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Multiconfiguration multihop protocols: a new class of protocols for packet-switched WDM optical networks

机译:多配置多跳协议:用于分组交换WDM光网络的新型协议

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Wavelength-division multiplexing (WDM) local-area networks based on the optical passive-star coupler have traditionally been classified as being either single-hop or multihop. A single-hop network provides a direct connection between the source and the destination of a packet during the packet transfer duration, but may require some amount of coordination between the nodes which may involve tuning of the transmitters or receivers at each node. Since the time required to tune a tunable optical transmitter or receiver may be high, a single-hop network may incur significant overhead. On the other hand, a typical multihop network requires little or no tuning, but a packet may traverse a number of intermediate nodes between the source and destination nodes. Each hop incurs additional queueing delays at each node and also increases the overall load on each link and on the network. In this paper, we propose a new class of multiconfiguration multihop protocols (MMPs) which use tunable transmitters and receivers to cycle through a number of configurations which together make up a multihop logical topology. This class of protocols offers a trade-off between the tuning required in a single-hop network and the number of hops required in a multihop network. We present a generalized framework for comparing the proposed protocols with existing single-hop and multihop protocols, and we show that these protocols may offer significant performance gains for systems with high tuning delays and a limited number of transmitters and receivers at each node.
机译:传统上,基于光无源星形耦合器的波分复用(WDM)局域网被分类为单跳或多跳。单跳网络在数据包传输期间提供了数据包的源和目标之间的直接连接,但是可能需要在节点之间进行一定量的协调,这可能涉及在每个节点上调整发射器或接收器。由于调谐可调光发射器或接收器所需的时间可能很长,因此单跳网络可能会产生大量开销。另一方面,典型的多跳网络几乎不需要调整,但数据包可能会遍历源节点和目标节点之间的许多中间节点。每个跃点在每个节点上都会产生额外的排队延迟,并且还会增加每个链路和网络上的总体负载。在本文中,我们提出了一类新的多配置多跳协议(MMP),该协议使用可调的发送器和接收器来循环通过多个配置,这些配置共同构成了多跳逻辑拓扑。此类协议可在单跳网络所需的调整与多跳网络所需的跳数之间进行权衡。我们提供了一个通用框架,用于将建议的协议与现有的单跳和多跳协议进行比较,并且我们证明,这些协议可以为具有高调谐延迟和每个节点处的发送器和接收器数量有限的系统提供显着的性能提升。

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