了解光电路交换数据中心物理拓扑设计的性能保证

Shizhen Zhao, Peirui Cao, Xinbing Wang
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引用次数: 1

摘要

物理拓扑设计是光路交换数据中心(ODC)设计的第一步,它决定了整个ODC的可扩展性和性能限制。然而,以往的ODC工作对物理拓扑设计的关注不够,所采用的物理拓扑要么可扩展性差,要么缺乏性能保证。本文为ODC物理拓扑的设计和性能分析提供了数学基础。我们引入了一个新的性能指标β(G)来评估物理拓扑G与理想物理拓扑之间的差距。我们开发了一种耦合技术,该技术绕过了计算β(G)的大量计算复杂性。利用β(G)和耦合技术,研究了文献中具有代表性的四种物理拓扑,分析了它们的可扩展性,并证明了它们的性能保证。我们的分析可能为网络运营商为其odc设计更好的物理拓扑提供新的指导。
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Understanding the Performance Guarantee of Physical Topology Design for Optical Circuit Switched Data Centers
As a first step of designing O ptical-circuit-switched D ata C enters (ODC), physical topology design is critical as it determines the scalability and the performance limit of the entire ODC. However, prior works on ODC have not yet paid much attention to physical topology design, and the adopted physical topologies either scale poorly, or lack performance guarantee. We offer a mathematical foundation for the design and performance analysis of ODC physical topologies in this paper. We introduce a new performance metric β(G ) to evaluate the gap between a physical topology G and the ideal physical topology. We develop a coupling technique that bypasses a significant amount of computational complexity of calculating β(G). Using β(G ) and the coupling technique, we study four physical topologies that are representative of those in literature, analyze their scalabilities and prove their performance guarantees. Our analysis may provide new guidance for network operators to design better physical topologies for their ODCs.
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