Title :
Scalable distributed data fusion
Author :
Nicholson, D. ; Lloyd, C.M. ; Julier, S.J. ; Uhlmann, J.K.
Author_Institution :
Adv. Technolgy Centre, BAE Syst., Bristol, UK
Abstract :
Measurement and track fusion in decentralised sensor network architectures is investigated. The investigation employs FLAMES/sup TM/, an advanced military scenario generator. This was specifically customised for distributed data fusion experiments and involves a model of the delays in a realistic communication system. Here the delays were used to modify communication bandwidth and evaluate how this affected the performance of the fusion architectures/algorithms. Under certain scenario conditions, it was found that the decentralised measurement fusion system was severely affected by reduced bandwidth. This is because it does not scale: each node loads its communication buffer with every measurement and consequently some measurements are never transmitted. The decentralised track fusion system is a better performer because it does scale: measurements are fused into tracks prior to transmission and thereby more effective use of bandwidth is made. Moreover, it was found that a partially connected decentralised track fusion system achieved almost optimal fused track performance.
Keywords :
computer networks; distributed processing; military computing; sensor fusion; FLAMES/sup TM/; communication bandwidth; decentralised sensor network architectures; distributed data fusion; military scenario generator; network architectures; realistic communication; track fusion; tracking; Bandwidth; Computer architecture; Computer networks; Data processing; Delay systems; Fusion power generation; Laboratories; Military computing; Sensor fusion; Sensor systems;
Conference_Titel :
Information Fusion, 2002. Proceedings of the Fifth International Conference on
Conference_Location :
Annapolis, MD, USA
Print_ISBN :
0-9721844-1-4
DOI :
10.1109/ICIF.2002.1021213