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Integration of millimeter-wave and optical link for duplex transmission of hierarchically modulated signal over a single carrier and fiber for future 5G communication systems

机译:毫米波和光学链路的集成在单个载波和光纤中分层调制信号的双工传输,以供向未来的5G通信系统

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摘要

Integration of optical and millimeter-wave systems provide a promising solution for future giga-bits per second wireless communication systems. We have proposed and simulated full-duplex transmission of a hierarchically modulated signal carrying data for two different users at a combined rate of 1.5 Gbps. Analogue modulation of the optical carrier is used for the transmission of downlink data while the same carrier is re-used by digitally modulating it with the uplink data. The use of optical analogue and digital modulation schemes allow the transmission of duplex data over a single optical fiber. A millimeter-wave channel is integrated with the optical link. The performance of the downlink and uplink signals are evaluated in terms of error vector magnitude and bit-error rate measurements, respectively. The effect of fiber length, received optical power and data rates on the performance has also been evaluated. It is shown that for a fiber length of 10 km, the lowest error vector magnitude obtained for the hierarchically modulated signal after transmission through a 14 m millimeter-wave link is 9.5%.
机译:光学和毫米波系统的集成为每个第二无线通信系统的未来GIGA比特提供了一个有希望的解决方案。我们已经提出了以1.5 Gbps的组合速率为两个不同用户的分层调制信号携带数据的全双工传输。光学载波的模拟调制用于传输下行链路数据,而通过用上行链路数据进行数字调制它来重新使用相同的载波。光学模拟和数字调制方案的使用允许通过单个光纤传输双工数据。毫米波通道与光学链路集成。下行链路和上行链路信号的性能分别在误差矢量幅度和误码率测量方面进行评估。还评估了纤维长度,接收光功率和数据速率对性能的影响。结果表明,对于10km的纤维长度,在通过14M毫米波连杆传输之后获得的分层调制信号获得的最低误差矢量幅度为9.5%。

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