A High-Efficiency Data Collection Method Based on Maximum Recharging Benefit in Sensor Networks

To reduce time delays during data collection and prolong the network lifetime in Wireless Rechargeable Sensor Networks (WRSNs), a type of high-efficiency data collection method based on Maximum Recharging Benefit (DCMRB) is proposed in this paper. According to the minimum number of the Mobile Data C...

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Main Authors: Chao Sha, Qi-Wei Wang, Lu Zhang, Ru-Chuan Wang
Format: Article
Language:English
Published: MDPI AG 2018-08-01
Series:Sensors
Subjects:
Online Access:http://www.mdpi.com/1424-8220/18/9/2887
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spelling doaj-49d9854a19174085bcd122db6ba58c2f2020-11-24T21:23:20ZengMDPI AGSensors1424-82202018-08-01189288710.3390/s18092887s18092887A High-Efficiency Data Collection Method Based on Maximum Recharging Benefit in Sensor NetworksChao Sha0Qi-Wei Wang1Lu Zhang2Ru-Chuan Wang3School of Computer Science, Software and Cyberspace Security, Nanjing University of Posts and Telecommunications, Nanjing 210003, ChinaSchool of Computer Science, Software and Cyberspace Security, Nanjing University of Posts and Telecommunications, Nanjing 210003, ChinaSchool of Computer Science, Software and Cyberspace Security, Nanjing University of Posts and Telecommunications, Nanjing 210003, ChinaSchool of Computer Science, Software and Cyberspace Security, Nanjing University of Posts and Telecommunications, Nanjing 210003, ChinaTo reduce time delays during data collection and prolong the network lifetime in Wireless Rechargeable Sensor Networks (WRSNs), a type of high-efficiency data collection method based on Maximum Recharging Benefit (DCMRB) is proposed in this paper. According to the minimum number of the Mobile Data Collectors (MDCs), the network is firstly divided into several regions with the help of the Virtual Scan Line (VSL). Then, the MDCs and the Wireless Charging Vehicles (WCVs) are employed in each region for high efficient data collection and energy replenishment. In order to ensure the integrity of data collection and reduce the rate of packet loss, a speed adjustment scheme for MDC is also proposed. In addition, by calculating the adaptive threshold of the recharging request, those nodes with different energy consumption rates are recharged in a timely way that avoids their premature death. Finally, the limited battery capacity of WCVs and their energy consumption while moving are also taken into account, and an adaptive recharging scheme based on maximum benefit is proposed. Experimental results show that the energy consumption is effectively balanced in DCMRB. Furthermore, this can not only enhance the efficiency of data collection, but also prolong the network lifetime compared with the Energy Starvation Avoidance Online Charging scheme (ESAOC), Greedy Mobile Scheme based on Maximum Recharging Benefit (GMS-MRB) and First-Come First-Served (FCFS) methods.http://www.mdpi.com/1424-8220/18/9/2887wireless sensor networksdata collectionbalance of energy consumptionwireless rechargingMaximum Recharging Benefit
collection DOAJ
language English
format Article
sources DOAJ
author Chao Sha
Qi-Wei Wang
Lu Zhang
Ru-Chuan Wang
spellingShingle Chao Sha
Qi-Wei Wang
Lu Zhang
Ru-Chuan Wang
A High-Efficiency Data Collection Method Based on Maximum Recharging Benefit in Sensor Networks
Sensors
wireless sensor networks
data collection
balance of energy consumption
wireless recharging
Maximum Recharging Benefit
author_facet Chao Sha
Qi-Wei Wang
Lu Zhang
Ru-Chuan Wang
author_sort Chao Sha
title A High-Efficiency Data Collection Method Based on Maximum Recharging Benefit in Sensor Networks
title_short A High-Efficiency Data Collection Method Based on Maximum Recharging Benefit in Sensor Networks
title_full A High-Efficiency Data Collection Method Based on Maximum Recharging Benefit in Sensor Networks
title_fullStr A High-Efficiency Data Collection Method Based on Maximum Recharging Benefit in Sensor Networks
title_full_unstemmed A High-Efficiency Data Collection Method Based on Maximum Recharging Benefit in Sensor Networks
title_sort high-efficiency data collection method based on maximum recharging benefit in sensor networks
publisher MDPI AG
series Sensors
issn 1424-8220
publishDate 2018-08-01
description To reduce time delays during data collection and prolong the network lifetime in Wireless Rechargeable Sensor Networks (WRSNs), a type of high-efficiency data collection method based on Maximum Recharging Benefit (DCMRB) is proposed in this paper. According to the minimum number of the Mobile Data Collectors (MDCs), the network is firstly divided into several regions with the help of the Virtual Scan Line (VSL). Then, the MDCs and the Wireless Charging Vehicles (WCVs) are employed in each region for high efficient data collection and energy replenishment. In order to ensure the integrity of data collection and reduce the rate of packet loss, a speed adjustment scheme for MDC is also proposed. In addition, by calculating the adaptive threshold of the recharging request, those nodes with different energy consumption rates are recharged in a timely way that avoids their premature death. Finally, the limited battery capacity of WCVs and their energy consumption while moving are also taken into account, and an adaptive recharging scheme based on maximum benefit is proposed. Experimental results show that the energy consumption is effectively balanced in DCMRB. Furthermore, this can not only enhance the efficiency of data collection, but also prolong the network lifetime compared with the Energy Starvation Avoidance Online Charging scheme (ESAOC), Greedy Mobile Scheme based on Maximum Recharging Benefit (GMS-MRB) and First-Come First-Served (FCFS) methods.
topic wireless sensor networks
data collection
balance of energy consumption
wireless recharging
Maximum Recharging Benefit
url http://www.mdpi.com/1424-8220/18/9/2887
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