This paper describes the simulation results and hardware implementation of an inexpensive, low-complexity LED based indoor positioning system. Localization by multiple LEDs estimation model (MLEM) approximates position of a mobile receiver by the acquisition of positional information from LED transmitters. Multiple LED orientation can either be with or without overlap. Receivers in a no-overlap LED orientation experience only single access while multiple access receivers are designed for orientations with overlaps. Single and multiple access systems were developed and implemented by the use of low cost ATMEG 328 microcontroller. Since multiple LEDs transmit data at the same wavelength and are asynchronous, overlap in multiple access system ...
We propose a realistic 3D positioning system for indoor navigation that exploits visible Light Emitt...
In the recent year, along with the rapid development of LED technology, many applications using LEDs...
In this paper, we develop a low complexity indoor positioning system (IPS) and design a lightweight,...
In this work, we design an infrared protocol (IRP) for light emitting diode (LED) based indoor posit...
High power white LEDs are expected to replace the existing lighting technologies in near future whic...
Nowadays, the use of Visible Light Communications is growing towards several applications, due to th...
Abstract: High power white LEDs are expected to replace the existing lighting technologies in near f...
Indoor positioning or localization based on visible light communications (VLC) is an emerging techno...
is growing towards several applications, due to the many benefits of this technology. By efficiently...
This paper focuses on designing and analysing a visible light based communication and positioning sy...
In this paper, we present an indoor positioning system were trichromatic white LEDs are used as tran...
Recently, the demand for scalable, efficient and accurate Indoor Positioning Systems (IPS) has seen ...
This paper investigates the use of Light Emitting Diode (LED) as Visible Light Communication (VLC) i...
Indoor positioning systems (IPSs) provides the location information of devices and persons. Light Em...
Until today, the existing technological solutions for accurate indoor positioning do not have a suff...
We propose a realistic 3D positioning system for indoor navigation that exploits visible Light Emitt...
In the recent year, along with the rapid development of LED technology, many applications using LEDs...
In this paper, we develop a low complexity indoor positioning system (IPS) and design a lightweight,...
In this work, we design an infrared protocol (IRP) for light emitting diode (LED) based indoor posit...
High power white LEDs are expected to replace the existing lighting technologies in near future whic...
Nowadays, the use of Visible Light Communications is growing towards several applications, due to th...
Abstract: High power white LEDs are expected to replace the existing lighting technologies in near f...
Indoor positioning or localization based on visible light communications (VLC) is an emerging techno...
is growing towards several applications, due to the many benefits of this technology. By efficiently...
This paper focuses on designing and analysing a visible light based communication and positioning sy...
In this paper, we present an indoor positioning system were trichromatic white LEDs are used as tran...
Recently, the demand for scalable, efficient and accurate Indoor Positioning Systems (IPS) has seen ...
This paper investigates the use of Light Emitting Diode (LED) as Visible Light Communication (VLC) i...
Indoor positioning systems (IPSs) provides the location information of devices and persons. Light Em...
Until today, the existing technological solutions for accurate indoor positioning do not have a suff...
We propose a realistic 3D positioning system for indoor navigation that exploits visible Light Emitt...
In the recent year, along with the rapid development of LED technology, many applications using LEDs...
In this paper, we develop a low complexity indoor positioning system (IPS) and design a lightweight,...