Title
Improved poly-clonal artificial immune network for multi-robot dynamic path planning
Abstract
The most challenge of dynamic path planning lies in that the high unpredictability of environmental information. With the strong space search ability and learning ability, artificial immune network (AIN) has been used for path planning. Polyclonal artificial immune network (PCAIN) solves the problems of immature convergence and local minima with the increasing diversity of antibodies. In this paper, we propose improved polyclonal artificial immune network (IPCAIN) for multi-robot path planning with moving obstacles and moving goals in unknown environment. The antibody concentration is computed with taking other robots and moving obstacles into account. Moreover, memory units are used for preserving antibodies in the specific situations. The memory ability increases the initial concentration of specific antibodies, thus, reduces the response time for dynamic path planning. Extensive simulation experiments validate the proposed method can search the optimal path for multiple robots in dynamic unknown environment.
Year
DOI
Venue
2013
10.1109/ICInfA.2013.6720283
Information and Automation
Keywords
Field
DocType
multirobot dynamic path planning,immature convergence,poly-clonal,learning (artificial intelligence),dynamic unknown environment,memory units,environmental information,mobile robots,multi-robot systems,ipcain,search problems,artificial immune network,response time reduction,convergence,antibodies diversity,memory ability,improved polyclonal artificial immune network,learning ability,moving obstacle,antibody concentration,artificial immune systems,space search ability,dynamic path planning,collision avoidance,multirobot,learning artificial intelligence
Motion planning,Convergence (routing),Artificial immune system,Immune network,Computer science,Response time,Maxima and minima,Artificial intelligence,Robot,Mobile robot
Conference
Volume
Issue
ISSN
null
null
null
Citations 
PageRank 
References 
1
0.35
8
Authors
4
Name
Order
Citations
PageRank
Li-xia Deng162.66
Xin Ma28917.25
Jason Gu342174.77
Yibin Li422659.56