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Photonic-Assisted mm-Wave and THz Wireless Transmission towards 100 Gbit/s Data Rate

机译:光子辅助毫米波和太赫兹无线传输速率达到100 Gbit / s

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摘要

This paper presents photonic-assisted 60 GHz mm-wave and 325 GHz system approaches that enable the transmission of spectral-efficient and high data rate signals over fiber and over air. First, we focus on generic channel characteristics within the mm-wave 60 GHz band and at the terahertz (THz) band around 325 GHz. Next, for generating the high data rate baseband signals, we present a technical solution for constructing an extreme bandwidth arbitrary waveform generator (AWG). We then report the development of a novel coherent photonic mixer (CPX) module for direct optic-to-RF conversion of extreme wideband optical signals, with a > 5 dB higher conversion gain compared to conventional photodiodes. Finally, we experimentally demonstrate record spectral efficient wireless transmission for both bands. The achieved spectral efficiencies reach 10 bit/s/Hz for the 60 GHz band and 6 bit/s/Hz for the 325 GHz band. The maximum data rate transmitted at THz frequencies in the 325 GHz band is 59 Gbit/s using a 64-QAM-OFDM modulation format and a 10 GHz wide data signal.
机译:本文介绍了光子辅助的60 GHz毫米波和325 GHz系统方法,这些方法能够在光纤和空中传输频谱高效和高数据速率的信号。首先,我们关注毫米波60 GHz频段和325 GHz左右的太赫兹(THz)频段的一般信道特性。接下来,为了生成高数据速率基带信号,我们提出了一种构建极高带宽任意波形发生器(AWG)的技术解决方案。然后,我们报告了一种新颖的相干光子混合器(CPX)模块的开发,该模块用于对极端宽带光信号进行直接的光到RF转换,与传统的光电二极管相比,转换增益高出> 5 dB。最后,我们通过实验证明了两个频段的记录频谱有效无线传输。在60 GHz频段上达到的频谱效率达到10 bit / s / Hz,在325 GHz频段上达到6 bit / s / Hz。使用64-QAM-OFDM调制格式和10 GHz宽的数据信号,在325 GHz频段的THz频率下传输的最大数据速率为59 Gbit / s。

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