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Modelling of all-optical symmetric Mach-Zehnder switch with asymmetric coupler

机译:具有非对称耦合器的全光对称Mach-Zehnder开关的建模

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摘要

Ultra high-speed optical network is developing rapidly as growing capacity demand in telecommunication system is increasing. In these networks, it is desired to carry out switching, routing and processing in optical domain to avoid bottlenecks of optoelectronic conversions. Optical time-division multiplexing (OTDM) technique is one option to implement all optical networks. It provides a single data stream at a very high rate (>100Gbits/s) using a single wavelength. These networks will be based on optical packet switching. The success of these networks depends on how well switching and routing are being done at this very high speed. An all optical switch based on symmetric Mach-Zehnder (SMZ) with asymmetric coupler (60:40) is proposed. Its characteristics and switching window profiles will be investigated. The results show that symmetric Mach-Zehnder (SMZ) with asymmetric coupler gives a better contrast ratio rather than symmetric Mach-Zehnder (SMZ) with normal 50:50 coupler.
机译:随着电信系统容量需求的增长,超高速光网络正在迅速发展。在这些网络中,期望在光域中执行交换,路由和处理以避免光电转换的瓶颈。光时分复用(OTDM)技术是实现所有光网络的一种选择。它使用单个波长以很高的速率(> 100Gbits / s)提供单个数据流。这些网络将基于光分组交换。这些网络的成功取决于以如此高的速度完成切换和路由的情况。提出了一种基于非对称耦合器(60:40)的对称马赫曾德尔(SMZ)全光开关。将研究其特性和切换窗口轮廓。结果表明,与非对称耦合器的对称马赫曾德尔(SMZ)相比,普通50:50耦合器的对称马赫曾德尔(SMZ)具有更好的对比度。

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