Title :
Particle swarm optimization based topology control mechanism for holonomic unmanned vehicles operating in three-dimensional space
Author :
Zou, Jianmin ; Gundry, Stephen ; Kusyk, Janusz ; Sahin, Cem Safak ; Uyar, M. Ümit
Author_Institution :
Dept. of Electr. Eng., City Coll. of New York, New York, NY, USA
Abstract :
Wireless sensor networks (WSNs) are increasingly being used to acquire information in harsh and inaccessible environments including underwater and aerial theatres. Self-deployment of autonomous mobile assets in three-dimensional (3D) environments is a critical task to efficiently create WSNs. In this paper, we present a topology control mechanism called 3D-PSO, based on particle swarm optimization algorithm (PSO) running in holonomic unmanned vehicles (HUVs) operating in 3D space. Each HUV is able to adjust its speed and movement direction to achieve better fitness location using our 3D-PSO. We demonstrate that 3D-PSO uses limited information collected from each HUVs local neighbors to make movement decisions over an unknown 3D space to obtain a uniform spatial distribution while maintaining network connectivity. Simulation experiments demonstrate that parameters such as the number of iterations used in our 3D-PSO, and acceleration coefficients influence the efficiency of 3D-PSO.
Keywords :
autonomous aerial vehicles; autonomous underwater vehicles; mobile robots; motion control; particle swarm optimisation; path planning; wireless sensor networks; 3D space; 3D-PSO; HUV; WSN; aerial theatres; autonomous mobile assets; holonomic unmanned aerial vehicles; holonomic unmanned underwater vehicles; holonomic unmanned vehicles; movement direction adjustment; network connectivity; particle swarm optimization based topology control mechanism; speed direction adjustment; underwater theatres; uniform spatial distribution; wireless sensor networks; Aerospace electronics; Mobile communication; Mobile robots; Network topology; Particle swarm optimization; Topology; Wireless sensor networks; HUV; Holonomic unmanned vehicles; MANET; Particle Swarm Optimization; cognitive networks; spatial node distribution; three-dimensional topology control;
Conference_Titel :
Sarnoff Symposium (SARNOFF), 2012 35th IEEE
Conference_Location :
Newark, NJ
Print_ISBN :
978-1-4673-1465-7
DOI :
10.1109/SARNOF.2012.6222723