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Capacity allocation and contention resolution in a photonic slot routing all-optical WDM mesh network

机译:光子时隙路由全光WDM网状网络中的容量分配和竞争解决

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Photonic slot routing (PSR) has been proposed as an approach to implement an all-optical packet-switched network in a manner which is scalable and not overly complex. In PSR, packets are transmitted within a basic transport unit referred to as a photonic slot. The photonic slot is fixed in length and spans multiple wavelengths. Each photonic slot is routed through the network as a single entity; thus, individual wavelengths do not need to be multiplexed or demultiplexed at intermediate nodes through which the photonic slot is traversing. When implementing PSR in a mesh environment, a number of significant issues must be addressed. Two such issues are fairness and contention resolution. In this study, we propose a novel approach for allocating capacity on each link in a fair manner, and we investigate various approaches, such as buffering and deflection, for handling contention. We develop an analytical model to evaluate the performance of such networks, and validate the analysis through simulation. It is shown that the proposed capacity allocation approach can significantly reduce contention in the network and provide a fair allocation of bandwidth to each source-destination pair.
机译:已经提出了光子缝隙路由(PSR)作为一种以可伸缩且不会过于复杂的方式来实现全光分组交换网络的方法。在PSR中,数据包在称为光子时隙的基本传输单元中传输。光子槽的长度是固定的,并且跨越多个波长。每个光子插槽作为单个实体通过网络路由;因此,不需要在光子缝隙穿过的中间节点处对各个波长进行复用或解复用。在网状环境中实施PSR时,必须解决许多重要问题。公平和争用解决是两个这样的问题。在这项研究中,我们提出了一种以公平的方式在每个链路上分配容量的新颖方法,并且我们研究了各种方法(例如缓冲和偏移)来处理竞争。我们开发了一个分析模型来评估此类网络的性能,并通过仿真验证分析结果。结果表明,所提出的容量分配方法可以显着减少网络中的竞争,并为每个源-目标对提供公平的带宽分配。

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