Material characterisation for optical wireless communication combining measurement and Monte Carlo simulations

IF 2.3 4区 计算机科学 Q2 ENGINEERING, ELECTRICAL & ELECTRONIC
Pierre Combeau, Lilian Aveneau, Pierre Thuillier Le Gac, Ruqin Xiao
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引用次数: 0

Abstract

A method is proposed for optical characterisation of materials, which is a very important input for realistic channel simulation based on Monte-Carlo Ray-Tracing algorithms. This original approach consists first of all in carrying out some measurements of the optical power received after propagation in the environment containing the materials sought, using a simple and low-cost experimental setup. In a second step, this approach is based on an optimization algorithm. It takes as input the optical power measurements made, associated with the parameters of the measurement environment, such as the positions or properties of the sensors. This algorithm searches for the parameters of the material reflection models, minimising the difference between the optical measurement and the simulation. Two cost functions are studied to perform this search and showed that the correlation measure is the more robust one. To avoid uncertainties in the real input data, this approach is discussed using only a virtual configuration with well-controlled input data and thus a virtual measurement obtained by simulation. The results show that this method produces a correct estimate of the Bidirectional Reflectance Distribution Function (BRDF) albedos, provided that the chosen BRDF models correspond well to the reflection behaviour of the materials, and that the materials have a significant influence on the measured optical power.

Abstract Image

结合测量和蒙特卡罗模拟的光学无线通信材料特性
提出了一种基于蒙特卡罗光线追踪算法的材料光学表征方法,该方法是实现真实通道模拟的重要输入。这种原始方法首先包括在包含所寻找材料的环境中进行传播后接收光功率的一些测量,使用简单且低成本的实验装置。第二步,该方法基于优化算法。它将与测量环境参数(如传感器的位置或属性)相关的光功率测量作为输入。该算法搜索材料反射模型的参数,使光学测量与模拟之间的差异最小化。研究了两个成本函数来执行这种搜索,并表明相关度量是更鲁棒的度量。为了避免实际输入数据中的不确定性,本文只讨论了具有良好控制输入数据的虚拟结构,从而通过仿真获得虚拟测量值。结果表明,如果选择的BRDF模型与材料的反射特性相对应,并且材料对测量的光功率有显著影响,则该方法可以正确估计双向反射分布函数(BRDF)反照率。
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来源期刊
Iet Optoelectronics
Iet Optoelectronics 工程技术-电信学
CiteScore
4.50
自引率
0.00%
发文量
26
审稿时长
6 months
期刊介绍: IET Optoelectronics publishes state of the art research papers in the field of optoelectronics and photonics. The topics that are covered by the journal include optical and optoelectronic materials, nanophotonics, metamaterials and photonic crystals, light sources (e.g. LEDs, lasers and devices for lighting), optical modulation and multiplexing, optical fibres, cables and connectors, optical amplifiers, photodetectors and optical receivers, photonic integrated circuits, photonic systems, optical signal processing and holography and displays. Most of the papers published describe original research from universities and industrial and government laboratories. However correspondence suggesting review papers and tutorials is welcomed, as are suggestions for special issues. IET Optoelectronics covers but is not limited to the following topics: Optical and optoelectronic materials Light sources, including LEDs, lasers and devices for lighting Optical modulation and multiplexing Optical fibres, cables and connectors Optical amplifiers Photodetectors and optical receivers Photonic integrated circuits Nanophotonics and photonic crystals Optical signal processing Holography Displays
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