基于粒子群优化的虚拟局域网自适应路由点控制

Kensuke Takahashi, Toshio Hirotsu, T. Sugawara
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引用次数: 1

摘要

本文介绍了利用二元粒子群优化(BPSO)和角度调制粒子群优化(AMPSO)控制VLAN域路由点的方法。虚拟局域网(VLAN)是一种虚拟化数据链路层(或L2)的技术,可以在物理网络之上构建任意逻辑网络。但是,由于VLAN网络中L3 (network layer)路由能力的部署不当,导致VLAN网络中存在大量冗余流量。提出了BPSO和AMPSO两种方法,并证明了它们可以根据观察到的流量模式动态自适应地选择路由点,从而减少冗余流量。在统计方法的基础上,与传统方法的收敛特性进行了比较。结果表明,该算法具有较高的可扩展性,适用于实际的大VLAN环境。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Adaptive Routing Point Control in Virtualized Local Area Networks Using Particle Swarm Optimizations
This paper describes methods for controlling routing points of VLAN domains using binary particle swarm optimization (BPSO) and angle modulated particle swarm optimization (AMPSO). Virtual LAN (VLAN) is a technique for virtualizing data link layer (or L2) and can construct arbitrary logical networks on top of a physical network. However, VLAN often causes much redundant traffic due to inappropriate deployments of network-layer (L3) routing capabilities in VLAN networks. We propose two methods using BPSO and AMPSO, and show that they can adaptively select the routing points dynamically in accordance with the observed traffic patterns and thus reduce the redundant traffic. The convergence features are compared with those of the conventional method on the basis of a statistical method. Then we also show that the scalability of the algorithm using AMPOS is high and thus we can expect that it is applicable to practical large VLAN environments.
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