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基于单个光电二极管接收独立四路单边带信号的直接检测系统。

Direct detection system based on a single photodiode receiving the independent quadruple-SSB signal.

作者信息

Wang Leilei, Xiao Jiangnan, Zhou Ye, Ming Jun, Wu Dongyan, Chen Yilin, Hu Zheng, Zhao Li

出版信息

Opt Express. 2023 Jul 3;31(14):22405-22414. doi: 10.1364/OE.494409.

Abstract

We propose and verify a direct detection (DD) system based on a single photodiode (PD) receiving the independent quadruple-single-sideband (quadruple-SSB) signal. At the transmitter side, an I/Q modulator is utilized to modulate the independent quadruple-SSB signal, the signal is received via one PD without optical bandpass filters (OBPFs). Then, the independent quadruple-SSB signal is separated into four sideband signals by subsequent digital signal processing (DSP). In the scheme of back-to-back (BTB), 1-km and 5-km standard single-mode fiber (SSMF) transmission, the four sideband signals are extensively studied and analyzed. The simulation results show that the bit error rate (BER) of 1Gbaud, 2Gbaud and 4Gbaud independent quadruple-SSB signal can reach the 7% hard-decision forward error correction (HD-FEC) threshold of 3.8 × 10 when the received optical power (ROP) is -21, -20 and -17.2 dBm in 5-km SSMF transmission. Meanwhile, as the frequency interval gets wider, the crosstalk in the sideband signal reception can be mitigated and the BER decreases. This scheme for the first time demonstrates that the independent quadruple-SSB signal can further expand the system transmission capacity and enhance the spectrum efficiency. Our simplified independent quadruple-SSB signal direct detection system has a simple structure and high spectral efficiency, which will have a promising future in high-speed optical communication.

摘要

我们提出并验证了一种基于单个光电二极管(PD)接收独立四阶单边带(quadruple-SSB)信号的直接检测(DD)系统。在发射端,利用I/Q调制器调制独立四阶单边带信号,该信号通过一个没有光带通滤波器(OBPF)的PD进行接收。然后,通过后续的数字信号处理(DSP)将独立四阶单边带信号分离为四个边带信号。在背对背(BTB)、1公里和5公里标准单模光纤(SSMF)传输方案中,对这四个边带信号进行了广泛研究和分析。仿真结果表明,在5公里SSMF传输中,当接收光功率(ROP)分别为-21、-20和-17.2 dBm时,1Gbaud、2Gbaud和4Gbaud独立四阶单边带信号的误码率(BER)可以达到3.8×10的7%硬判决前向纠错(HD-FEC)阈值。同时,随着频率间隔变宽,边带信号接收中的串扰可以得到缓解,BER降低。该方案首次证明了独立四阶单边带信号可以进一步扩展系统传输容量并提高频谱效率。我们简化的独立四阶单边带信号直接检测系统结构简单,频谱效率高,在高速光通信中将具有广阔的前景。

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