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Full-Duplex Transmission of LTE-A Carrier Aggregation Signal Over a Bidirectional Seamless Fiber-Millimeter-Wave System

机译:双向无缝光纤毫米波系统上的LTE-A载波聚合信号全双工传输

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摘要

We propose a flexible and high-performance fronthaul system for future mobile networks using a seamless combination of fiber-optic and millimeter-wave (MMW) systems. The proposed system employs a high-quality optical MMW signal generation at the transmitter and a stable and high-performance MMW self-homodyne detection at the receiver. In the downlink direction, successful transmission of intraband and interband carrier aggregation (CA) long-term evolution-advanced (LTE-A) signals over the system is experimentally confirmed. We also confirm satisfactory performance for the transmission over a fiber–wireless bridge using a cascade of the seamless system and a conventional radio-over-fiber (RoF) link. In the uplink direction, we successfully demonstrate the transmission of an intraband CA LTE-A signal over a cascade of a radio-on-radio and a RoF system. In addition, we confirm that the full-duplex transmission of LTE-A signals over the proposed bidirectional system does not experience performance degradation compared to the case with half-duplex transmission. The proposed system is a potential solution for mobile-signal transmission in future networks.
机译:我们建议使用光纤和毫米波(MMW)系统的无缝组合,为未来的移动网络提供一种灵活的高性能前传系统。所提出的系统在发射机处采用高质量的MMW光学信号生成,并在接收机处采用稳定且高性能的MMW自谐音检测。在下行链路方向上,通过实验确认了系统内带内和带间载波聚合(CA)长期演进高级(LTE-A)信号的成功传输。我们还确认了使用无缝系统级联和传统的光纤无线电(RoF)链路在光纤-无线桥上进行传输的令人满意的性能。在上行链路方向,我们成功地演示了通过无线电对讲机和RoF系统的级联传输带内CA LTE-A信号的过程。此外,我们确认,与半双工传输相比,在建议的双向系统上进行LTE-A信号的全双工传输不会出现性能下降。所提出的系统是未来网络中移动信号传输的潜在解决方案。

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