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Request differentiation in dynamic light-path establishment for WDM routed all optical networks of data centers

机译:WDM动态光路建立中的请求区分路由到数据中心的所有光网络

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Existing routing and wavelength assignment (RWA) solutions try to minimize the blocking rate as the main quality of service (QoS) metric. However, in ultra high-speed all optical interconnection networks of data centers, more important metrics such as network throughput and channel utilization are of interest for network designers. This paper proposes dynamic request buffering routing and wavelength assignment (DRB-RWA) that aims at maximizing the network throughput and total amount of transmitted data in addition to minimizing the blocking rate by proposing a dynamic RWA scheme based on request differentiation. The proposed scheme tries to exploit buffering approach in order to be able to achieve a pseudo static traffic out of a dynamic traffic; and hence, it would be able to differentiate requests in terms of desired metrics. However, conventional dynamic RWA solutions solely aim at minimizing the blocking rate. We evaluate the performance of the proposed algorithm via analytical approach as well as comprehensive simulations to confirm the fact that the network throughput, and therefore, total amount of transmitted data are maximized when the proposed scheme is applied.
机译:现有的路由和波长分配(RWA)解决方案试图将阻塞率最小化,将其作为主要服务质量(QoS)指标。但是,在数据中心的超高速全光互连网络中,更重要的指标(如网络吞吐量和信道利用率)对于网络设计人员来说很重要。本文提出了一种动态请求缓冲路由和波长分配(DRB-RWA),旨在通过提出一种基于请求差异的动态RWA方案,以最大程度地提高网络吞吐量和传输数据总量,并最大程度地降低阻塞率。所提出的方案试图利用缓冲方法,以便能够从动态流量中获得伪静态流量。因此,它可以根据所需指标来区分请求。但是,传统的动态RWA解决方案仅旨在最小化阻塞率。我们通过分析方法以及综合仿真评估了所提出算法的性能,以确认当应用所提出的方案时,网络吞吐量以及因此传输的数据总量最大化的事实。

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