Wireless Communication using VLC and MIMO Technology

Nitesh Gupta
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引用次数: 1

Abstract

Due to the rapid growths in Light Emitting Diodes, VLC (Visible Light Communication) has received a great attention in last years. Our main aim of this research work is to build the wireless VLC (Visible Light Communication) system which should be able to transmit the data in-between two computers with the use of a visible light. We are using an LED array as the transmitter, Light Dependent Resistor (LDR) as the receiver component and air as the transmission medium. In both the transmitter and receiver modules, we are using Arduino UNO microcontroller board. Two computers have been used to interface the software to the hardware with the help of Arduino IDE installed to both of them. If we want to check the performance of VLC system with MIMO, commercial optical system simulation software called OptiSystem7.0 from Optiwave can be used. The layout diagram for both SISO (Single Input Single Output) and MIMO (Multiple Input Multiple Output) communication has been generated and has been run and the BER (Bit Error Rate) performance is being analyzed. FSO (Free Space Optical) communication channel is used as transmission medium for both SISO and MIMO. Data transmission and reception for 100 meters is done using OptiSystem software. The eye diagram of BER analyzer showed that the maximum quality factor of MIMO is relatively large when compared to SISO.
使用VLC和MIMO技术的无线通信
近年来,由于发光二极管的快速发展,可见光通信技术(VLC)受到了广泛的关注。我们的主要研究目的是建立无线VLC(可见光通信)系统,该系统应该能够利用可见光在两台计算机之间传输数据。我们使用LED阵列作为发射器,光相关电阻(LDR)作为接收器组件,空气作为传输介质。在发射器和接收器模块中,我们都使用Arduino UNO微控制器板。通过安装在两台计算机上的Arduino IDE,使用两台计算机将软件与硬件连接起来。如果我们想用MIMO来测试VLC系统的性能,可以使用Optiwave的OptiSystem7.0商用光学系统仿真软件。生成了SISO(单输入单输出)和MIMO(多输入多输出)通信的布局图并进行了运行,并分析了误码率(BER)性能。自由空间光(FSO)通信信道作为SISO和MIMO的传输介质。使用OptiSystem软件完成100米的数据收发。从误码率分析仪的眼图可以看出,MIMO的最大质量因子相对于SISO来说是比较大的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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