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Factors affecting the efficiency of Demand-wise Shared Protection

机译:影响需求明智共享保护效率的因素

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Demand-wise Shared Protection (DSP) can be thought of as a form of network-level 1:N APS protection scheme. The concept is to split total demand over multiple disjoint routes between each node pair and use one of the routes for protection. Recently referred to as Demand-wise Shared Protection (DSP), this architecture is receiving renewed interest. Especially in high connectivity networks it would seem to offer the prospect of very low redundancy. In our results and others it is surprising, however, that the savings over 1+1 APS are small even when optimally designed. We have therefore tried to understand and explore the factors that affect the efficiency of DSP in terms of features of network topologies and demand patterns. Through this examination, factors affecting the efficiency of DSP are better understood, providing insights into the applicability of DSP as a protection architecture. One of the main insights is that while a k-way split over disjoint routes seems logically to promise ∼1/(k-1) redundancy, this is largely overcome by the statistics of increased route length as k becomes greater than two.
机译:需求 - 明智的共享保护(DSP)可以被认为是网络级别1:N APS保护方案的形式。该概念是在每个节点对之间的多个不相交路由上拆分总需求,并使用其中一个保护路由。最近被称为需求 - 明智的共享保护(DSP),这种架构正在接受续集的兴趣。特别是在高连接网络中,它似乎提供了非常低的冗余的前景。在我们的结果和其他人中,它令人惊讶的是,即使在最佳设计时,超过1 + 1 AP的节省也很小。因此,我们试图了解并探索影响DSP效率的因素,以便在网络拓扑和需求模式的特征方面。通过这次检查,更好地理解影响DSP效率的因素,提供了DSP作为保护架构的适用性的见解。其中一个主要见解是,虽然k-lia分裂在逻辑上似乎逻辑上逻辑上才能承诺~1 /(k-1)冗余,但随着k变得大于两个,这主要克服了增加的路线长度的统计数据。

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