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Maximum Data Collection Rate in Rechargeable Wireless Sensor Networks with Multiple Sinks 被引量:2

Maximum Data Collection Rate in Rechargeable Wireless Sensor Networks with Multiple Sinks
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摘要 In rechargeable wireless sensor networks, a sensor cannot be always benefi cial to conserve energy when a network can harvest excessive energy from the environment due to its energy replenished continually and limited energy storage capacity. Therefore, surplus energy of a node can be utilized for strengthening packet delivery efficiency and improving data collection rate. In this work, we propose an algorithm to compute an upper data generation rate that maximizes it as an optimization problem for a network with multiple sinks, which is formulated as a linear programming problem. Subsequently, a dual problem by introducing Lagrange multipliers is constructed, and subgradient algorithms are used to solve it in a distributed manner. The resulting algorithms are guaranteed to converge to an optimal data generation rate, which are illustrated by an example in which an optimum data generation rate is computed for a network of randomly distributed nodes. Through extensive simulation and experiments, we demonstrate our algorithm is efficient to maximize data collection rate in rechargeable wireless sensor networks. In rechargeable wireless sensor networks, a sensor cannot be always beneficial to conserve energy when a network can harvest excessive energy from the environment due to its energy replenished continually and limited energy storage capacity. Therefore, surplus energy of a node can be utilized for strengthening packet delivery efficiency and improving data collection rate. In this work, we propose an algorithm to compute an upper data generation rate that maximizes it as an optimization problem for a network with multiple sinks, which is formulated as a linear programming problem. Subsequently, a dual problem by introducing Lagrange multipliers is constructed, and subgradient algorithms are used to solve it in a distributed manner. The resulting algorithms are guaranteed to converge to an optimal data generation rate, which are illustrated by an example in which an optimum data generation rate is computed for a network of randomly distributed nodes. Through extensive simulation and experiments, we demonstrate our algorithm is efficient to maximize data collection rate in rechargeable wireless sensor networks.
出处 《China Communications》 SCIE CSCD 2016年第2期95-108,共14页 中国通信(英文版)
基金 supported by The Natural Science Foundation of Jiangsu Province of China(Grant No.BK20141474) funded by China Postdoctoral Science Foundation(Grant No.2015M571639) three Projects Funded by The Jiangsu Planned Projects for Postdoctoral Research Funds(Grant No.1402018C) The Key Laboratory of Computer Network and Information Integration(Southeast University) Ministry of Education(Grant No.K93-9-2015-09C) The Priority Academic Program Development(PAPD)of Jiangsu Higher Education Institutions
关键词 wireless sensor networks maximumdata collection rate linear programming rechargeable-WSNs 无线传感器网络 采集速率 接收器 梯度算法 能量补充 生成速率 线性规划问题 拉格朗日乘子
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  • 1Christin D, Reinhardt A, Mogre P S, et al. Wireless sensor networks and the internet of things: selected challenges [J]. Proceedings of the 8th GI/ ITG KuVS Fachgesprach Drahtlose Sensornetze, 2009: 31-34. 被引量:1
  • 2S, Cai Z. Distributed data collection in large- scale asynchronous wireless sensor networks under the generalized physical interference model [J]. IEEE/ACM Transactions on Networking (TON), 2013, 21(4): 1270-1283. 被引量:1
  • 3Rahat A A A M, Everson R M, Fieldsend J E. Multi- objective routing optimisation for battery- powered wireless sensor mesh networks[C]/'/ Proceedings of the 2014 conference on Genetic and evolutionary computation. ACM, 2014: 1175- 1182. 被引量:1
  • 4Aziz A A, Sekercioglu Y A, Fitzpatrick P, et al. A survey on distributed topology control techniques for extending the lifetime of battery powered wireless sensor networks [J]. Communications Surveys & Tutorials, IEEE, 2013, 15(1): 121-144. 被引量:1
  • 5Pantazis N A, Nikolidakis S A, Vergados D D. Energy-efficient routing protocols in wireless sensor networks: A survey [J]. Communications Surveys & Tutorials, IEEE, 2013, 15(2): 551-591. 被引量:1
  • 6Wang C F, Shih J D, Pan B H, et al. A Network Lifetime Enhancement Method for Sink Relocation and Its Analysis in Wireless Sensor Networks [J]. IEEE SENSORS JOURNAL, 2014, 14(6): 1932-1943. 被引量:1
  • 7Murthy S G, Souza R J D, Varaprasad G. Network lifetime analytical model for node-disjoint multipath routing in wireless sensor networks [J]. International Journal of Communication Networks and Distributed Systems, 2013, 10(2): 163-175. 被引量:1
  • 8Gao D, Wu G, Liu Y, et al. Bounded end- to-end delay with Transmission Power Control techniques for rechargeable wireless sensor networks [J]. AEU-international Journal of Electronics and Communications, 2014, 68(5): 395-405. 被引量:1
  • 9Sudevalayam S, Kulkarni P. Energy harvesting sensor nodes: Survey and implications [J]. Communications Surveys & Tutorials, iEEE, 2011, 13(3): 443-461. 被引量:1
  • 10T. Starner, Human-powered Wearable Computing, IBM Systems Journal, vol. 35, no. 3-4, pp. 618-629, 1996. 被引量:1

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