A Research on the Indoor Rotating Arc Triangle Positioning Algorithm Based on RSSI

In recent years, the rapid development of mobile communication technology has led to the development of positioning services, and the demand for indoor positioning technology has been increasing strictly. In the Internet information era, location-based services (LBS) have been applied in various fie...

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Main Authors: Wei Wang, Zhu Qingshan, Li Maozhen, Wang Zhaoba, Xiaoqian Zhao, Yang Yanfang
Format: Article
Language:English
Published: IEEE 2020-01-01
Series:IEEE Access
Subjects:
Online Access:https://ieeexplore.ieee.org/document/9262945/
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author Wei Wang
Zhu Qingshan
Li Maozhen
Wang Zhaoba
Xiaoqian Zhao
Yang Yanfang
author_facet Wei Wang
Zhu Qingshan
Li Maozhen
Wang Zhaoba
Xiaoqian Zhao
Yang Yanfang
author_sort Wei Wang
collection DOAJ
description In recent years, the rapid development of mobile communication technology has led to the development of positioning services, and the demand for indoor positioning technology has been increasing strictly. In the Internet information era, location-based services (LBS) have been applied in various fields after the emergence of location-based information technology, which brings new experience and convenience to people. In order to improve the indoor positioning accuracy of wireless sensor networks, an indoor positioning algorithm with a rotating arc triangle layout is proposed. This layout uses a circular arc triangle to deploy the beacon nodes and changes the position of the beacon nodes by rotating. Compared with the square, triangle, and equi-arc triangle layout, the rotating arc triangle layout reduces beacon nodes and is easy to rotate, but the layout after rotation has not changed. Experiments show that the layout of the rotating arc triangle layout is simple. By rotating the beacon node, multiple positioning prediction positions are superposed, and the positioning accuracy is improved. The rotating arc triangle layout is better than the square, the traditional triangle, the improved triangle, and the equal arc triangle. The average positioning accuracy of the arc triangle has been increased by 69.9%, 51.8%, 16.6%, 35.6%, and 32.9% respectively, which has certain use value and popularization.
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spelling doaj.art-23aa8609e641427597d710c0cd95e6e62022-12-21T22:28:40ZengIEEEIEEE Access2169-35362020-01-01822306922307710.1109/ACCESS.2020.30389159262945A Research on the Indoor Rotating Arc Triangle Positioning Algorithm Based on RSSIWei Wang0https://orcid.org/0000-0001-9474-6214Zhu Qingshan1Li Maozhen2Wang Zhaoba3Xiaoqian Zhao4Yang Yanfang5School of Information and Communication Engineering, North University of China, Taiyuan, ChinaSchool of Information and Communication Engineering, North University of China, Taiyuan, ChinaSchool of Information and Communication Engineering, North University of China, Taiyuan, ChinaSchool of Information and Communication Engineering, North University of China, Taiyuan, ChinaSchool of Information and Communication Engineering, North University of China, Taiyuan, ChinaSchool of Information and Communication Engineering, North University of China, Taiyuan, ChinaIn recent years, the rapid development of mobile communication technology has led to the development of positioning services, and the demand for indoor positioning technology has been increasing strictly. In the Internet information era, location-based services (LBS) have been applied in various fields after the emergence of location-based information technology, which brings new experience and convenience to people. In order to improve the indoor positioning accuracy of wireless sensor networks, an indoor positioning algorithm with a rotating arc triangle layout is proposed. This layout uses a circular arc triangle to deploy the beacon nodes and changes the position of the beacon nodes by rotating. Compared with the square, triangle, and equi-arc triangle layout, the rotating arc triangle layout reduces beacon nodes and is easy to rotate, but the layout after rotation has not changed. Experiments show that the layout of the rotating arc triangle layout is simple. By rotating the beacon node, multiple positioning prediction positions are superposed, and the positioning accuracy is improved. The rotating arc triangle layout is better than the square, the traditional triangle, the improved triangle, and the equal arc triangle. The average positioning accuracy of the arc triangle has been increased by 69.9%, 51.8%, 16.6%, 35.6%, and 32.9% respectively, which has certain use value and popularization.https://ieeexplore.ieee.org/document/9262945/Wireless sensor networkindoor positioningRSSIbeacon nodepositioning layoutrotating arc triangle
spellingShingle Wei Wang
Zhu Qingshan
Li Maozhen
Wang Zhaoba
Xiaoqian Zhao
Yang Yanfang
A Research on the Indoor Rotating Arc Triangle Positioning Algorithm Based on RSSI
IEEE Access
Wireless sensor network
indoor positioning
RSSI
beacon node
positioning layout
rotating arc triangle
title A Research on the Indoor Rotating Arc Triangle Positioning Algorithm Based on RSSI
title_full A Research on the Indoor Rotating Arc Triangle Positioning Algorithm Based on RSSI
title_fullStr A Research on the Indoor Rotating Arc Triangle Positioning Algorithm Based on RSSI
title_full_unstemmed A Research on the Indoor Rotating Arc Triangle Positioning Algorithm Based on RSSI
title_short A Research on the Indoor Rotating Arc Triangle Positioning Algorithm Based on RSSI
title_sort research on the indoor rotating arc triangle positioning algorithm based on rssi
topic Wireless sensor network
indoor positioning
RSSI
beacon node
positioning layout
rotating arc triangle
url https://ieeexplore.ieee.org/document/9262945/
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