面向实时通信的资源管理:理论与实践相结合

A. Mehra, Atri Indiresan, K. Shin
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引用次数: 43

摘要

本文的重点是在主机CPU和链路资源的实时通信管理中弥合理论与实践之间的差距。使用我们的实时通道实现(分组交换网络中实时通信的范例),我们说明了资源容量和通道可接受性之间的权衡,这决定了服务可以接受的实时通道的数量和类型以及交付给最佳努力流量的性能。我们证明了这种权衡受到实现范例的选择以及CPU和链路资源在活动通道之间复用的粒度的显著影响。为了解释这种影响,我们扩展了最初使用理想资源模型提出的实时通道的准入控制程序。我们的结果表明,与理想的资源模型相比,实际考虑大大降低了通道的可接受性。此外,复用粒度的最佳选择取决于资源抢占开销、CPU与链路带宽的关系以及链路带宽分配与CPU带宽分配之间的相互作用等因素。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Resource management for real-time communication: making theory meet practice
This paper focuses on bridging the gap between theory and practice in the management of host CPU and link resources for real-time communication. Using our implementation of real-time channels, a paradigm for real-time communication in packet-switched networks, we illustrate the tradeoff between resource capacity and channel admissibility, which determines the number and type of real-time channels that can be accepted for service and the performance delivered to best-effort traffic. We demonstrate that this tradeoff is affected significantly by the choice of implementation paradigms and the grain at which CPU and link resources are multiplexed amongst active channels. To account for this effect we extend the admission control procedure for real-time channels originally proposed using idealized resource models. Our results show that practical considerations significantly reduce channel admissibility compared to idealized resource models. Further, the optimum choice of multiplexing grain depends on several factors such as resource preemption overheads, the relationship between CPU and link bandwidth, and the interaction between link bandwidth allocation and CPU bandwidth allocation.
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