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Spatial-frequency-scanning data transmission for mmW multi-user wireless communication systems

机译:mmW多用户无线通信系统的空间频率扫描数据传输

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An E-band point-to-multipoint wireless data transmission adopting a spatial-frequency-scanning diversity concept is demonstrated. A 7-channel multi-carrier QPSK modulated signal is generated and transmitted on a link realized by a wideband Tx-Rx frontend in combination with a frequency scanning substrate-integrated slotted waveguide antenna. The antenna transmits each sub-carrier, i.e. channel, with a different angle of departure and with a gain variation in the range of 1.6 to 10.5 dBi in the frequency range of 72.8 to 78.8 GHz. The sub-carrier frequency spacing of 1 GHz and modulation bandwidth of 100 and 200 MBd per channel are optimized for high unwanted channel leakage suppression according to the antenna's radiation pattern. Data rates of 200 and 400 Mbps are transmitted at each of the 7 channels, which are received at different locations of a 4 m link with an angular spacing of 12.5°. The error vector magnitude of the transmitted channel at each angle of departure is determined and analyzed, obtaining values in the range of 8.1 and 19.6 %. The power channel suppression for the unwanted channels transmitted at each angle of departure is measured with values from 5.3 to 30.1 dB.
机译:说明了采用空间频率扫描分集概念的E波段点对多点无线数据传输。生成7通道多载波QPSK调制信号,并在由宽带Tx-Rx前端结合频率扫描基板集成的缝隙波导天线实现的链路上发送该信号。天线在72.8至78.8 GHz的频率范围内以不同的偏离角和1.6至10.5 dBi范围内的增益变化发射每个子载波,即信道。针对1 GHz的子载波频率间隔以及每通道100和200 MBd的调制带宽进行了优化,以根据天线的辐射方向图抑制不想要的高通道泄漏。在7个通道中的每个通道上传输200 Mbps和400 Mbps的数据速率,它们在4 m链路的不同位置以12.5°的角距接收。确定并分析每个偏离角度的发射通道的误差矢量幅度,得出的值在8.1和19.6 \%的范围内。在每个偏离角上发射的无用信道的功率信道抑制量均在5.3至30.1 dB的范围内测量。

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