Wang Yuanquan, Chien Hung-Chang, Guo HaiChao, Yu Jianjun, Chang Gee-Kung, Chi Nan
Opt Lett. 2016 Jun 1;41(11):2557-60. doi: 10.1364/OL.41.002557.
In this study, a novel photonic vector signal at frequency (RF) bands generation scheme based on the beating of double single sidebands (SSBs) is proposed and experimentally demonstrated. The double SSBs carry separate constant- or multi-amplitude quadrature-amplitude-modulation vector signals are generated from a single I/Q modulator. By adopting phase and amplitude precoding, different constellations can be generated, such as 3-ary phase-shift keying (PSK), 4-PSK, 7-PSK, 8-PSK, and so on. In this work, 10-Gbaud 7-PSK vector signal generation at 20 GHz enabled by two precoded 4-PSK SSB signals via a single I/Q modulator is theoretically and experimentally investigated. Compared to a single-drive Mach-Zehnder modulator or conventional I/Q modulator-based photonic vector signal generation scheme, the spectrum efficiency can be doubled. Differential coding is also implemented at the transmitter side for accurate demodulation of 7-PSK into two 4-PSK signals. The bit-error ratio for 10-Gbaud 7-PSK vector signals can be under hard-decision forward-error-correction threshold of 3.8×10 after 10 km standard single-mode fiber transmission.
在本研究中,提出并通过实验验证了一种基于双边带(SSB)拍频的新型射频(RF)频段光子矢量信号生成方案。两个单边带携带从单个I/Q调制器生成的单独的恒定或多幅度正交幅度调制矢量信号。通过采用相位和幅度预编码,可以生成不同的星座图,如3进制相移键控(PSK)、4-PSK、7-PSK、8-PSK等。在这项工作中,理论和实验研究了通过单个I/Q调制器由两个预编码的4-PSK单边带信号在20 GHz实现10 Gbaud 7-PSK矢量信号生成。与单驱动马赫-曾德尔调制器或传统的基于I/Q调制器的光子矢量信号生成方案相比,频谱效率可提高一倍。在发射端还实施了差分编码,以便将7-PSK准确解调为两个4-PSK信号。在10 km标准单模光纤传输后,10 Gbaud 7-PSK矢量信号的误码率可以低于3.8×10的硬判决前向纠错阈值。