Feng Kai-Ming, Wu Chung-Yu, Wen Yu-Hsiang
Institute of Communications Engineering, National Tsing Hua University, Hsinchu, Taiwan.
Opt Express. 2012 Jan 16;20(2):712-7. doi: 10.1364/OE.20.000712.
By utilizing the cyclic filtering function of an NxN arrayed waveguide grating (AWG), we propose and experimentally demonstrate a novel multi-function all optical packet switching (OPS) architecture by applying a periodical wavelength arrangement between the AWG in the optical routing/buffering unit and a set of wideband optical filters in the switched output ports to achieve the desired routing and buffering functions. The proposed OPS employs only one tunable wavelength converter at the input port to convert the input wavelength to a designated wavelength which reduces the number of active optical components and thus the complexity of the traffic control is simplified in the OPS. With the proposed OPS architecture, multiple optical packet switching functions, including arbitrary packet switching and buffering, first-in-first-out (FIFO) packet multiplexing, packet demultiplexing and packet add/drop multiplexing, have been successfully demonstrated.
通过利用N×N阵列波导光栅(AWG)的循环滤波功能,我们提出并通过在光路由/缓冲单元中的AWG与交换输出端口中的一组宽带光滤波器之间应用周期性波长排列来实现所需的路由和缓冲功能,从而通过实验证明了一种新颖的多功能全光分组交换(OPS)架构。所提出的OPS在输入端口仅采用一个可调谐波长转换器将输入波长转换为指定波长,这减少了有源光学组件的数量,从而简化了OPS中的流量控制复杂性。利用所提出的OPS架构,已经成功演示了多种光分组交换功能,包括任意分组交换和缓冲、先进先出(FIFO)分组复用、分组解复用以及分组分插复用。