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A novel optical single-sideband frequency translation technique for transmission of wireless MIMO signals over fiber-wireless system

机译:用于在光纤无线系统上传输无线MIMO信号的新型光学单边带频率转换技术

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摘要

The fiber-wireless (FiWi) access network is a powerful hybrid architecture of optical backhaul and wireless front-end to support high data rates and throughput with minimal time delay. By using radio over fiber (ROF) technique, the optical fiber is well adapted to propagate multiple wireless services having different carrier frequencies. However, multiple wireless signals which have the same carrier frequency cannot propagate over a single optical fiber on the same wavelength, such as multi-input multi-output (MIMO) signals. A novel optical single-sideband frequency translation technique is designed and simulated to solve this problem. 240 Mb/s 802.11n MIMO signals are proposed to transport over FiWi system using the proposed approach at 2.4 GHz and 5.0 GHz carrier frequencies. The crosstalk between MIMO signals with the same carrier frequency is excluded, since each MIMO signal is carried on a specific optical wavelength. Error vector magnitude (EVM) values of -29.83 dB (for 2.4 GHz) and -28.41 dB (for 5.0 GHz) have been achieved for bit error rate (BER) 10 ~(-5) in the proposed FiWi system.
机译:光纤(FiWi)接入网络是光回程和无线前端的强大混合体系结构,可在短时间延迟的情况下支持高数据速率和吞吐量。通过使用光纤无线电(ROF)技术,光纤非常适合于传播具有不同载波频率的多个无线服务。但是,具有相同载频的多个无线信号不能在同一波长的单根光纤上传播,例如多输入多输出(MIMO)信号。设计并仿真了一种新颖的光学单边带频率转换技术来解决该问题。提出使用建议的方法在2.4 GHz和5.0 GHz载波频率上通过FiWi系统传输240 Mb / s 802.11n MIMO信号。由于每个MIMO信号都承载在特定的光波长上,因此排除了具有相同载频的MIMO信号之间的串扰。对于建议的FiWi系统中的误码率(BER)10〜(-5),已实现-29.83 dB(对于2.4 GHz)和-28.41 dB(对于5.0 GHz)的误差矢量幅度(EVM)值。

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