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Self-routing design of nonblocking WDM switches based on arrayed waveguide grating

机译:基于阵列波导光栅的无阻塞WDM开关的自路由设计

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Arrayed waveguide grating (AWG) is a promising technology for constructing high-speed large-capacity WDM switches, because it can switch fast, is scalable to large size and consumes little power. To take the full advantages of high-speed AWG, the routing control of a massive AWG-based switch should be as simple as possible. In this paper, we focus on the self-routing design of AWG-based switches with O(1) constant routing complexity and propose a novel construction of self-routing AWG switches that can guarantee the attractive nonblocking property for both the wavelength-to-wavelength and wavelength-to-fiber request models. It is expected that the proposed construction will be useful for the design and all-optical implementation of future ultra high-speed optical packet/burst switches.
机译:阵列波导光栅(AWG)是一种用于构建高速大容量WDM交换机的有前途的技术,因为它可以快速切换,可扩展到大尺寸且消耗很少的功率。为了充分利用高速AWG的优势,基于AWG的大型交换机的路由控制应尽可能简单。在本文中,我们将重点放在具有O(1)恒定布线复杂度的基于AWG的交换机的自路由设计上,并提出一种新颖的自路由AWG交换机结构,该结构可确保在波长到波长范围内都具有吸引人的无阻塞特性。波长和波长到光纤的请求模型。预计拟议的构造将对未来的超高速光分组/突发交换机的设计和全光实现很有用。

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