Low-Power Indoor Positioning Algorithm Based on iBeacon Network
Author(s) -
Xiaona Zhang,
Shufang Zhang,
Shuaiheng Huai
Publication year - 2021
Publication title -
complexity
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.447
H-Index - 61
eISSN - 1099-0526
pISSN - 1076-2787
DOI - 10.1155/2021/8475339
Subject(s) - computer science , indoor positioning system , debugging , positioning system , real time computing , embedded system , hybrid positioning system , software , algorithm , operating system , geometry , point (geometry) , mathematics , accelerometer
In this article, we use a low-power iBeacon network to conduct an in-depth analysis and research on the principle of indoor positioning and adopt an efficient and fast positioning algorithm. Secondly, based on the obtained analysis, an iBeacon-based indoor positioning system is proposed to analyze how to use iBeacon for accurate positioning and whether it can effectively compensate for the current mainstream positioning system.We analyze the requirements of the iBeacon-based indoor positioning system and propose the design of this positioning system. We analyze the platform and environment for software development, design the general framework of the positioning system, and analyze the logical structure of the whole system, the structure of data flow, and the communication protocols between each module of the positioning system. 'en, we analyze the functions of the server module and the client module of the system, implement the functions of eachmodule separately, and debug the functions of each module separately after each module is implemented. 'e feasibility of the algorithm and the performance improvement are confirmed by the experimental data. Our results show that the communication distance is improved by approximately 20.25% and the accuracy is improved by 5.62% compared to other existing results.
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