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Design of a Novel Multifunctional 60-GHz-Band Radio-over-System

机译:新型多功能60 GHz频带无线系统设计

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摘要

A novel multifunctional 60-GHz-band radio-over-fiber(RoF) system based on a Dual-Parallel Mach-Zehnder Modulator (DPMZM) is theoretically investigated and simulated. In this scheme, downlink signals of the 60GHz optical-wireless signal generated by means of subcarrier-multiplexing (SCM) technique to carry 2.5Gb/s differential phase-shift-keying(DPSK) by the 30GHz local oscillator in central station(CS) and 10GHz wireline baseband signal are simultaneously transmitted; the 60GHz remote local oscillator(LO) signal for down-conversion of uplink radio frequency(RF) signal is generated; and the uplink data of 1.25Gb/s baseband signal transmission is realized by remodulation of downlink DPSK signal without the need of additional light source is realized. Thus the configuration of base station(BS) in full-duplex RoF systems is simplified and the cost is saved. The simulation system is set up to testify the transmission performance of these signals. The signals with multiple services are successfully transmitted over 30km single-mode fiber.
机译:理论上研究和仿真了基于双并行马赫曾德尔调制器(DPMZM)的新型多功能60 GHz频带光纤无线电(RoF)系统。在此方案中,通过副载波复用(SCM)技术生成的60GHz光无线信号的下行链路信号由中心站(CS)中的30GHz本地振荡器承载2.5Gb / s差分相移键控(DPSK)同时传输10GHz有线基带信号;产生用于上行链路射频信号的下变频的60GHz远程本地振荡器信号。通过对下行DPSK信号进行重新调制,无需额外的光源即可实现1.25Gb / s基带信号传输的上行数据。因此,简化了全双工RoF系统中的基站(BS)的配置并节省了成本。设置仿真系统以验证这些信号的传输性能。具有多种服务的信号已成功通过30公里的单模光纤传输。

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