This paper proposes a 2-D vehicular visible light positioning (VLP) system using existing streetlights and diversity receivers. Due to the linear arrangement of streetlights, traditional positioning techniques based on triangulation or similar algorithms fail. Thus, in this work, we propose a spatial and angular diversity receiver with machine learning (ML) techniques for VLP. It is shown that a multi-layer neural network (NN) with the proposed receiver scheme outperforms other machine learning (ML) algorithms and can offer high accuracy with root mean square (RMS) error of 0.22 m and 0.14 m during the day and night time, respectively. Furthermore, the NN shows robustness in VLP across different weather conditions and road scenarios. The re...
Visible light positioning systems (VLPSs) are a feasible alternative to local positioning systems du...
In this paper, we study the design aspects of an indoor visible light positioning (VLP) system that ...
The widespread increase in the use of light emitting diodes in vehicle’s head and taillights and als...
This paper proposes a 2-D vehicular visible light positioning (VLP) system using existing streetligh...
This paper proposes a 2-D vehicular visible light positioning (VLP) system using existing streetligh...
This paper proposes a 2-D vehicular visible light positioning (VLP) system using existing streetligh...
Visible light positioning (VLP) systems have experienced substantial revolutionary progress over the...
In recent times, several applications requiring highly accurate indoor positioning systems have been...
Relative vehicle positioning methods can contribute to safer and more efficient autonomous driving b...
This paper investigates the error performance of visible Light Positioning (VLP) systems for 3D indo...
In this paper, we aim to give a unified performance limit analysis of the visible light-based positi...
In this work, the use of Machine Learning methods for robust Received Signal Strength (RSS)-based Vi...
Visible Light Positioning (VLP) is a promising indoor localization technology for providing highly a...
The growing deployment of light-emitting diodes as energy-efficient, cost-effective lighting for veh...
This paper presents an efficient road surface detection technique based on visible light communicati...
Visible light positioning systems (VLPSs) are a feasible alternative to local positioning systems du...
In this paper, we study the design aspects of an indoor visible light positioning (VLP) system that ...
The widespread increase in the use of light emitting diodes in vehicle’s head and taillights and als...
This paper proposes a 2-D vehicular visible light positioning (VLP) system using existing streetligh...
This paper proposes a 2-D vehicular visible light positioning (VLP) system using existing streetligh...
This paper proposes a 2-D vehicular visible light positioning (VLP) system using existing streetligh...
Visible light positioning (VLP) systems have experienced substantial revolutionary progress over the...
In recent times, several applications requiring highly accurate indoor positioning systems have been...
Relative vehicle positioning methods can contribute to safer and more efficient autonomous driving b...
This paper investigates the error performance of visible Light Positioning (VLP) systems for 3D indo...
In this paper, we aim to give a unified performance limit analysis of the visible light-based positi...
In this work, the use of Machine Learning methods for robust Received Signal Strength (RSS)-based Vi...
Visible Light Positioning (VLP) is a promising indoor localization technology for providing highly a...
The growing deployment of light-emitting diodes as energy-efficient, cost-effective lighting for veh...
This paper presents an efficient road surface detection technique based on visible light communicati...
Visible light positioning systems (VLPSs) are a feasible alternative to local positioning systems du...
In this paper, we study the design aspects of an indoor visible light positioning (VLP) system that ...
The widespread increase in the use of light emitting diodes in vehicle’s head and taillights and als...