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首页> 外文期刊>Terahertz Science and Technology, IEEE Transactions on >Terahertz Wireless Data Transmission With Frequency and Polarization Division Multiplexing Using Resonant-Tunneling-Diode Oscillators
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Terahertz Wireless Data Transmission With Frequency and Polarization Division Multiplexing Using Resonant-Tunneling-Diode Oscillators

机译:使用谐振隧道二极管振荡器进行频分和极化分复用的太赫兹无线数据传输

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摘要

High-capacity short-distance wireless communications in the terahertz (THz) range are anticipated and therefore have been intensively studied. Higher data rates are made possible by the introduction of frequency division multiplexing (FDM) and polarization division multiplexing (PDM) schemes in the THz range. In this paper, wireless data transmissions using 2-channel FDM in the 500 and 800 GHz ranges and PDM in the 500 GHz range are demonstrated using resonant-tunneling-diode oscillators with different frequencies and polarizations integrated into one chip. Transmissions at a data rate of 28 Gbit/s were achieved in each channel with an error rate below the forward error correction limit in both multiplexing systems. The ratios of the leakage of the transmitted signal in one channel into the other channel were about −40 and −30 dB in FDM and PDM modes, respectively.
机译:预期在太赫兹(THz)范围内的大容量短距离无线通信,因此已经进行了深入研究。通过在THz范围内引入频分复用(FDM)和极化分复用(PDM)方案,可以实现更高的数据速率。在本文中,通过将具有不同频率和极化的谐振隧道二极管振荡器集成到一个芯片中,演示了使用500和800 GHz范围内的2通道FDM和500 GHz范围内的PDM进行无线数据传输。在两个多路复用系统中,每个通道均以28 Gbit / s的数据速率进行传输,错误率低于前向纠错限制。在FDM和PDM模式下,一个通道中的传输信号泄漏到另一通道中的泄漏比率分别约为-40 dB和-30 dB。

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