Performance study of SVC-based IP-over-ATM networks

N. Endo, Z. Niu, A. Sawada
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引用次数: 1

Abstract

Resource allocation is one of major issues on SVC-based IP-over-ATM networks. We study the effect of the system design parameters on the performance using a finite-capacity single-vacation model, with close-down/setup times and a Markovian arrival process (MAP). We show the packet loss probability as a function of buffer size, SVC timeout period, and bandwidth. If the SVC setup delay and release delay are small, the loss during SVC setup is relatively small, and the loss in the service phase is dominant. However, if the SVC setup delay and release delay are large, the loss in SVC setup is significantly larger than the loss in the service phase. When the SVC timeout period is changed, there is a tradeoff between SVC setup rate and SVC utilization rate. Therefore, the timeout period must be set to maximize SVC utilization rate and to minimize the processing power of the SVC processor.
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基于svc的IP-over-ATM网络性能研究
资源分配是基于svc的IP-over-ATM网络的主要问题之一。我们使用有限容量单假期模型,研究系统设计参数对性能的影响,该模型具有关闭/设置时间和马尔可夫到达过程(MAP)。我们将丢包概率显示为缓冲区大小、SVC超时时间和带宽的函数。如果SVC建立延迟和释放延迟较小,则SVC建立过程中的损耗相对较小,业务阶段的损耗占主导地位。但是,如果SVC设置延迟和释放延迟较大,则SVC设置阶段的损失明显大于业务阶段的损失。当改变SVC超时时间时,需要在SVC设置率和SVC利用率之间进行权衡。因此,必须设置超时时间,以使SVC利用率最大化,并使SVC处理器的处理能力最小化。
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