Static Performance of Wireless Localization Algorithm Exploiting Self-Organizing Maps
スポンサーリンク
概要
- 論文の詳細を見る
In wireless communications, determining the physical location of nodes (localization) is very important for many network services and protocols. This paper evaluates the static performance of wireless localization algorithm exploiting Self-Organizing Maps (SOM) to deal with this issue. Our proposed algorithm utilizes only connectivity information and information from some heard anchors in the network to determine the location of nodes. By introducing an efficient two-hop utilization scheme and the multi-hop anchor update, the algorithm has maximized the correlation between neighboring nodes and the global topology in distributed implementation of SOM. From our intensive simulations on various static network deployment scenarios, the results show that the proposed scheme achieves very good localization accuracy. It also reduces the SOM learning steps to around 15 to 30 steps to overcome the huge computational problem of the classical SOM.
- 2010-08-01
著者
-
Tinh Pham
Graduate School Of Sci. And Engineering Ritsumeikan Univ.
-
Tinh Pham
Graduate School Of Science And Engineering Ritsumeikan University
-
KAWAI Makoto
Graduate School of Science and Engineering, Ritsumeikan University
-
Kawai Makoto
Graduate School Of Science And Engineering Ritsumeikan University
関連論文
- Static Performance of Wireless Localization Algorithm Exploiting Self-Organizing Maps
- Static Performance of Wireless Localization Algorithm Exploiting Self-Organizing Maps
- B-5-119 Effects of User Mobility on Handoff Performance in Mobile Broadband Networks
- B-5-105 Spreading Sequences for Minimized PAPR in Multicarrier DS-CDMA System Using Both Time-Domain and Frequency-Domain Spreading
- B-21-29 Effectiveness of Enhanced Physical Carrier Sensing in Wireless Ad Hoc Networks
- B-21-11 Distributed ad-hoc Localization based on Self-Organizing Maps with the impact of obstacles
- B-18-40 Experimental Evaluation of DV-HOP Localization Algorithm