Journal Article10.1016/J.OPTCOM.2017.02.015
A novel three-dimensional indoor positioning algorithm design based on visible light communication
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TL;DR: A visible light communication based three dimensional indoor positioning system employing a dedicated algorithm and using the code division multiple access technique is proposed to solve the mutual interference among the reference source points and outperform other existing indoor wireless localization approaches.
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About: This article is published in Optics Communications. The article was published on 01 Jun 2017. The article focuses on the topics: Indoor positioning system & Precise Point Positioning.
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Citations
The LED-ID Detection and Recognition Method Based on Visible Light Positioning Using Proximity Method
TL;DR: An LED-ID detection and recognition method based on visible light positioning using proximity method that can achieve high LED- ID recognition rate, and provide enough unique LED-IDs for variable large-scale indoor VLP system is proposed.
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3-D BLE Indoor Localization Based on Denoising Autoencoder
TL;DR: Field experiments show that 3-D space fingerprinting can effectively increase positioning accuracy, and DABIL performs the best in terms of both horizontal accuracy and vertical accuracy, comparing with a traditional fingerprinting method and a deep learning-based method.
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High-Accuracy Robot Indoor Localization Scheme Based on Robot Operating System Using Visible Light Positioning
TL;DR: An indoor robot VLP localization system based on Robot Operating System (ROS) is presented for the first time, aiming at promoting the application of VLP in mature robotic system.
Indoor High Precision Three-Dimensional Positioning System Based on Visible Light Communication Using Particle Swarm Optimization
TL;DR: A novel VLC positioning system based on modified particle swarm optimization (PSO) algorithm is put forward and the positioning results prove that this system can prove high localization accuracy and significantly lower the algorithm complexity.
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Indoor Positioning Based on Visible Light Communication: A Performance-based Survey of Real-world Prototypes
Milad Afzalan,Farrokh Jazizadeh +1 more
TL;DR: The study synthesizes the fundamental characteristics of VLC-based positioning systems that need to be considered, presents several technology gaps based on the current state-of-the-art for future research endeavors, and summarizes the lessons learned towards the standardization of the performance evaluation.
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TL;DR: The use of infrared radiation as a medium for high-speed short-range wireless digital communication, and several modification formats, including on-off keying (OOK), pulse-position modulation (PPM), and subcarrier modulation, are discussed.
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High data rate multiple input multiple output (MIMO) optical wireless communications using white led lighting
Lubin Zeng,Dominic O'Brien,Hoa Minh,Grahame Faulkner,Kyung-Woo Lee,Daekwang Jung,Yun-Je Oh,Eun Tae Won +7 more
TL;DR: In this paper, a non-imaging optical MIMO system does not perform properly at all receiver positions due to symmetry, but an imaging based system can operate under all foreseeable circumstances, and simulations show such systems can operate at several hundred Mbit/s, and up to G Bit/s in many circumstances.
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Visible light positioning: a roadmap for international standardization
TL;DR: The widespread introduction of white LEDs for illumination provides a unique opportunity to create an indoor positioning system that is flexible, accurate, and ubiquitous, and their implications for the design of a new standard are discussed.
468
TDOA-based optical wireless indoor localization using LED ceiling lamps
TL;DR: An optical wireless indoor localization using light emitting diodes (LEDs) and using the phase difference, time difference of arrival (TDOA) localization algorithm is employed, and the indoor location accuracy is less than 1 cm.
414
An Indoor Visible Light Communication Positioning System Using a RF Carrier Allocation Technique
TL;DR: The experimental result shows that the average error of estimated positions is reduced to 2.4 cm using adjustment process by normalizing method, which is compared with 141.1 cm without adjustment process.
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