光骨干网虚拟备用资源的高效迁移

F. Dikbiyik, B. Mukherjee
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引用次数: 0

摘要

网络虚拟化已经成为基于云的服务的一个重要特性。虚拟网络可以在大容量光网络上建立。它们由虚拟链路和虚拟节点组成,映射到物理资源上。运营虚拟网络逐步升级,避免容量耗尽,创造资源应对流量增长。这些升级需要租用新的虚拟资源(例如,虚拟链路的额外带宽),对网络运营商来说可能代价高昂。升级网络的额外资本支出(CapEx)可以通过重新安置已经在网络中租用但未使用的备用虚拟资源来减少或消除(例如,由于乐观的预测或过度供应)。在这里,重新定位基本上是从虚拟链路中释放一些未使用的带宽,并为另一个将升级的虚拟链路租用相同数量的带宽。我们研究了一种经济有效的方案,通过光WDM骨干网重新定位虚拟网络中的备用虚拟容量,以(i)减少或消除升级成本,(ii)避免容量耗尽(通过将资源从未充分利用的链路迁移到过度利用的链路),以及(iii)提高网络鲁棒性(通过将资源从不可靠的光路支持的链路迁移到可靠的光路支持的链路)。我们提出了一种有效的迁移方案,以避免容量耗尽和提高网络鲁棒性,同时最大限度地减少甚至消除对新带宽的需求。我们把我们的问题建立成一个数学公式,结果是一个整数线性规划(ILP)。我们的研究结果表明,通过使用我们的迁移方案,网络运营商可以在升级/改进虚拟网络的同时显著降低资本支出。
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Efficient relocation of virtual spare resources over optical backbone networks
Network virtualization has become an important feature for cloud-based services. Virtual networks can be set up over high-capacity optical networks. They consist of virtual links and nodes, which are mapped over physical resources. Operational virtual networks get gradually upgraded to avoid capacity exhaustion and create resources to handle traffic growth. These upgrades require leasing of new virtual resources (e.g., additional bandwidth for virtual links) and might be costly to network operators. The additional capital expenditure (CapEx) to upgrade the network can be reduced or eliminated by relocating spare virtual resources which were already-leased in the network, but are unused (e.g., due to optimistic forecasts or excessive overprovisioning). Relocating, here, is basically release some of the unused bandwidth from a virtual link and lease the same amount of bandwidth for another virtual link that will be upgraded. We investigate a cost-effective scheme to relocate spare virtual capacity in a virtual network over an optical WDM backbone network to (i) reduce or eliminate upgrade costs, (ii) avoid capacity exhaustion (by migrating resources from underutilized links to overutilized links), and (iii) improve network robustness (by migrating resources from links supported by unreliable lightpaths to links supported by reliable lightpaths). We propose an efficient relocation scheme to avoid capacity exhaustion and improve network robustness while minimizing or even eliminating requirement of new bandwidth. We build our problem into a mathematical formulation which turns out to be an Integer Linear Program (ILP). Our results show that network operator can significantly reduce CapEx while upgrading/improving a virtual network by using our relocation scheme.
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