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A novel feedback-based strategy on burst contention avoidance

机译:一种新颖的基于反馈的突发竞争避免策略

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In this paper, we propose a novel source flow-rate control strategy called dual-feedback adaptive threshold window (DFATW) to resolve contention in an optical burst switching network. In our algorithm, the traffic states of network are predicted accurately, due to monitoring the traffic variation from edge-switching nodes and core-switching nodes simultaneously. We then compare the blocking performance of DFATW with the conventional assembly algorithm called adaptive assembly size, and the numerical results show that the burst blocking probability is further reduced by using the DFATW algorithm, especially when a core-switching node is at high traffic state.
机译:在本文中,我们提出了一种新颖的源流率控制策略,称为双反馈自适应阈值窗口(DFATW),以解决光突发交换网络中的竞争。在我们的算法中,由于同时监视边缘交换节点和核心交换节点的流量变化,因此可以准确预测网络的流量状态。然后我们将DFATW的阻塞性能与传统的称为自适应组件大小的装配算法进行了比较,数值结果表明,使用DFATW算法可以进一步降低突发阻塞的可能性,尤其是在核心交换节点处于高流量状态时。

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