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Digital Carrier Recovery Algorithm Simulation of 60 GHz RoF system

机译:60 GHz RoF系统的数字载波恢复算法仿真

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In this paper, a digital carrier recovery for a 60 GHz Radio-over-Fiber (RoF) system was researched. The system consists of three stages: optical 60 GHz carrier generation and mPSK data modulation with data rates up to 10 Gbit/s, simplex optical receiver (optical band pass filter and photo diode), and 60 GHz electrical coherent IQ down conversion. After the down conversion, the signal is digitized and the carrier recovery is performed to compensate for the electrical LO frequency offsets and phase drifts. The capability of using the well-established Viterbi & Viterbi algorithm as a carrier recovery solution for a 60 GHz RoF system was investigated. The proposed system was simulated by VPItransmissionMaker. The resulting data from the scenario has been processed by a MATLAB implementation of the V&V algorithm. The eye diagrams, constellation plots, phase plots, and cross correlation plots all verified the capability of the algorithm to compensate the phase shift as well as frequency shifts up to 5 MHz in our implementation, and emphasized the power of the algorithm in synchronization for RoF systems.
机译:本文研究了60 GHz光纤无线电(RoF)系统的数字载波恢复。该系统包括三个阶段:60 GHz光学载波生成和mPSK数据调制,数据速率高达10 Gbit / s,单面光接收器(光学带通滤波器和光电二极管),以及60 GHz电相干IQ下变频。下变频后,信号被数字化,并执行载波恢复以补偿电LO频率偏移和相位漂移。研究了将成熟的Viterbi&Viterbi算法用作60 GHz RoF系统的载波恢复解决方案的能力。所提出的系统是由VPItransmissionMaker仿真的。场景产生的数据已通过V&V算法的MATLAB实现进行了处理。眼图,星座图,相位图和互相关图均在我们的实现中验证了算法补偿相移以及高达5 MHz频率偏移的能力,并强调了RoF同步算法的功能系统。

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