AI algorithms. The proposed architecture aims to provide a well-structured and managed system for control, behavior, and decision making of multi-agent systems. The proposed decision making approach in this paper is based on layered artificial intelligence implemented using vector-based fuzzy electric fields and a decision tree. Furthermore, an approach to model the world which, in this paper, is called Agent Relative Polar Localization is introduced. This world model is based on fuzzy measurements and polar coordinates. In order to optimize the overall performance of the system learning methods have been introduced to the system. The proposed system in this paper has been implemented on soccer robots to evaluate the performance of the system. The results show that the proposed system implemented on the soccer robots is reliable and robust.
Keywords :
control engineering computing; decision making; decision trees; fuzzy set theory; learning (artificial intelligence); mobile robots; multi-robot systems; software architecture; sport; AI algorithms; agent relative polar localization; decision tree; fuzzy measurements; high-level decision making; intelligent agents; intelligent model; layered artificial intelligence; multiagent systems; nondeterministic decision making method; polar coordinates; robust software architecture design; soccer robots; system learning methods; vector-based fuzzy electric fields; Computer architecture; Decision making; Hardware; Logic gates; Mathematical model; Software; Vectors;
Conference_Titel :
AI & Robotics and 5th RoboCup Iran Open International Symposium (RIOS), 2013 3rd Joint Conference of
Conference_Location :
Tehran
DOI :
10.1109/RIOS.2013.6595315