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Performance comparison of a fiber optic communication system based on optical OFDM and an optical OFDM-MIMO with Alamouti code by using numerical simulations

机译:基于光OFDM和Alamouti码的OFDM-MIMO光纤通信系统的数值模拟性能比较

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Space division multiplexing in multicore fibers is one of the most promise technologies in order to support transmissions of next-generation peta-to-exaflop-scale supercomputers and mega data centers, owing to advantages in terms of costs and space saving of the new optical fibers with multiple cores. Additionally, multicore fibers allow photonic signal processing in optical communication systems, taking advantage of the mode coupling phenomena. In this work, we numerically have simulated an optical MIMO-OFDM (multiple-input multiple-output orthogonal frequency division multiplexing) by using the coded Alamouti to be transmitted through a twin-core fiber with low coupling. Furthermore, an optical OFDM is transmitted through a core of a singlemode fiber, using pilot-aided channel estimation. We compare the transmission performance in the twin-core fiber and in the singlemode fiber taking into account numerical results of the bit-error rate, considering linear propagation, and Gaussian noise through an optical fiber link. We carry out an optical fiber transmission of OFDM frames using 8 PSK and 16 QAM, with bit rates values of 130 Gb/s and 170 Gb/s, respectively. We obtain a penalty around 4 dB for the 8 PSK transmissions, after 100 km of linear fiber optic propagation for both singlemode and twin core fiber. We obtain a penalty around 6 dB for the 16 QAM transmissions, with linear propagation after 100 km of optical fiber. The transmission in a two-core fiber by using Alamouti coded OFDM-MIMO exhibits a better performance, offering a good alternative in the mitigation of fiber impairments, allowing to expand Alamouti coded in multichannel systems spatially multiplexed in multicore fibers.
机译:多核光纤中的空分复用是最有前途的技术之一,因为它在成本和节省新光纤方面都具有优势,因此可以支持下一代千万亿级规模的超级计算机和大型数据中心的传输有多个核心。另外,多芯光纤可以利用模式耦合现象在光通信系统中进行光子信号处理。在这项工作中,我们使用编码的Alamouti通过低耦合的双芯光纤传输,在数值上模拟了光学MIMO-OFDM(多输入多输出正交频分复用)。此外,使用导频辅助的信道估计,通过单模光纤的核心传输光OFDM。考虑到误码率的数值结果,并考虑了线性传播和通过光纤链路的高斯噪声,我们比较了双芯光纤和单模光纤的传输性能。我们使用8 PSK和16 QAM进行OFDM帧的光纤传输,比特率分别为130 Gb / s和170 Gb / s。对于单模和双芯光纤,在100 km的线性光纤传播之后,对于8个PSK传输,我们将获得约4 dB的损失。对于16个QAM传输,我们获得约6 dB的损失,在100 km的光纤之后线性传播。通过使用Alamouti编码的OFDM-MIMO在两芯光纤中的传输表现出更好的性能,为缓解光纤损伤提供了一个很好的选择,从而可以扩展在空间上多路复用在多芯光纤中的多通道系统中编码的Alamouti。

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