A Greedy Scanning Data Collection Strategy for Large-Scale Wireless Sensor Networks with a Mobile Sink
Mobile sink is widely used for data collection in wireless sensor networks. It can avoid ‘hot spot’ problems but energy consumption caused by multihop transmission is still inefficient in real-time application scenarios. In this paper, a greedy scanning data collection strategy (GSDCS) is proposed,...
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doaj-ab44d1b1988a4d7881e6b246f14ee7692020-11-24T23:21:43ZengMDPI AGSensors1424-82202016-09-01169143210.3390/s16091432s16091432A Greedy Scanning Data Collection Strategy for Large-Scale Wireless Sensor Networks with a Mobile SinkChuan Zhu0Sai Zhang1Guangjie Han2Jinfang Jiang3Joel J. P. C. Rodrigues4Department of Information and Communication Systems, Hohai University, Changzhou 213000, ChinaDepartment of Information and Communication Systems, Hohai University, Changzhou 213000, ChinaDepartment of Information and Communication Systems, Hohai University, Changzhou 213000, ChinaDepartment of Information and Communication Systems, Hohai University, Changzhou 213000, ChinaNational Institute of Telecommunications (Inatel), Minas Gerais 30000-000, BrazilMobile sink is widely used for data collection in wireless sensor networks. It can avoid ‘hot spot’ problems but energy consumption caused by multihop transmission is still inefficient in real-time application scenarios. In this paper, a greedy scanning data collection strategy (GSDCS) is proposed, and we focus on how to reduce routing energy consumption by shortening total length of routing paths. We propose that the mobile sink adjusts its trajectory dynamically according to the changes of network, instead of predetermined trajectory or random walk. Next, the mobile sink determines which area has more source nodes, then it moves toward this area. The benefit of GSDCS is that most source nodes are no longer needed to upload sensory data for long distances. Especially in event-driven application scenarios, when event area changes, the mobile sink could arrive at the new event area where most source nodes are located currently. Hence energy can be saved. Analytical and simulation results show that compared with existing work, our GSDCS has a better performance in specific application scenarios.http://www.mdpi.com/1424-8220/16/9/1432wireless sensor networksdata collectionmobile sinkgreedy scanning |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Chuan Zhu Sai Zhang Guangjie Han Jinfang Jiang Joel J. P. C. Rodrigues |
spellingShingle |
Chuan Zhu Sai Zhang Guangjie Han Jinfang Jiang Joel J. P. C. Rodrigues A Greedy Scanning Data Collection Strategy for Large-Scale Wireless Sensor Networks with a Mobile Sink Sensors wireless sensor networks data collection mobile sink greedy scanning |
author_facet |
Chuan Zhu Sai Zhang Guangjie Han Jinfang Jiang Joel J. P. C. Rodrigues |
author_sort |
Chuan Zhu |
title |
A Greedy Scanning Data Collection Strategy for Large-Scale Wireless Sensor Networks with a Mobile Sink |
title_short |
A Greedy Scanning Data Collection Strategy for Large-Scale Wireless Sensor Networks with a Mobile Sink |
title_full |
A Greedy Scanning Data Collection Strategy for Large-Scale Wireless Sensor Networks with a Mobile Sink |
title_fullStr |
A Greedy Scanning Data Collection Strategy for Large-Scale Wireless Sensor Networks with a Mobile Sink |
title_full_unstemmed |
A Greedy Scanning Data Collection Strategy for Large-Scale Wireless Sensor Networks with a Mobile Sink |
title_sort |
greedy scanning data collection strategy for large-scale wireless sensor networks with a mobile sink |
publisher |
MDPI AG |
series |
Sensors |
issn |
1424-8220 |
publishDate |
2016-09-01 |
description |
Mobile sink is widely used for data collection in wireless sensor networks. It can avoid ‘hot spot’ problems but energy consumption caused by multihop transmission is still inefficient in real-time application scenarios. In this paper, a greedy scanning data collection strategy (GSDCS) is proposed, and we focus on how to reduce routing energy consumption by shortening total length of routing paths. We propose that the mobile sink adjusts its trajectory dynamically according to the changes of network, instead of predetermined trajectory or random walk. Next, the mobile sink determines which area has more source nodes, then it moves toward this area. The benefit of GSDCS is that most source nodes are no longer needed to upload sensory data for long distances. Especially in event-driven application scenarios, when event area changes, the mobile sink could arrive at the new event area where most source nodes are located currently. Hence energy can be saved. Analytical and simulation results show that compared with existing work, our GSDCS has a better performance in specific application scenarios. |
topic |
wireless sensor networks data collection mobile sink greedy scanning |
url |
http://www.mdpi.com/1424-8220/16/9/1432 |
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