Round-priority-based anti-collision tag identification method in a mobile radio-frequency identification system

In the mobile radio-frequency identification system, the accuracy and rapidity of tag recognition are undergoing great challenges. In this article, we proposed a novel tag anti-collision identification method based on tags’ priority called RPA in the mobile radio-frequency identification system. The...

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Bibliographic Details
Main Authors: Liqian Zhang, Xueliang Fu, Honghui Li
Format: Article
Language:English
Published: Hindawi - SAGE Publishing 2019-05-01
Series:International Journal of Distributed Sensor Networks
Online Access:https://doi.org/10.1177/1550147719846046
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author Liqian Zhang
Xueliang Fu
Honghui Li
author_facet Liqian Zhang
Xueliang Fu
Honghui Li
author_sort Liqian Zhang
collection DOAJ
description In the mobile radio-frequency identification system, the accuracy and rapidity of tag recognition are undergoing great challenges. In this article, we proposed a novel tag anti-collision identification method based on tags’ priority called RPA in the mobile radio-frequency identification system. The algorithm sets the priority of recognition according to the sequence of tag entering the recognition area. The reader does not recognize the tags with low priority until the ones with high priority have been identified totally. The experimental results show that when the tags’ moving speed is lower than 4 m/s, the system can identify the total tags without loss, and the efficiency and identification speed can reach 73.7% and 762 tags per unit, respectively.
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spelling doaj.art-73487c8ce28e42ca99af1b07e5494dea2023-09-03T10:06:46ZengHindawi - SAGE PublishingInternational Journal of Distributed Sensor Networks1550-14772019-05-011510.1177/1550147719846046Round-priority-based anti-collision tag identification method in a mobile radio-frequency identification systemLiqian ZhangXueliang FuHonghui LiIn the mobile radio-frequency identification system, the accuracy and rapidity of tag recognition are undergoing great challenges. In this article, we proposed a novel tag anti-collision identification method based on tags’ priority called RPA in the mobile radio-frequency identification system. The algorithm sets the priority of recognition according to the sequence of tag entering the recognition area. The reader does not recognize the tags with low priority until the ones with high priority have been identified totally. The experimental results show that when the tags’ moving speed is lower than 4 m/s, the system can identify the total tags without loss, and the efficiency and identification speed can reach 73.7% and 762 tags per unit, respectively.https://doi.org/10.1177/1550147719846046
spellingShingle Liqian Zhang
Xueliang Fu
Honghui Li
Round-priority-based anti-collision tag identification method in a mobile radio-frequency identification system
International Journal of Distributed Sensor Networks
title Round-priority-based anti-collision tag identification method in a mobile radio-frequency identification system
title_full Round-priority-based anti-collision tag identification method in a mobile radio-frequency identification system
title_fullStr Round-priority-based anti-collision tag identification method in a mobile radio-frequency identification system
title_full_unstemmed Round-priority-based anti-collision tag identification method in a mobile radio-frequency identification system
title_short Round-priority-based anti-collision tag identification method in a mobile radio-frequency identification system
title_sort round priority based anti collision tag identification method in a mobile radio frequency identification system
url https://doi.org/10.1177/1550147719846046
work_keys_str_mv AT liqianzhang roundprioritybasedanticollisiontagidentificationmethodinamobileradiofrequencyidentificationsystem
AT xueliangfu roundprioritybasedanticollisiontagidentificationmethodinamobileradiofrequencyidentificationsystem
AT honghuili roundprioritybasedanticollisiontagidentificationmethodinamobileradiofrequencyidentificationsystem