Simulation of impulse response for indoor visible light communications using 3D CAD models Visible light communications


Abstract:

In this article, a tool for simulating the channel impulse response for indoor visible light communications using 3D computer-aided design (CAD) models is presented. The simulation tool is based on a previous Monte Carlo ray-tracing algorithm for indoor infrared channel estimation, but including wavelength response evaluation. The 3D scene, or the simulation environment, can be defined using any CAD software in which the user specifies, in addition to the setting geometry, the reflection characteristics of the surface materials as well as the structures of the emitters and receivers involved in the simulation. Also, in an effort to improve the computational efficiency, two optimizations are proposed. The first one consists of dividing the setting into cubic regions of equal size, which offers a calculation improvement of approximately 50% compared to not dividing the 3D scene into sub-regions. The second one involves the parallelization of the simulation algorithm, which provides a computational speed-up proportional to the number of processors used. © 2013 Rodríguez et al.; licensee Springer.

Año de publicación:

2013

Keywords:

  • Impulse response
  • visible light communications
  • parallelization
  • CAD models
  • Ray-tracing

Fuente:

scopusscopus

Tipo de documento:

Article

Estado:

Acceso abierto

Áreas de conocimiento:

  • Comunicación
  • Comunicación
  • Ingeniería electrónica

Áreas temáticas:

  • Física aplicada
  • Imprenta y actividades conexas