分组网络语音的动态容量管理

N. Akar, C. Sahin
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引用次数: 0

摘要

在本文中,动态容量管理是指动态改变在两个网络端点之间建立的伪线的容量分配(预留)的过程。此过程基于某些标准,包括伪线的瞬时流量负载、网络利用率、一天中的时间或一周中的某一天。容量的频繁调整会产生可伸缩性问题,其表现形式是容量更新过程中涉及的网络元素中的大量消息处理。另一方面,如果容量只针对最坏的流量条件进行一次调整,那么根据实际的流量负载,可能会浪费大量的带宽。因此需要动态容量管理,考虑可伸缩性和带宽效率之间的权衡。这个问题是由分组网络的语音引起的,在分组网络中,端到端保留请求是由PSTN语音呼叫发起的,这些保留在核心分组网络中被聚合成一个信号保留以实现可扩展性。在本文中,我们引入了一个马尔可夫决策框架,用于分组网络语音的最优保留聚合方案。此外,对于规模较大的问题,我们使用强化学习提供了次优方案。我们展示了使用聚合保留的分组网络语音带宽效率的显著改进。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Dynamic capacity management for voice over packet networks
In this paper, dynamic capacity management refers to the process of dynamically changing the capacity allocation (reservation) of a pseudo-wire established between two network end points. This process is based on certain criteria including instantaneous traffic load for the pseudo-wire, network utilization, time of day, or day of week. Frequent adjustment of the capacity yields a scalability issue in the form of a significant amount of message processing in the network elements involved in the capacity update process. On the other hand, if the capacity is adjusted once and for the worst possible traffic conditions, a significant amount of bandwidth may be wasted depending on the actual traffic load. There is then a need for dynamic capacity management that takes into account the tradeoff between scalability and bandwidth efficiency. This problem is motivated by voice over packet networks in which end-to-end reservation requests are initiated by PSTN voice calls and these reservations are aggregated into one signal reservation in the core packet network for scalability. In this paper, we introduce a Markov decision framework for an optimal reservation aggregation scheme for voice over packet networks. Moreover, for problems with large sizes, we provide a suboptimal scheme using reinforcement learning. We show a significant improvement in bandwidth efficiency in voice over packet networks using aggregate reservations.
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