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Carrier recovery and reuse in full-duplex radio over fiber 60GHz millimeter-wave system based on frequency quadrupling

机译:基于频率四压缩的纤维60GHz毫米波系统的全双工无线电载波回收和重用

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This paper presents a novel scheme for implementation of Orthogonal Frequency Division Multiplexing (OFDM) based Radio over Fiber (RoF) systems. In the proposed method, both optical and RF carrier signals are extracted from the received signals at base station (BS) and customer unit (CU) respectively. In the downlink, a dual tone optical millimeter wave signal carrier is generated by a local oscillator using a Mach-Zehnder modulator. The 4-QAM intermediate frequency (IF) signal is OFDM modulated and then modulated on one of the two tones with single side band (SSB) modulation at the central station. A high speed photodiode is used at the base station to detect the SSB optical millimeter wave signal. The reserved uplink optical carrier is separated by optimized filtering. The reuse of the extracted carrier signals help to reduce the complexity of both the stations. The need of high frequency oscillators and the laser diodes at BS and CU are eliminated by this method.
机译:本文提出了一种用于实现基于正交频分复用(基于OFDM)的无线电(ROF)系统的新方案。在所提出的方法中,光学和RF载波信号分别从基站(BS)和客户单元(CU)处的接收信号中提取。在下行链路中,使用Mach-Zehnder调制器由本地振荡器产生双音光毫米波信号载波。 4-QAM中频(IF)信号是OFDM调制,然后在中央站的单侧带(SSB)调制中的两个音调中的一个上调制。在基站使用高速光电二极管以检测SSB光学毫米波信号。保留的上行链路光学载波通过优化的滤波分离。提取的载波信号的重用有助于降低站立的复杂性。这种方法消除了BS和Cu的高频振荡器和激光二极管的需要。

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