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16‐QAM OFDM‐Based K‐Band LoS MIMO Communication System with Alignment Mismatch Compensation

机译:具有对准失配补偿的基于16 QAM OFDM 的K频段LoS MIMO 通信系统

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摘要

This paper presents a novel K‐band (18 GH z) 16‐quadrature amplitude modulation (16‐ QAM ) orthogonal frequency‐division multiplexing ( OFDM )‐based 2 × 2 line‐of‐sight multi‐input multi‐output communication system. The system can deliver 356 Mbps on a 56 MH z channel. Alignment mismatches, such as amplitude and/or phase mismatches, between the transmitter and receiver antennas were examined through hardware experiments. Hardware experimental results revealed that amplitude mismatch is related to antenna size, antenna beam width, and link distance. The proposed system employs an alignment mismatch compensation method. The open‐loop architecture of the proposed compensation method is simple and enables facile construction of communication systems. In a digital modem, 16‐ QAM OFDM with a 512‐point fast Fourier transform and (255, 239) Reed‐Solomon forward error correction codecs is used. Experimental results show that a bit error rate of 10~(?5) is achieved at a signal‐to‐noise ratio of approximately 18.0 dB .
机译:本文提出了一种新颖的基于K波段(18 GH z)的16正交幅度调制(16- QAM)正交频分复用(OFDM)基于2×2视线的多输入多输出通信系统。该系统可以在56 MH z信道上提供356 Mbps。通过硬件实验检查了发射器和接收器天线之间的对准失配,例如幅度和/或相位失配。硬件实验结果表明,幅度失配与天线尺寸,天线波束宽度和链路距离有关。所提出的系统采用对准失配补偿方法。所提出的补偿方法的开环体系结构很简单,并且可以轻松构建通信系统。在数字调制解调器中,使用具有512点快速傅立叶变换和(255,239)Reed-Solomon前向纠错编解码器的16 QAM OFDM。实验结果表明,在大约18.0 dB的信噪比下,可实现10〜(?5)的误码率。

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