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On delay versus congestion in designing rearrangeable multihop lightwave networks

机译:延迟与设计重新布置多轴Lightwave网络中的拥塞

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We investigate design issues of optical networks in light of two conflicting criteria: throughput maximization (or, equivalently, congestion minimization) versus delay minimization. We assume the network has an arbitrary topology, the flow can be split and sent via different routes, and it can be transferred via intermediate nodes. Tabu search heuristic is used to compare solutions with different weights assigned to each of the two criteria. The approach is tested on a benchmark data set, the 14-dimensional NSFNET T1 network with traffic from 1993. The results suggest that (1) some connectivity matrices are quite robust and desirable regarding both criteria simultaneously; (2) forcing minimization of total delay unconditionally can result with significantly inferior throughput. Some decisions strategies are outlined.
机译:我们根据两个冲突标准调查光网络的设计问题:吞吐量最大化(或等效,拥塞最小化)与延迟最小化。我们假设网络具有任意拓扑,可以通过不同的路由分割并发送流程,可以通过中间节点传输。禁忌搜索启发式启发式用于比较具有分配给两个标准中的每一个的不同权重的解决方案。该方法在基准数据集中进行测试,从1993年的交通中的14维NSFNET T1网络测试。结果表明(1)一些连接矩阵同时对两个标准非常稳健,并且希望; (2)无条件地迫使总延迟的最小化可能导致吞吐量明显较差。概述了一些决定策略。

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