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16‐QAM OFDM‐Based W‐Band Polarization‐Division Duplex Communication System with Multi‐gigabit Performance

机译:具有千兆位性能的基于16 QAM OFDM的W波段极化分区双工通信系统

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This paper presents a novel 90 GHz band 16‐quadrature amplitude modulation (16‐QAM) orthogonal frequency‐division multiplexing (OFDM) communication system. The system can deliver 6 Gbps through six channels with a bandwidth of 3 GHz. Each channel occupies 500 MHz and delivers 1 Gbps using 16‐QAM OFDM. To implement the system, a low‐noise amplifier and an RF up/down conversion fourth‐harmonically pumped mixer are implemented using a 0.1‐μm gallium arsenide pseudomorphic high‐electron‐mobility transistor process. A polarization‐division duplex architecture is used for full‐duplex communication. In a digital modem, OFDM with 256‐point fast Fourier transform and (255, 239) Reed‐Solomon forward error correction codecs are used. The modem can compensate for a carrier‐frequency offset of up to 50 ppm and a symbol rate offset of up to 1 ppm. Experiment results show that the system can achieve a bit error rate of 10~(–5) at a signal‐to‐noise ratio of about 19.8 dB.
机译:本文提出了一种新颖的90 GHz频带16正交幅度调制(16-QAM)正交频分复用(OFDM)通信系统。该系统可以通过六个带宽为3 GHz的通道提供6 Gbps的传输速率。每个信道占用500 MHz,并使用16-QAM OFDM传输1 Gbps。为了实现该系统,使用0.1μm砷化镓伪晶高电子迁移率晶体管工艺实现了低噪声放大器和RF上/下转换四次谐波泵浦混频器。极化分区双工架构用于全双工通信。在数字调制解调器中,使用具有256点快速傅立叶变换和(255,239)Reed-Solomon前向纠错编解码器的OFDM。调制解调器可以补偿高达50 ppm的载波频率偏移和高达1 ppm的符号率偏移。实验结果表明,该系统在信噪比约为19.8 dB的情况下可以达到10〜(-5)的误码率。

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