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用于频谱效率 IMDD 系统的低复杂度实时 FBMC 发射机的演示。

Demonstration of a low-complexity real-time FBMC transmitter for a spectral-efficiency IMDD system.

作者信息

Chen Ming, Xu Jiaqiang, Li Hanwei, Liu Yi

出版信息

Opt Lett. 2024 Sep 15;49(18):5272-5275. doi: 10.1364/OL.536584.

DOI:10.1364/OL.536584
PMID:39270283
Abstract

Filter bank multi-carriers (FBMC) have higher spectral efficiency, lower out-of-band spectrum leakage, and stronger ability to resist synchronization errors compared to orthogonal frequency-division multiplexing (OFDM), which has been widely considered as a promising solution for short-reach applications, such as passive optical networks. However, the traditional fast Fourier transform (FFT)-based FBMC scheme has quite high implementation complexity for high-speed optical communications. In this work, we proposed a low-complexity real-time FBMC transmitter scheme enabled by a single fully parallel pruned inverse FFT and simplified short prototype filter-based polyphase networks for a low-cost intensity-modulation and direct-detection (IMDD) system. Compared to the OFDM transmitter, the proposed FBMC one occupies a similar number of look-up tables and registers but saves 21% of real multipliers, reduces latency by 16.2%, and increases the data rate by 12.5%. The real-time FBMC/OFDM signals are generated with a field programmable gate array chip and 6-bit 30-GSa/s digital-to-analog converter and are experimentally demonstrated in an IMDD system. After a 20-km standard single-mode fiber transmission, the negligible power penalty can be achieved with the proposed FBMC transmitter scheme at the bit error rate of 3.8e-3 compared to the OFDM counterpart.

摘要

与正交频分复用(OFDM)相比,滤波器组多载波(FBMC)具有更高的频谱效率、更低的带外频谱泄漏以及更强的抵抗同步误差能力。OFDM已被广泛认为是无源光网络等短距离应用的一种有前景的解决方案。然而,传统的基于快速傅里叶变换(FFT)的FBMC方案对于高速光通信而言具有相当高的实现复杂度。在这项工作中,我们针对低成本强度调制与直接检测(IMDD)系统,提出了一种低复杂度实时FBMC发射机方案,该方案由单个全并行剪枝逆FFT以及基于简化短原型滤波器的多相网络实现。与OFDM发射机相比,所提出的FBMC发射机占用的查找表和寄存器数量相近,但节省了21%的实数乘法器,延迟降低了16.2%,数据速率提高了12.5%。实时FBMC/OFDM信号通过现场可编程门阵列芯片和6位30 GSa/s数模转换器生成,并在IMDD系统中进行了实验验证。在20公里标准单模光纤传输后,与OFDM对应方案相比,所提出的FBMC发射机方案在误码率为3.8e-3时可实现可忽略不计的功率代价。

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