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Optical phase transmultiplexing to support traffic grooming in transparent optical networks

机译:光相位多路复用以支持透明光网络中的流量疏导

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Advanced phase modulation formats, such as differential binary phase-shift keying (DPSK), differential quadrature phase-shift keying (DQPSK), and differential eight-ary phase-shift keying (D8PSK), and so on, have attracted considerable research attention as promising candidates for future optical communication systems. To accommodate different requirements such as nonlinear and dispersion tolerance, implementation complexity or spectral efficiency in different regions of networks, several different modulation formats are expected to coexist in the future optical network. For example, low-speed binary modulation formats may be deployed in the edge networks such as metro or access networks, whereas high-speed or multi-level modulation formats are preferred to be employed at the core networks to support high-speed long-haul transmission. To support the transparent cross-connection among various networks, and the traffic grooming from low-speed edge networks to high-speed core networks, optical phase transmultiplexing technology is highly desirable.rnIn this paper, we report an all-optical phase interleaving technology to phase-multiplex 3×10-Gb/s differential phase-shift keying (DPSK) wavelength-division multiplexing (WDM) signals to a single 30-Gb/s DPSK, and an optical phase-modulated format conversion scheme to convert 2×10-Gb/s DPSK WDM to a single quadrature 20-Gb/s differential quadrature phase-shift keying (DQPSK). The proposed schemes are based on four-wave mixing effect in highly-nonlinear fiber. Different from conventional optical signal processing schemes, the proposed schemes are achieved in optical phase domain directly. Experiments were performed to verify the feasibility of the proposed schemes. Both of them could be applied in transparent optical networks to act as an optical phase transmultiplexer enabling traffic grooming and cross-connection among different networks.
机译:先进的相位调制格式,例如差分二进制相移键控(DPSK),差分正交相移键控(DQPSK)和差分八进制相移键控(D8PSK)等,已经引起了广泛的研究关注。有希望成为未来光通信系统的候选人。为了适应不同的要求,例如非线性和色散容限,实现复杂性或网络不同区域中的频谱效率,在未来的光网络中,预计将有几种不同的调制格式共存。例如,可以在诸如城域网或接入网之类的边缘网络中部署低速二进制调制格式,而在核心网络上优选采用高速或多级调制格式来支持高速长途传输传播。为了支持各种网络之间的透明交叉连接以及从低速边缘网络到高速核心网络的流量疏导,非常需要光相位多路复用技术。相位复用3×10 Gb / s差分相移键控(DPSK)波分复用(WDM)信号到单个30 Gb / s DPSK,以及光相调制格式转换方案来转换2×10 -Gb / s DPSK WDM转换为单正交20-Gb / s差分正交相移键控(DQPSK)。所提出的方案是基于高度非线性光纤中的四波混频效应。与常规的光信号处理方案不同,所提出的方案直接在光相位域中实现。进行实验以验证所提出方案的可行性。它们都可以应用于透明光网络中,充当光相位多路复用器,从而实现流量疏导和不同网络之间的交叉连接。

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