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首页> 外文期刊>IEEE communications letters >Linearity Measurements on a 5G mmWave Fiber Wireless IFoF Fronthaul Link With Analog RF Beamforming and 120° Degrees Steering
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Linearity Measurements on a 5G mmWave Fiber Wireless IFoF Fronthaul Link With Analog RF Beamforming and 120° Degrees Steering

机译:带有模拟RF波束成形的5G MMWVE光纤无线Iffof Fronthul链接的线性测量和120°

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Towards the 5G millimeter Wave (mmWave) era, analog transport offers a spectrally efficient scheme for converged Fiber Wireless (FiWi) networks. Signal integrity is traditionally considered as a limiting factor due to various non-linearities attributed to the microwave photonic link, expected to be further exacerbated by the RF-chain of beamforming Phased Array Antennas (PAAs). The letter proposes the end-to-end evaluation of FiWi analog links as unified communication channels rather than separately for the radio or optical part, presenting a link with a 32-element 60 GHz PAA, 1 m V-band distance, 10 km fiber and 10 dB dynamic range. The measurements reveal a third order Intercept Point (IIP3) of 4.8 dBm, compared to 22.8 dBm exclusively for the optics, pinpointing the V-band radio as the main source of degradation rather than the microwave photonic link. Single user uplink is also benchmarked using 300 Mbd QPSK, 250 16-QAM and 100 Mbd 32-QAM, achieving data-rate up to 1 Gb/s and beamsteering of 120 degrees degrees.
机译:朝向5G毫米波(MMWAVE)时代,模拟传输提供了一种用于融合光纤无线(FIWI)网络的光谱有效方案。由于归因于微波光子链路的各种非线性,信号完整性传统上被认为是由于归因于微波光子链路的各种非线性的限制因素。预期由波束形成相控阵天线(PaaS)的RF链进一步加剧。该信提出了FIWI模拟链路的端到端评估为统一通信通道,而不是单独用于无线电或光学部分,呈现32元件60 GHz PAA,1 M V波段距离,10km光纤的链接和10 dB动态范围。测量结果显示了4.8 dBm的三阶截距(IIP3),与22.8dBm专门用于光学器件相比,针对V波段无线电作为劣化的主要来源而不是微波光子链路。单用户上行链路也使用300 MBD QPSK,250 16-QAM和100 MBD 32-QAM进行基准测试,实现高达1 GB / s的数据速率,并分别为120度。

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