Design and Performance Evaluation of Large-Scale VLC-Based Indoor Positioning Systems Under Impact of Receiver Orientation

This paper proposes a complete design, including solutions for both physical (PHY) and link layer, and evaluates the performance of large-scale indoor positioning systems (IPSs) based on visible light communications (VLC). The triangulation method based on received signal strength (RSS) technique is...

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Main Authors: Duc H. Mai, Hoang D. Le, Thanh V. Pham, Anh T. Pham
Format: Article
Language:English
Published: IEEE 2020-01-01
Series:IEEE Access
Subjects:
Online Access:https://ieeexplore.ieee.org/document/9050487/
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spelling doaj-f27873c8e79d4776a710aad21c7891672021-03-30T01:34:40ZengIEEEIEEE Access2169-35362020-01-018618916190410.1109/ACCESS.2020.29840279050487Design and Performance Evaluation of Large-Scale VLC-Based Indoor Positioning Systems Under Impact of Receiver OrientationDuc H. Mai0Hoang D. Le1https://orcid.org/0000-0003-4565-8044Thanh V. Pham2https://orcid.org/0000-0002-7228-3172Anh T. Pham3https://orcid.org/0000-0002-5143-1498Computer Communications Laboratory, The University of Aizu, Aizuwakamatsu, JapanComputer Communications Laboratory, The University of Aizu, Aizuwakamatsu, JapanComputer Communications Laboratory, The University of Aizu, Aizuwakamatsu, JapanComputer Communications Laboratory, The University of Aizu, Aizuwakamatsu, JapanThis paper proposes a complete design, including solutions for both physical (PHY) and link layer, and evaluates the performance of large-scale indoor positioning systems (IPSs) based on visible light communications (VLC). The triangulation method based on received signal strength (RSS) technique is employed for user localization. For the sake of signal separation at the receiver, each LED's position is encoded with a unique location identification (ID) using optical orthogonal codes (OOCs). A code re-use strategy is proposed to efficiently utilize the code resource. A novel enhancement method is also proposed to improve the system performance in terms of localization accuracy taking into account the impact of receiver orientation. Simulation results show that the maximum location error increases twice under the impact of receiver orientation when the polar angle is equal to $\theta = \pi /6$ . The effectiveness of the proposed localization enhancement method in reducing the average location error is also numerically confirmed. For the link layer design, a frame design with a 12-bit ID encoded by the Golay code for error correction is proposed. A simple proof-of-concept is implemented and experiments are conducted to analyze the overall system performance in terms of operation range and ID detectability.https://ieeexplore.ieee.org/document/9050487/Indoor positioning system (IPS)visible light communications (VLC)receiver orientationoptical orthogonal codes (OOCs)received signal strength (RSS)triangulation method
collection DOAJ
language English
format Article
sources DOAJ
author Duc H. Mai
Hoang D. Le
Thanh V. Pham
Anh T. Pham
spellingShingle Duc H. Mai
Hoang D. Le
Thanh V. Pham
Anh T. Pham
Design and Performance Evaluation of Large-Scale VLC-Based Indoor Positioning Systems Under Impact of Receiver Orientation
IEEE Access
Indoor positioning system (IPS)
visible light communications (VLC)
receiver orientation
optical orthogonal codes (OOCs)
received signal strength (RSS)
triangulation method
author_facet Duc H. Mai
Hoang D. Le
Thanh V. Pham
Anh T. Pham
author_sort Duc H. Mai
title Design and Performance Evaluation of Large-Scale VLC-Based Indoor Positioning Systems Under Impact of Receiver Orientation
title_short Design and Performance Evaluation of Large-Scale VLC-Based Indoor Positioning Systems Under Impact of Receiver Orientation
title_full Design and Performance Evaluation of Large-Scale VLC-Based Indoor Positioning Systems Under Impact of Receiver Orientation
title_fullStr Design and Performance Evaluation of Large-Scale VLC-Based Indoor Positioning Systems Under Impact of Receiver Orientation
title_full_unstemmed Design and Performance Evaluation of Large-Scale VLC-Based Indoor Positioning Systems Under Impact of Receiver Orientation
title_sort design and performance evaluation of large-scale vlc-based indoor positioning systems under impact of receiver orientation
publisher IEEE
series IEEE Access
issn 2169-3536
publishDate 2020-01-01
description This paper proposes a complete design, including solutions for both physical (PHY) and link layer, and evaluates the performance of large-scale indoor positioning systems (IPSs) based on visible light communications (VLC). The triangulation method based on received signal strength (RSS) technique is employed for user localization. For the sake of signal separation at the receiver, each LED's position is encoded with a unique location identification (ID) using optical orthogonal codes (OOCs). A code re-use strategy is proposed to efficiently utilize the code resource. A novel enhancement method is also proposed to improve the system performance in terms of localization accuracy taking into account the impact of receiver orientation. Simulation results show that the maximum location error increases twice under the impact of receiver orientation when the polar angle is equal to $\theta = \pi /6$ . The effectiveness of the proposed localization enhancement method in reducing the average location error is also numerically confirmed. For the link layer design, a frame design with a 12-bit ID encoded by the Golay code for error correction is proposed. A simple proof-of-concept is implemented and experiments are conducted to analyze the overall system performance in terms of operation range and ID detectability.
topic Indoor positioning system (IPS)
visible light communications (VLC)
receiver orientation
optical orthogonal codes (OOCs)
received signal strength (RSS)
triangulation method
url https://ieeexplore.ieee.org/document/9050487/
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