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Enhancements of SDR-Based FPGA System for V2X-VLC Communications
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作者 Lukas Danys Radek Martinek +3 位作者 Rene Jaros Jan Baros Petr Simonik Vaclav Snasel 《Computers, Materials & Continua》 SCIE EI 2021年第9期3629-3652,共24页
This pilot study focuses on a real measurements and enhancements of a software defined radio-based system for vehicle-to everything visible light communication(SDR-V2X-VLC).The presented system is based on a novel ada... This pilot study focuses on a real measurements and enhancements of a software defined radio-based system for vehicle-to everything visible light communication(SDR-V2X-VLC).The presented system is based on a novel adaptive optimization of the feed-forward software defined equalization(FFSDE)methods of the least mean squares(LMS),normalized LMS(NLMS)and QR decomposition-based recursive least squares(QR-RLS)algorithms.Individual parameters of adaptive equalizations are adjusted in real-time to reach the best possible results.Experiments were carried out on a conventional LED Octavia III taillight drafted directly from production line and universal software radio peripherals(USRP)from National Instruments.The transmitting/receiving elements used multistate quadrature amplitude modulation(M-QAM)implemented in LabVIEW programming environment.Experimental results were verified based on bit error ratio(BER),error vector magnitude(EVM)and modulation error ratio(MER).Experimental results of the pilot study unambiguously confirmed the effectiveness of the proposed solution(longer effective communication range,higher immunity to interference,deployment of higher state QAM modulation formats,higher transmission speeds etc.),as the adaptive equalization significantly improved BER,MER and EVM parameters.The best results were achieved using the QR-RLS algorithm.The results measured on deployed QR-RLS algorithm had significantly better Eb/N0(improved by approx.20 dB)and BER values(difference by up to two orders of magnitude). 展开更多
关键词 5G feed-forward software defined equalization multistate quadrature amplitude modulation software defined radio visible light communication
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Internet of radio and light:5G building network radio and edge architecture 被引量:1
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作者 Yue Zhang Hequn Zhang +12 位作者 John Cosmas Nawar Jawad Kareem Ali Ben Meunier Adam Kapovits Li-Ke Huang Wei Li Lina Shi Xun Zhang Jintao Wang Israel Koffman Muller Robert Charilaos C.Zarakovitis 《Intelligent and Converged Networks》 2020年第1期37-57,共21页
The Internet of Radio-Light(IoRL)is a cutting-edge system paradigm to enable seamless 5G service provision in indoor environments,such as homes,hospitals,and museums.The system draws on innovative architectural struct... The Internet of Radio-Light(IoRL)is a cutting-edge system paradigm to enable seamless 5G service provision in indoor environments,such as homes,hospitals,and museums.The system draws on innovative architectural structure that sits on the synergy between the Radio Access Network(RAN)technologies of millimeter Wave communications(mmWave)and Visible Light Communications(VLC)for improving network throughput,latency,and coverage compared to existing efforts.The aim of this paper is to introduce the IoRL system architecture and present the key technologies and techniques utilised at each layer of the system.Special emphasis is given in detailing the IoRL physical layer(Layer 1)and Medium Access Control layer(MAC,Layer 2)by means of describing their unique design characteristics and interfaces as well as the robust IoRL methods of improving the estimation accuracy of user positioning relying on uplink mmWave and downlink VLC measurements. 展开更多
关键词 5G Internet of Radio-light(IoRL) visible light communications(vlC) millimeterWave communications(mmWave) Remote Radio light Head(RRLH) Network Function Virtualization(NFV) Software Defined Network(SDN) positioning
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便携式点对点可见光通信终端的实验研究 被引量:23
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作者 叶玮琳 郑传涛 +1 位作者 张红伟 吴祥坤 《光电子.激光》 EI CAS CSCD 北大核心 2013年第8期1500-1506,共7页
利用开关键控-非归零码(OOK—NRZ)调制编码技术,设计并实现了一对基于ARM7处理器(LPC2148)的便携式点对点可见光通信(VLC)收/发终端。发送端由编码器、光源驱动器及单个白色发光二极管(wLED)构成,接收端由可见光探测器、信... 利用开关键控-非归零码(OOK—NRZ)调制编码技术,设计并实现了一对基于ARM7处理器(LPC2148)的便携式点对点可见光通信(VLC)收/发终端。发送端由编码器、光源驱动器及单个白色发光二极管(wLED)构成,接收端由可见光探测器、信号处理电路及解码器构成。实验研究了WLED的发射谱和可见光探测器的响应谱,测试分析了VLC信道的时域和频域的电一光一电(EOE)响应。阐述了系统结构和原理,编写了通信软件并制定了相关协议,实现了系统的软、硬件集成。利用研制出的通信装置,建立了点对点通信链路,并开展了数据通信实验。结果表明,在发送端,为了最大化地降低误码率(BER),WLED的调制系数应设置为0.68~1.00,即在一定的交流调制信号幅度下,需要向WLED提供合适的直流偏置电压;在接收端,在一定的阈值判决门限电压下,VLC传输呈带通特性。在所优化选择的系统参数下,系统的通信距离为0.5m,可达到的最快信息传输速率约为4Mbps,BER小于10^-6。利用多个WLED构成阵列光源,系统可进一步满足更长距离的通信需求,从而在室内、外短途通信方面具有潜在的应用价值。 展开更多
关键词 无线通信 可见光通信(vlC) 开关键控-非归零码(OOK-NRZ)调制 误码率(BER) 码元速率
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