Task-oriented Energy Scheduling in Wireless Rechargeable Sensor Networks

Author:

Zhang Jin1ORCID,Gao Hong2ORCID,Chen Quan3ORCID,Li Jianzhong4ORCID

Affiliation:

1. Harbin Institute of Technology

2. Harbin Institute of Technology and Zhejiang Normal University

3. Guangdong University of Technology

4. Institute of Advanced Technology, Chinese Academy of Science

Abstract

In recent years, the flourishing of Wireless Power Transfer (WPT) technology brings Wireless Sensor Networks (WSNs) a renewable, reliable, and controllable energy source. To achieve high efficiency, WPT and sensors both adopt directional antennas. Most previous works about directional charging optimize overall charging efficiency, but neglect energy scheduling on nodes for optimizing tasks. This disadvantage may cause a serious imbalance between the energy supply and task loads. This article takes both aspects into consideration. To achieve an overall performance improvement, we jointly schedule rotatable chargers and allocate tasks to nodes in a WSN powered by directional chargers. As far as we know, this is the first work to propose the Task-oriented Energy Scheduling (TOES) problem, i.e., given a set of rotatable directional chargers and some wireless rechargeable sensor nodes, scheduling chargers and nodes to maximize the total utility gained from a set of tasks. We prove the NP-Hardness of TOES. Then we design a 4-approximation algorithm for TOES by jointly solving two subproblems of the original one. We further extend this problem to the windowed task model and propose a \(\frac{4}{1-\gamma }\) approximation algorithm for it, where γ is the proportion of the rotating period. Finally, extensive simulation results show that our algorithms outperform baselines by at least 40.3%.

Funder

National Natural Science Foundation of China

Publisher

Association for Computing Machinery (ACM)

Subject

Computer Networks and Communications

Reference34 articles.

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4. Yanli Cai, Wei Lou, Minglu Li, and X-Y Li. 2007. Target-oriented scheduling in directional sensor networks. In Proceedings of the 26th IEEE International Conference on Computer Communications. IEEE, 1550–1558.

5. Kunyi Chen, Hong Gao, Zhipeng Cai, Quan Chen, and Jianzhong Li. 2019. Distributed energy-adaptive aggregation scheduling with coverage guarantee for battery-free wireless sensor networks. In Proceedings of the IEEE Conference on Computer Communications. IEEE, 1018–1026.

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