首页|基于联合损伤补偿方法的超奈奎斯特模分复用无源光网络

基于联合损伤补偿方法的超奈奎斯特模分复用无源光网络

扫码查看
为了利用模分复用(MDM)和超奈奎斯特(FTN)传输技术提高无源光网络(PON)的传输容量和频谱效率,同时也为了保证系统具有良好的误码率性能,本文提出了基于矩阵分解预编码和MIMO预均衡器的联合损伤补偿方法,用于消除超奈奎斯特模分复用无源光网络(FTN-MDM-PON)中存在的MDM信道损伤和FTN传输损伤。对于矩阵分解预编码技术,本文采用奇异值分解(SVD)预编码、带功率预分配的奇异值分解(SVDPA)预编码和Cholesky分解(Chol)预编码方式,分别将它们与MIMO预均衡器结合后对比三种联合方案降低FTN-MDM-PON系统误码率的效果。仿真实验结果表明:采用SVD PA预编码、Chol预编码与MIMO预均衡器结合的联合损伤补偿方法时,FTN-MDM-PON系统中的4个线偏振(LP)模式的FTN信号经过5 km少模光纤(FMF)传输后,接收端误码率能够低于7%硬判决-前向纠错(HD-FEC)门限3。8×10-3。其中,Chol预编码与MIMO预均衡器结合的联合补偿方案降低误码率的效果最优,相比于表现较优的SVD PA预编码结合MIMO预均衡器方案,接收光灵敏度提升了 1 dB~3dB。
Faster-than-Nyquist Mode Division Multiplexing Passive Optical Network Based on Joint Damage Compensation Method
Objective The explosive development of virtual reality applications,ultra-high-definition videos,and intelligent internet of things(IoT)devices has brought new challenges to existing fiber access network solutions.As the main scheme of optical access networks,widely deployed passive optical networks based on time division multiplexing(TDM),wavelength division multiplexing(WDM),and polarization multiplexing(PDM)are currently limited by the communication capacity of single-mode fibers(SMFs)and the signal orthogonality of the traditional Nyquist transmission mode.To further improve system capacity and spectral efficiency,we proposed a faster-than-Nyquist mode-division multiplexing passive optical network(FTN-MDM-PON)that combines mode-division multiplexing(MDM)and faster-than-Nyquist(FTN)transmission technologies.However,PON based on the MDM channel and FTN transmission mode exhibits mode crosstalk caused by low-mode fiber transmission and intersymbol interference(ISI)caused by FTN transmission.Because the FTN-MDM-PON divides users by mode,the mode crosstalk in the low-mode fiber(FMF)causes the user signals loaded on different modes to interfere with each other.The ISI introduced by the FTN transmission causes adjacent symbols influence each other at the sampling decision time.To mitigate the two types of impairments in FTN-MDM-PONs,we proposed a joint damage compensation method based on matrix decomposition precoding and MIMO pre-equalization and built a simulation system in the VPI Transmission Maker for verification.Methods Because the PON downlink is a point-to-multipoint structure,it is impossible to simultaneously receive and eliminate mode crosstalk for all modes on the receivers of user-side optical network units(ONUs).In addition,the ISI introduced by FTN transmission technology is determined by the rolling-down factor of the pulse-forming filter and the time-domain compression factor,which is determined at the end of the transmitter.Therefore,we propose a joint damage compensation method based on matrix-decomposition precoding and MIMO pre-equalization.For matrix decomposition precoding techniques,we used singular value decomposition(SVD)precoding,singular value decomposition with power allocation(SVD PA)precoding,and Cholesky decomposition(Chol)precoding and combine them with the MIMO pre-equalizer.The matrix decomposition precoding technique can obtain the precoding matrix for the sending signal and the decoding matrix for the receiving signal through the matrix decomposition of the interference matrix to realize the diagonalization of the interference matrix to eliminate the ISI.After adding the frame header,the transmission symbol sequence was precoded using the matrix decomposition precoding method,and then transmitted by the FMF.We inserted a time-division training sequence into the frame header to obtain the channel-impulse response of the downlink.The time-division training sequence was divided into multiple time slots of the same number as the mode;each time slot corresponds to only one mode and contains the corresponding time-slot training symbol sequence.After separating the time-division training sequence of different user data frame headers at the receiver end,we adopted a training sequence-based least mean square(LMS)adaptive algorithm for channel estimation.The channel estimate was fed back to the transmitter for MIMO pre-equalization.The transmitter-side MIMO equalizer used in this study had a linear structure and used the feedback channel impulse response to calculate the tap coefficients based on the zero-forcing(ZF)criterion.Results and Discussions Based on the FTN-MDM-PON simulation system,we analyzed the performance of three combined damage compensation methods using different matrix decomposition precoding methods and a