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Advanced Digital Signal Processing for Short-haul and Access Network

机译:用于短途和接入网络的先进数字信号处理

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Digital signal processing (DSP) has been proved to be a successful technology recently in high speed and high spectrum-efficiency optical short-haul and access network, which enables high performances based on digital equalizations and compensations. In this paper, we investigate advanced DSP at the transmitter and receiver side for signal pre-equalization and post-equalization in an optical access network. A novel DSP-based digital and optical pre-equalization scheme has been proposed for bandwidth-limited high speed short-distance communication system, which is based on the feedback of receiver-side adaptive equalizers, such as least-mean-squares (LMS) algorithm and constant or multi-modulus algorithms (CMA, MMA). Based on this scheme, we experimentally demonstrate 400GE on a single optical carrier based on the highest ETDM 120-GBaud PDM-PAM-4 signal, using one external modulator and coherent detection. A line rate of 480-Gb/s is achieved, which enables 20% forward-error correction (FEC) overhead to keep the 400-Gb/s net information rate. The performance after fiber transmission shows large margin for both short range and metro/regional networks. We also extend the advanced DSP for short haul optical access networks by using high order QAMs. We propose and demonstrate a high speed multi-band CAP-WDM-PON system on intensity modulation, direct detection and digital equalizations. A hybrid modified cascaded MMA post-equalization schemes are used to equalize the multi-band CAP-mQAM signals. Using this scheme, we successfully demonstrates 550Gb/s high capacity WDM-PON system with 11 WDM channels, 55 sub-bands, and 10-Gb/s per user in the downstream over 40-km SMF.
机译:数字信号处理(DSP)已被证明最近是一个成功的技术在高速和高频谱效率的光学短途和接入网络,这使得基于数字均衡化和补偿高性能。在本文中,我们研究在发射器和接收器侧信号预均衡和后均衡的光接入网络中先进的DSP。一种新的基于DSP的数字和光学预均衡方案已经被提出用于带宽受限的高速短距离通信系统,该系统是基于接收器侧的自适应均衡器的反馈,诸如最小均方(LMS)算法和恒定或多模数算法(CMA,MMA)。根据该方案,我们在实验上证实基于最高ETDM 120波特PDM-PAM-4信号的单个的光载波上400GE,使用一个外部调制器和相干检测。 480千兆位的线速度/ S是实现的,这使得20%的前向纠错(FEC)的开销,以保持400-Gb / s的网络信息速率。后光纤传输节目的性能两者短程和城域/区域网络大余量。我们还通过使用高阶QAM上延长短途光接入网络的先进的DSP。我们提出并展示于强度调制,直接检测和数字均衡化高速多频带CAP-WDM-PON系统。一种混合改性级联MMA后均衡方案用来均衡所述多频带CAP-MQAM信号。使用该方案,我们成功地证明了用11个的WDM信道,55子带,和10千兆位/每用户在下游超过40公里的SMFš550Gb / s的高容量WDM-PON系统。

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