Secure and Smartphone-Assisted Reprogramming for Wireless Sensor Networks Based on Visible Light Communication

During the period of over-the-air reprogramming, sensor nodes are easy to eavesdrop and even controlled by unauthorized person. That reminds us that security is key issue for over-the-air reprogramming. Most of previous studies discussed this problem from the aspect of data encryption, but give litt...

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Main Authors: Jiefan Qiu, Chenglin Li, YueRan Li
Format: Article
Language:English
Published: Hindawi-Wiley 2019-01-01
Series:Wireless Communications and Mobile Computing
Online Access:http://dx.doi.org/10.1155/2019/3430165
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spelling doaj-ff7860479ea54d5fb303e070becbb4a32020-11-25T00:48:16ZengHindawi-WileyWireless Communications and Mobile Computing1530-86691530-86772019-01-01201910.1155/2019/34301653430165Secure and Smartphone-Assisted Reprogramming for Wireless Sensor Networks Based on Visible Light CommunicationJiefan Qiu0Chenglin Li1YueRan Li2Zhejiang University of Technology, College of Computer Science, Hangzhou, ChinaZhejiang University of Technology, College of Computer Science, Hangzhou, ChinaNational Intellectual Property Administration, Jiangsu Center, ChinaDuring the period of over-the-air reprogramming, sensor nodes are easy to eavesdrop and even controlled by unauthorized person. That reminds us that security is key issue for over-the-air reprogramming. Most of previous studies discussed this problem from the aspect of data encryption, but give little consideration to the physical level. In this paper, we attempt to improve the security of reprogramming by changing the physical-level communication mode. We apply unidirectional Visible Light Communication (VLC) to the over-the-air reprogramming and use Commercial Off-The-Shelf device such as smartphone and sensor node to improve applicability. However, the unstable light source and low-cost light sensor make the procedure of reprogramming difficult. For this end, we put forward a novel reprogramming approach named ReVLC, which is twofold: firstly, we design a code block mechanism based on function similarity to reduce transmitting code. Secondly, we use compressing representation to optimize the Dual Header-Pulse Interval Modulation (DH-PIM) to save transmission time. The experiment results illustrate the effectiveness of ReVLC at the cost of extra 49.1% energy overhead compared with a traditional reprogramming approach.http://dx.doi.org/10.1155/2019/3430165
collection DOAJ
language English
format Article
sources DOAJ
author Jiefan Qiu
Chenglin Li
YueRan Li
spellingShingle Jiefan Qiu
Chenglin Li
YueRan Li
Secure and Smartphone-Assisted Reprogramming for Wireless Sensor Networks Based on Visible Light Communication
Wireless Communications and Mobile Computing
author_facet Jiefan Qiu
Chenglin Li
YueRan Li
author_sort Jiefan Qiu
title Secure and Smartphone-Assisted Reprogramming for Wireless Sensor Networks Based on Visible Light Communication
title_short Secure and Smartphone-Assisted Reprogramming for Wireless Sensor Networks Based on Visible Light Communication
title_full Secure and Smartphone-Assisted Reprogramming for Wireless Sensor Networks Based on Visible Light Communication
title_fullStr Secure and Smartphone-Assisted Reprogramming for Wireless Sensor Networks Based on Visible Light Communication
title_full_unstemmed Secure and Smartphone-Assisted Reprogramming for Wireless Sensor Networks Based on Visible Light Communication
title_sort secure and smartphone-assisted reprogramming for wireless sensor networks based on visible light communication
publisher Hindawi-Wiley
series Wireless Communications and Mobile Computing
issn 1530-8669
1530-8677
publishDate 2019-01-01
description During the period of over-the-air reprogramming, sensor nodes are easy to eavesdrop and even controlled by unauthorized person. That reminds us that security is key issue for over-the-air reprogramming. Most of previous studies discussed this problem from the aspect of data encryption, but give little consideration to the physical level. In this paper, we attempt to improve the security of reprogramming by changing the physical-level communication mode. We apply unidirectional Visible Light Communication (VLC) to the over-the-air reprogramming and use Commercial Off-The-Shelf device such as smartphone and sensor node to improve applicability. However, the unstable light source and low-cost light sensor make the procedure of reprogramming difficult. For this end, we put forward a novel reprogramming approach named ReVLC, which is twofold: firstly, we design a code block mechanism based on function similarity to reduce transmitting code. Secondly, we use compressing representation to optimize the Dual Header-Pulse Interval Modulation (DH-PIM) to save transmission time. The experiment results illustrate the effectiveness of ReVLC at the cost of extra 49.1% energy overhead compared with a traditional reprogramming approach.
url http://dx.doi.org/10.1155/2019/3430165
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