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Real-time upstream services demonstration in orthogonal frequency division multiplexing-passive optical network system

机译:正交频分复用-无源光网络系统中的实时上行业务演示

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Real-time digital service and multimedia service upstream transmission in Digital Signal Processing (DSP)-based Orthogonal Frequency Division Multiplexing-Passive Optical Network (OFDM-PON) is experimentally demonstrated with Centralised Light Source (CLS) configuration in this paper. After transmitted over 25 km Standard Single Mode Fibre (SSMF) with −16.5 dBm optical power at receiver, the Bit Error Rate (BER) is 9.5 × 10−11. The implementations of digital domain up-conversion and down-conversion based on Field Programmable Gate Array (FPGA) are introduced, which can reduce the cost of In-ph-ase and Quadrature (IQ) radio frequency mixers utilised at transmitter and receiver. A carrier synchronization algorithm is implemented for compensating carrier offset. A channel equalization algorithm is adopted for compensating the damage of channel. A new structure of Frequency Synchronization Unit (FSU) designed in FPGA is also proposed to cope with the frequency shifting at receiver.
机译:本文利用集中光源(CLS)配置,对基于数字信号处理(DSP)的正交频分复用-无源光网络(OFDM-PON)中的实时数字服务和多媒体服务上游传输进行了演示。在接收器上以-16.5 dBm的光功率通过25 km的标准单模光纤(SSMF)传输后,误码率(BER)为9.5×10 -11 。介绍了基于现场可编程门阵列(FPGA)的数字域上转换和下转换的实现方式,可以降低发送端和接收端的相位和正交(IQ)射频混频器的成本。实现载波同步算法以补偿载波偏移。采用信道均衡算法来补偿信道损伤。还提出了一种在FPGA中设计的频率同步单元(FSU)的新结构,以应对接收机的频率偏移。

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