标题: 提升可见光通讯传输品质之技术
Signal Processing Techniques for Enhancing Transmission Capacity of Visible Light Communication
作者: 梁智凯
邹志伟
Liang,Kevin
Chow,Chi-Wai
光电工程研究所
关键字: 可见光通讯;智慧型手机;滚动式快门效应;影像处理;脉幅调变;分波多工;Visible light communication;Smartphone camera;Rolling shutter;Image processing;Pulse-amplitude modulation;Wavelength-division-multiplexing
公开日期: 2016
摘要: 随着无线通讯技术快速发展而且普及,未来不只是人,物与物之间都会有网路连结,将现实世界数位化,应用范围十分广泛。为了应对更大量的通讯需求,各式各样的技术应运而生。其中可见光通讯技术是非常受人关注的,除了传输速度更快之外,使用可见光当作传输介质可以直接结合未来照明技术,而不用再另外架设基地台,具有高整合性。还有其他优点像安全性,特殊场合应用等,在未来只要有光的地方就有网路。
可以接收光的接收器各式各样,其中手机是最为而容易取得而且整合上网需求最大的。使用相机影像来接收光讯号,类似应用像快速响应矩阵码(QR条码),就是利用相机扫描二维图形来达到简单的资讯传输或储存。首先我们研究整个可见光通讯系统的原理,再利用一系列的影像处理方法让传输品质更稳定,最后使用不同的光源或调变方式来达到更高速的传输速度。
In order to satisfy the huge demand in communications, numerous technologies have emerged. Visible light communication (VLC) technology has attracted much attention. Besides the high data rate, using visible light as a transmission medium can be combined with lighting technology directly, achieving cost-effective integration system. VLC can provide higher transmission security (the so-called “what you see is what you send”), and it can provide several unique applications, such as accurate indoor positioning, under-water communications etc.
Typical VLC receivers are positive-intrinsic-negative (PIN) photodiode (PD) or avalanche PD (APD). Using mobile-phone camera as VLC receiver can be flexible and reduce the VLC deployment cost. Similar applications like Quick Response (QR) Code which can store the information with a two-dimensional pattern and then retrieved by mobile-phone camera.
In this thesis, we proposed and demonstrated different techniques to enhance the performance of VLC. In Chapter 2, we discuss using the rolling-shutter effect of the mobile-phone camera for the VLC. In Chapter 3, we compare different thresholding scheme for defining the logics of the rolling shutter pattern obtained by the mobile phone camera. In Chapter 4, we further discuss different schemes to enhance the transmission data rate of the camera-based VLC, such as using polarization multiplexing (PM), wavelength division multiplexing (WDM), and multiple-input multiple-output (MIMO). Finally, a conclusion and future works are presented in Chapter 5.
URI: http://etd.lib.nctu.edu.tw/cdrfb3/record/nctu/#GT070350550
http://hdl.handle.net/11536/139811
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