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Experimental Demonstration of Multi-Service Hybrid Fiber-Radio System Using Digitized RF-Over-Fiber Technique

机译:数字化光纤覆盖技术的多业务混合光纤无线电系统的实验演示

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摘要

An efficient multi-channel hybrid fiber-radio scheme for both down and up-link paths is demonstrated based on digitized RF-over-fiber technique, where the frequency translation stages are implemented using a single analog-to-digital converter (ADC) and digital-to-analog converter (DAC) instead of mixers and local oscillators. The simultaneous transmission of GSM, UMTS and WiMAX services is demonstrated with error-free reception. With a minimum sampling rate of 50 MHz and an overall optical data rate of 400 Mb/s, all the three wireless services can be successfully recovered in a full-duplex transmission. In the downlink direction, the performance is dependent on the amount of amplification required for the wireless signal at the desired carrier frequency. The amount of amplification on the other hand is dependent on the location of the wireless signal within the Nyquist zone which increases significantly with the order of the Nyquist zone. In the uplink direction, the performance is limited by inter-channel interference as a result of spectra aliasing of the regenerated IF signals which limits the signal-to-noise-ratio. With proper system design that optimizes downlink amplification and minimizes inter-channel interference, simultaneous multi-service transmission using digitized RF-over-fiber technique is able to improve spectral efficiency and minimize hardware count.
机译:基于数字化光纤上射频技术,展示了一种用于下行链路和上行链路路径的有效多通道混合光纤无线电方案,该方案中的频率转换阶段使用单个模数转换器(ADC)和数模转换器(DAC),而不是混频器和本地振荡器。 GSM,UMTS和WiMAX服务的同时传输通过无差错接收得到演示。最低采样率为50 MHz,总光学数据速率为400 Mb / s,可以通过全双工传输成功恢复所有三种无线服务。在下行链路方向,性能取决于无线信号在所需载频上所需的放大量。另一方面,放大量取决于奈奎斯特区内无线信号的位置,该位置随奈奎斯特区的数量级而显着增加。在上行链路方向上,由于再生的IF信号的频谱混叠而限制了信噪比,因此性能受到信道间干扰的限制。通过适当的系统设计,可以优化下行链路放大并最大程度地减少通道间干扰,使用数字化光纤电缆技术进行的同时多业务传输能够提高频谱效率并减少硬件数量。

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