MIMO pre-equalizer.The curves of bit error rate relative to the received optical power when the time-domain compression factors of the mode signals were 0.8 and 0.9 are shown in(Figs.7 and 8).Simulation results show that in the FTN-MDM-PON system with four linear polarization(LP)modes,FTN signals with time-domain compression factors of 0.8 and 0.9 are transmitted through 5 km low-mode fiber(FMF),and the received optical power ranges from-40 dBm to-26 dBm.The combined damage compensation method of SVD PA precoding or Choi precoding combined with MIMO pre-equalizer reduces the bit error rate of each mode(LP01,LP11,LP21,LP31)below the 7%hard decision forward error correction(HD-FEC)threshold of 3.8× 10-3.Among the three combined damage compensation methods,Choi precoding and SVD-PA precoding combined with a MIMO pre-equalizer exhibit better improvement effects than SVD precoding combined with a MIMO pre-equalizer.When SVD PA precoding combined MIMO pre-equalizer is used for joint damage compensation,the four LP mode signals reach 7%HD-FEC decision threshold when the received optical power is greater than-36 dBm.The combined damage compensation method of Choi precoding combined with MIMO pre-equalizer,compared with the SVD PA precoding combined with MIMO pre-equalizer,when the time domain compression factor is 0.8,the sensitivity of the four mode signals increase by 3.0 dB,2.4 dB,2.0 dB,and 1.3 dB.When the time domain compression factor is 0.9,the increases are 1.1 dB,2.1 dB,2.5 dB,and 2.1 dB.With a decrease in the time-domain compression factor,the interval between adjacent symbols in the FTN signal becomes narrower after time-domain compression,and the intersymbol crosstalk becomes more severe.When the time domain compression factor of each mode signal ranges 0.3 to 0.9,the relationship curve between bit error rate and received optical power is shown in(Figs.9 and 10).The results show that when the received optical power is greater than-34 dBm and the time-domain compression factor of FTN signal is ≥0.6,the combined damage compensation method based on SVD PA precoding and Chol precoding combined with MIMO pre-equalizer effectively reduce the bit error rate,and the bit error rate of FTN signal in four LP modes is below the threshold.The abovementioned results show that the combined damage compensation method can effectively compensate for MDM channel damage and FTN transmission damage in the FTN-MDM-PON system,and the combined damage compensation method with Chol precoding and MIMO pre-equalizer exhibits the best performance among the three precoding methods.Conclusions We proposed a joint damage compensation method based on matrix decomposition precoding combined with a MIMO pre-equalizer and built an FTN-MDM-PON downlink simulation system to verify the performance of this method in reducing the bit error rate of the system.We used SVD precoding,SVD PA precoding,Chol precoding,and a MIMO pre-equalizer to explore the performance of the three combined damage compensation methods in reducing the bit error rate.Moreover,the bit error rate performance of the FTN-MDM-PON using the joint compensation method was compared with that of the MDM-PON using MIMO pre-equalization only.Results show when using 4 LP modes(LP01,LP11,LP21,LP31)for 4×25 Gbaud FTN QPSK signal transmission,when the time domain compression factor is 0.8,by using the combined damage compensation method of SVD PA precoding and Chol precoding combined with MIMO pre-equalizer,the optical power of four LP mode signals only requires-36 dBm and-39 dBm,respectively,to reach 7%HD-FEC.When the time-domain compression factor is 0.9,the bit error rate performance of the combined damage compensation method using Chol precoding and the MIMO pre-equalizer is close to that of the MDM-PON system using MIMO pre-equalization only.The abovementioned results show that the proposed combined damage compensation method can effectively mitigate mode crosstalk and ISI in FTN-MDM-PON systems.

optical communicationspassive optical networkmode division multiplexingmultiple-input multiple-outputfaster-than-Nyquistprecodingpre-equalization

张倩武、詹书成、刘博洋、陈冠文、李智宇、欧阳远江、曹炳尧、李正璇、吴雅婷

展开 >

上海大学通信与信息工程学院特种光纤与光接入网重点实验室,特种光纤与先进通信国际合作联合实验室,上海 200444

光通信 无源光网络 模分复用 多输入多输出 超奈奎斯特 预编码 预均衡

国家重点研发计划上海市科委自主项目上海市科委自主项目上海市科委自主项目上海市自然科学基金高等学校学科创新引智计划(111计划)

2021YFB290080022511100902225111005022051110240020ZR1420900D20031

2024

中国激光
中国光学学会 中科院上海光机所

中国激光

CSTPCD北大核心
影响因子:2.204
ISSN:0258-7025
年,卷(期):2024.51(5)