Li Xinying, Yu Jianjun
Opt Lett. 2016 Jul 1;41(13):3138-41. doi: 10.1364/OL.41.003138.
We propose a novel and simple 2×2 multiple-input multiple-output (MIMO) optical-wireless integration system, in which optical independent-sideband modulation enabled by an in-phase/quadrature (I/Q) modulator, instead of optical polarization multiplexing, is used to assist the simultaneous generation of two wireless millimeter-wave (mm-wave) signals. Software-based digital signal processing is used to generate the driving signal for the I/Q modulator, the output of which is two independent single-sideband optical vector signals located at two sides of a large central optical carrier. Based on our proposed 2×2 MIMO optical-wireless integration system, we experimentally demonstrate the simultaneous generation and 2×2 MIMO wireless delivery of two independent 40-GHz quadrature-phase-shift-keying (QPSK) wireless mm-wave signals. Each 40-GHz QPSK wireless mm-wave signal can carry up to 4-Gbaud transmitter data with a bit-error ratio less than the hard-decision forward-error-correction threshold of 3.8×10.
我们提出了一种新颖且简单的2×2多输入多输出(MIMO)光无线集成系统,其中使用由同相/正交(I/Q)调制器实现的光独立边带调制,而非光偏振复用,来辅助同时生成两个无线毫米波(mm波)信号。基于软件的数字信号处理用于生成I/Q调制器的驱动信号,其输出是位于一个大的中心光载波两侧的两个独立单边带光矢量信号。基于我们提出的2×2 MIMO光无线集成系统,我们通过实验展示了两个独立的40吉赫兹正交相移键控(QPSK)无线毫米波信号的同时生成和2×2 MIMO无线传输。每个40吉赫兹QPSK无线毫米波信号能够携带高达4千兆波特的发射机数据,误码率低于3.8×10的硬判决前向纠错阈值。