Owcsimpy: A 3D Simulator for Indoor Optical Wireless Channels

A. A. Purwita, N. N. Qomariyah
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引用次数: 1

Abstract

In this paper, a 3D simulator for indoor optical wireless channels, named owcsimpy, is introduced. One of the advantages of owcsimpy is the ability to generate channel impulse responses (CIRs) with realistic environments. Envi-ronments with different furniture, blocking objects (such as human bodies), randomly-oriented stations, or mobile users can be modeled with owcsimpy. In addition, owcsimpy is a lightweight library that can be easily installed in many different machines, which makes it easy to produce a dataset of CIRs. In this paper, different use cases of owcsimpy are discussed. First, we demonstrate how to generate different scenarios ranging from a simple one, e.g., an indoor room with a light emitting diode (LED) and a photodiode (PD), to more complicated scenarios, e.g., an open office room with multiple LEDs and PDs. Second, CIRs that are generated by considering randomly-oriented mobile stations are used to calculate the coherence time of indoor wireless optical channels. Other potential applications of owcsimpy that show the advantage of the library to enable future research on LiFi are also presented at the end of the paper.
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Owcsimpy:室内光学无线通道的3D模拟器
本文介绍了一种室内无线信道三维仿真器owcsimpy。owcsimple的优点之一是能够在现实环境中产生信道脉冲响应(CIRs)。具有不同家具、阻塞对象(如人体)、随机定向的站点或移动用户的环境可以使用owcsimpy建模。此外,owcsimpy是一个轻量级库,可以很容易地安装在许多不同的机器上,这使得生成cirr数据集变得很容易。本文讨论了owcsimpy的不同用例。首先,我们演示了如何生成不同的场景,从一个简单的场景,例如,一个有发光二极管(LED)和光电二极管(PD)的室内房间,到更复杂的场景,例如,一个有多个LED和PD的开放式办公室。其次,利用考虑随机方向移动台产生的CIRs计算室内无线光信道的相干时间;在论文的最后,还介绍了owcsimpy的其他潜在应用,这些应用显示了该库在LiFi的未来研究中的优势。
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