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A Terahertz Wireless Communication Link Using a Superheterodyne Approach

机译:使用超外差方法的太赫兹无线通信链路

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This article presents a wireless communication point-to-point link operated in the low terahertz (THz) range, at a center frequency of 300GHz. The link is composed of all-electronic components based on monolithic millimeter wave integrated circuits fabricated in an InGaAs metamorphic high electron mobility transistor technology. Different configurations and architectures are compared and analyzed. The superheterodyne approach proves to be the most promising of all, being compliant with the new IEEE standard for 100Gb/s wireless transmissions and showing compatibility to accessible, already available modems. The first option of realizing the superheterodyne configuration is by combining the 300-GHz transmitter and receiver with of-the-shelf up and down converters operating at a center frequency of 10GHz. In this case, data rates of up to 24Gb/s are achieved. The second option employs a fast arbitrary waveform generator that uses a carrier frequency to up-convert the baseband data. In this case, data rates of up to 60Gb/s and transmission distances of up to 10m are achieved with complex modulated signals like 16-QAM and 32-QAM. The baseband signal is composed of pseudo-random binary sequences and is analyzed offline using fast analog to digital converters. In superheterodyne configuration, multichannel transmission is demonstrated. Channel data rates of 10.2Gb/s using 64-QAM are achieved. The successful transmission of aggregated channels in this configuration shows the potential of THz communication for future high data rate applications.
机译:本文介绍了在300 GHz中心频率下以太赫兹(THz)范围工作的无线通信点对点链路。该链接由基于InGaAs变质高电子迁移率晶体管技术制造的单片毫米波集成电路的全电子组件组成。比较和分析了不同的配置和体系结构。事实证明,超外差方法是最有前途的,它符合用于100Gb / s无线传输的新IEEE标准,并与可访问的,已经可用的调制解调器兼容。实现超外差配置的第一个选择是将300-GHz发射器和接收器与以10GHz中心频率运行的现成的上下变频器组合在一起。在这种情况下,可实现高达24Gb / s的数据速率。第二种选择采用快速任意波形发生器,该发生器使用载波频率上变频基带数据。在这种情况下,使用复杂的调制信号(例如16-QAM和32-QAM)可获得高达60Gb / s的数据速率和高达10m的传输距离。基带信号由伪随机二进制序列组成,并使用快速模数转换器进行离线分析。在超外差配置中,演示了多通道传输。使用64-QAM可以实现10.2Gb / s的通道数据速率。在此配置中成功传输聚合信道显示了THz通信在未来高数据速率应用中的潜力。

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