TLFW: A Three-Layer Framework in Wireless Rechargeable Sensor Network with a Mobile Base Station

Author:

Wang Anwen1ORCID,Meng Xianjia1ORCID,Wang Lvju1,Ji Xiang1,Chen Hao2,Liu Baoying1,Chen Feng1,Du Yajuan3,Yin Guangcheng4

Affiliation:

1. School of Information Science and Technology, Northwest University, Xi’an, China

2. China University of Labor Relations, Beijing, China

3. Beijing Zunguan Technology Company (National Electronic Computer Quality Supervision and Inspection Center), China

4. Inspur Software Group Co., Ltd., China

Abstract

Wireless sensor networks as the base support for the Internet of things have been a large number of popularity and application. Such as intelligent agriculture, we have to use the sensor network to obtain the growing environment data of crops and others. However, the difficulty of power supply of wireless nodes has seriously hindered the application and development of Internet of things. In order to solve this problem, people use low-power sleep scheduling and other energy-saving methods on the nodes. Although these methods can prolong the working time of nodes, they will eventually become invalid because of the exhaustion of energy. The use of solar energy, wind energy, and wireless signals in the environment to obtain energy is another way to solve the energy problem of nodes. However, these methods are affected by weather, environment, and other factors, and they are unstable. Thus, the discontinuity work of the node is caused. In recent years, the development of wireless power transfer (WPT) has brought another solution to this problem. In this paper, a three-layer framework is proposed for mobile station data collection in rechargeable wireless sensor networks to keep the node running forever, named TLFW which includes the sensor layer, cluster head layer, and mobile station layer. And the framework can minimize the total energy consumption of the system. The simulation results show that the scheme can reduce the energy consumption of the entire system, compared with a Mobile Station in a Rechargeable Sensor Network (MSiRSN).

Funder

Science Foundation of Northwest University

Publisher

Hindawi Limited

Subject

Electrical and Electronic Engineering,Computer Networks and Communications,Information Systems

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