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Optimization of logical rings for multi-hop transmissions in WDM optical star networks

机译:WDM光星型网络中多跳传输逻辑环的优化

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摘要

In this paper, we present a multi-hop scheduling algorithm for the All-to-All Broadcast (AAB) problem in Wavelength Division Multiplexed (WDM) optical star networks with N nodes. To decrease the packet delay in packet transmissions, our scheduling algorithm will limit the hop distance to a constant ρ. We transfer the ρ-hop AAB problem to the Hamiltonian cycles problem and then generate the logical rings for physical packet transmissions. In order to minimize the scheduling length, the problem of selection of logical rings is to minimize the number of tuning operations to reduce the influence of tuning latency δ for the AAB problem. We propose a 2-approx- imation algorithm that needs only 2「(N - 1)/ ρ」 tuning operations in an AAB scheduling. When ρ < δ + δ~3 - 8δ~(1/2)/2 the schedule length of our algorithm will be shorter than that of the optimal single-hop scheduling algorithm.
机译:在本文中,我们针对具有N个节点的波分多路复用(WDM)光星网络中的所有广播(AAB)问题,提出了一种多跳调度算法。为了减少数据包传输中的数据包延迟,我们的调度算法会将跳距限制为常数ρ。我们将ρ跳AAB问题转移到哈密顿循环问题,然后生成逻辑环用于物理数据包传输。为了最小化调度长度,逻辑环的选择问题是最小化调整操作的数量以减少调整等待时间δ对AAB问题的影响。我们提出了一种2近似算法,在AAB调度中仅需要2“(N-1)/ρ”调整操作。当ρ<δ+δ〜3-8δ〜(1/2)/ 2时,我们的算法的调度长度将比最优单跳调度算法的调度长度短。

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