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Assessment of Photonic Switches as Future Replacement For Electronic Cross-Connect Switches

机译:作为电子交叉开关的未来替代,光子开关的评估

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This paper presents the future of optical networking via photonic switches as a potential replacement for the existing electronic cross-connects. although optical amplifiers are now mainstream and wave division multiplexing (WDM) systems are a commercial reality, the industry's long-term vision is one of the all-optical network. This will require optical switching equipment such as all-optical or "photonic" cross-connect switches that will provide packet switching at an optical layer. Currently, as voice calls or data traffic are routed throughout Range and commercial networks, the information cantravel through many fiber-optic segments which are linked together using electronic cross-connects. However, this electronic protion of the network is the bottleneck that is preventing the ideal network from achieving optimal speeds. Information is converted from Light into an electronic signal, routed to the next circuit pathway, then converted back into light as it travels to the next network destination. In an all-optical network, the electronics are removed from the equation, eliminating the need to convert the signals and thereby significantly improving network performance and throughput. Removing hte electronics improves network reliability and retoration speeds in the event of an outage, provides greater flexibility in network provisioning, and provides a smooth transition when migrating to future optical transmission technologies. despite the fact that photonic swithing remains uncommercialized, it now seems apparent that the core switches in both the public networks and DoD Range networks of the early 21st century will probably carry ATM cells over a photonic switching fabric.
机译:本文通过光子开关呈现光学网络的未来,作为现有电子交叉连接的潜在替代品。虽然光学放大器现在是主流和波分复用(WDM)系统是一种商业现实,但行业的长期愿景是全光网络之一。这将需要光学切换设备,例如全光或“光子”交叉连接开关,其将在光学层处提供分组切换。目前,由于在整个范围和商业网络中路由语音呼叫或数据流量,信息通过许多光纤段来达到许多使用电子交叉连接在一起的光纤段。然而,该网络的这种电子勘查是防止理想网络实现最佳速度的瓶颈。信息将从光转换为电子信号,路由到下一个电路路径,然后在其行进到下一个网络目的地时转换回光。在全光网络中,电子设备从等式中移除,消除了转换信号的需要,从而显着提高网络性能和吞吐量。拆卸HTE电子产品在停电时提高了网络可靠性和速度速度,在网络配置方面提供了更大的灵活性,并在迁移到未来的光传输技术时提供平滑的转换。尽管光子速度仍然没有营销,但它似乎很明显,21世纪初的公共网络和国防部范围网络中的核心交换机可能会在光子开关面料上携带ATM电池。

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