Mobility-Assisted Relocation for Self-Deployment in Wireless Sensor Networks(Network)
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概要
- 論文の詳細を見る
Sensor network deployment is very challenging due to the hostile and unpredictable nature of environments. The field coverage of wireless sensor networks (WSNs) can be enhanced and consequently network lifetime can be prolonged by optimizing the sensor deployment with a finite number of mobile sensors. In this paper, we introduce a comprehensive taxonomy for WSN self-deployment in which three sensor relocation algorithms are proposed to match the mobility degree of sensor nodes, particle swarm optimization based algorithm (PSOA), relay shift based algorithm (RSBA) and energy efficient fuzzy optimization algorithm (EFOA). PSOA regards the sensors in the network as a swarm, and reorganizes the sensors by the particle swarm optimization (PSO) algorithm, in the full sensor mobility case. RSBA and EFOA assume relatively limited sensor mobility, i.e., the movement distance is bounded by a threshold, to further reduce energy consumption. In the zero mobility case, static topology control or scheduling schemes can be used such as optimal cluster formation. Simulation results show that our approaches greatly improve the network coverage as well as energy efficiency compared with related works.
- 社団法人電子情報通信学会の論文
- 2007-08-01
著者
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Cho Jinsung
Department Of Computer Engineering Kyung Hee University
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Lee Sungyoung
Department Of Computer Engineering Kyung Hee University
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WU Xiaoling
Department of Computer Engineering, Kyung Hee University
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Wu Xiaoling
Department Of Computer Engineering Kyung Hee University
関連論文
- A Generic Localized Broadcast Framework in Mobile Ad Hoc Ubiquitous Sensor Networks(Ubiquitous Sensor Networks)
- An Integrated Sleep-Scheduling and Routing Algorithm in Ubiquitous Sensor Networks Based on AHP(Ubiquitous Sensor Networks)
- Mobility-Assisted Relocation for Self-Deployment in Wireless Sensor Networks(Network)
- Hop-Based Energy Aware Routing Algorithm for Wireless Sensor Networks
- Multi-Floor Semantically Meaningful Localization Using IEEE 802.11 Network Beacons