通过可见光进行高性价比的通信

H. Hamam
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引用次数: 1

摘要

可见光通信(VLC)是射频通信的一种替代方案。它有两个优点:首先,它使用宽频谱;其次,它提供了内在的安全维度,因为光不能穿过墙壁。提出了一种基于VLC的高效节能的视频传输系统。我们的系统可以很容易地实施,而无需对现有的基础设施进行重大修改。这个系统不需要特殊的设备,也不需要安装驱动程序。我们克服了三个主要的研究挑战:1)消除由环境光引起的噪声并恢复数据,2)达到传输的目的,使高质量的视频流畅运行,3)在发射器和接收器之间建立足够长的距离,以促进系统在实际条件下的使用。我们实现了一个以4mb /s速度运行的可见光通信原型,能够超过2米的距离。发射器是基于一个普通的白光LED。光电二极管PD具有纳秒级的响应特性和对光的高灵敏度,是接收机的主要组成部分。该系统基于开关键控调制解调技术。在开发的软件中实现了循环冗余校验(CRC)以降低误码率(BER)。这种通信技术可以在不能使用无线电频率通信的地方实施,例如在医院。从长远来看,我们打算在软件层面取得进展,以实现实时视频传输。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Cost-effective communication through visible light
Visible light communication (VLC) is an alternative to radio frequency communication. It has two advantages: first, it uses a wide frequency spectrum and second, it offers an intrinsic security dimension since the light cannot pass through walls. We present a cost-effective and energy-efficient system based on VLC for video transmission. Our system could be easily implemented without introducing major modifications to the existing infrastructure. This system does not entail special devices, nor does it require installing drivers. We overcome three main research challenges: 1) removing the noise caused by the ambient light and recovering data, 2) reaching transmission debit enabling high-quality video running fluidly, 3) establishing a distance between the transmitter and the receiver long enough to facilitate the use of the system in real conditions. We implemented a visible light communication prototype operating at 4 Mb/s capable of exceeding a distance of 2 meters. The transmitter is based on a regular white LED. Due to its nanosecond response and high sensitivity to light, the photodiode PD is the main component of the receiver. The system is based on an On-Off keying modulation and demodulation technique. A cyclic redundancy check (CRC) is implemented within the developed software to reduce the bit error rate (BER)._This communication technology can be implemented where radio frequency communication cannot, for example, in hospitals. In perspective, we intend to make progress at the software-level to enable realtime video transmission.
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