为实现高速光通信系统高效低成本测试的目标,基于施密特正交化过程(GSOP,Gram-Schmidt orthogonalizationprocedure),提出了一种适用于偏振复用—多进制正交幅度调制(PDM-MQAM)相干光通信系统的正交不平衡损伤估计(IQ-ImEstimation, IQ ...为实现高速光通信系统高效低成本测试的目标,基于施密特正交化过程(GSOP,Gram-Schmidt orthogonalizationprocedure),提出了一种适用于偏振复用—多进制正交幅度调制(PDM-MQAM)相干光通信系统的正交不平衡损伤估计(IQ-ImEstimation, IQ imbalance estimation)算法。根据同相信号和正交信号两路信号功率关系及相关性,设计幅度失配估计和相位失配估计2种方案。通过对34GBaudPDM-MQAM相干光通信系统进行仿真与实验,验证了IQ-ImEstimation算法的正确性和有效性。展开更多
A pilot pattern across two orthogonal frequency division multiplexing OFDM symbols with a special structure is designed for the channel estimation of OFDM systems with inphase and quadrature IQ imbalances at the recei...A pilot pattern across two orthogonal frequency division multiplexing OFDM symbols with a special structure is designed for the channel estimation of OFDM systems with inphase and quadrature IQ imbalances at the receiver.A high-efficiency time-domain TD least square LS channel estimator and a low-complexity frequency-domain Gaussian elimination GE equalizer are proposed to eliminate IQ distortion.The former estimator can significantly suppress channel noise by a factor N/L+1 over the existing frequency-domain FD LS where N and L+1 are the total number of subcarriers and the length of cyclic prefix and the proposed GE requires only 2N complex multiplications per OFDM symbol.Simulation results show that by exploiting the TD property of the channel the proposed TD-LS channel estimator obtains a significant signal-to-noise ratio gain over the existing FD-LS one whereas the proposed low-complexity GE compensation achieves the same bit error rate BER performance as the existing LS one.展开更多
文摘为实现高速光通信系统高效低成本测试的目标,基于施密特正交化过程(GSOP,Gram-Schmidt orthogonalizationprocedure),提出了一种适用于偏振复用—多进制正交幅度调制(PDM-MQAM)相干光通信系统的正交不平衡损伤估计(IQ-ImEstimation, IQ imbalance estimation)算法。根据同相信号和正交信号两路信号功率关系及相关性,设计幅度失配估计和相位失配估计2种方案。通过对34GBaudPDM-MQAM相干光通信系统进行仿真与实验,验证了IQ-ImEstimation算法的正确性和有效性。
基金The Open Research Fund of National Mobile Communications Research Laboratory of Southeast University(No.2013D02)the Fundamental Research Funds for the Central Universities(No.30920130122004)the National Natural Science Foundation of China(No.61271230,61472190)
文摘A pilot pattern across two orthogonal frequency division multiplexing OFDM symbols with a special structure is designed for the channel estimation of OFDM systems with inphase and quadrature IQ imbalances at the receiver.A high-efficiency time-domain TD least square LS channel estimator and a low-complexity frequency-domain Gaussian elimination GE equalizer are proposed to eliminate IQ distortion.The former estimator can significantly suppress channel noise by a factor N/L+1 over the existing frequency-domain FD LS where N and L+1 are the total number of subcarriers and the length of cyclic prefix and the proposed GE requires only 2N complex multiplications per OFDM symbol.Simulation results show that by exploiting the TD property of the channel the proposed TD-LS channel estimator obtains a significant signal-to-noise ratio gain over the existing FD-LS one whereas the proposed low-complexity GE compensation achieves the same bit error rate BER performance as the existing LS one.