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首页> 外文期刊>IEEE Transactions on Microwave Theory and Techniques >Carrier Recovery Schemes for Submillimeter Wave Wireless Transmission
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Carrier Recovery Schemes for Submillimeter Wave Wireless Transmission

机译:亚毫米波无线传输的载波恢复方案

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摘要

By moving carrier frequencies to higher and higher frequency bands, larger bandwidths can be provided for data-hungry wireless applications. The submillimeter wave region is a promising candidate for future systems. In order to accommodate sophisticated modulation formats, coherent local oscillators in the transmitter (TX) and the receiver (RX) are needed for efficient operation. However, traditional methods of analog carrier recovery (e.g., narrowband filtering of the residual carrier and reamplification) fail at such high frequencies and for many modulation formats. Also, digital carrier recovery algorithms used in conjunction with free-running oscillators are too power hungry and hard to realize for high data rates above 10 Gb/s. In this paper, carrier recovery schemes based on the parallel transmission of a reference frequency together with the payload data suitable for high data rates in the submillimeter waveband are proposed. They are demonstrated at 300-GHz carrier frequency. The corresponding electronic circuits for the TX and the RX are designed, manufactured, and characterized.
机译:通过将载波频率移动到越来越高的频带,可以为需要大量数据的无线应用提供更大的带宽。亚毫米波区域是未来系统的有希望的候选者。为了适应复杂的调制格式,需要有效地使用发射器(TX)和接收器(RX)中的相干本地振荡器。但是,传统的模拟载波恢复方法(例如,残余载波的窄带滤波和再放大)在如此高的频率和许多调制格式下均失败。而且,与自由运行的振荡器结合使用的数字载波恢复算法非常耗电,并且难以实现高于10 Gb / s的高数据速率。在本文中,提出了一种基于参考频率与适合亚毫米波段高数据速率的有效载荷数据并行传输的载波恢复方案。它们在300 GHz载波频率上进行了演示。设计,制造和表征用于TX和RX的相应电子电路。

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