Efficient algorithms for location and sizing problems in network design

K. Kumaran, A. Srinivasan, Qiong Wang, S. Lanning, K. G. Ramakrishnan
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引用次数: 3

Abstract

Large-scale location, sizing and homing problems of distributed network elements, have received much attention recently due to the massive deployment of broadband communication networks for services like Internet telephony and Web caching. Key considerations in designing these networks include modularity of capacity, economies of scale in cost, and reliability. We formulate a general class of such network design problems as Mixed-Integer Programs. These problems are computationally intractable in general; under various asymptotic conditions, we show how to compute near-optimal solutions. To deal with arbitrary instances, we develop new algorithms based on linear programming, as well as greedy randomized adaptive search. These algorithms achieved near-optimal solutions with reasonable computation time for our experiments.
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网络设计中定位和规模问题的有效算法
由于宽带通信网络的大规模部署,如互联网电话和Web缓存等服务,分布式网络元素的大规模定位、大小和归属问题最近受到了广泛关注。设计这些网络的关键考虑因素包括容量的模块化、成本的规模经济和可靠性。我们将这类网络设计问题表述为混合整数规划。一般来说,这些问题在计算上是难以解决的;在各种渐近条件下,我们展示了如何计算近最优解。为了处理任意实例,我们开发了基于线性规划和贪婪随机自适应搜索的新算法。这些算法在合理的计算时间内获得了接近最优的解。
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