Siripongwutikorn Peerapon, Banerjee Sujata, Tipper David
University of Pittsburgh, PA 15260, USA.
IEEE Trans Neural Netw. 2005 Sep;16(5):1147-62. doi: 10.1109/TNN.2005.853429.
This paper presents the use of adaptive bandwidth control (ABC) for a quantitative packet loss rate guarantee to aggregate traffic in packet switched networks. ABC starts with some initial amount of bandwidth allocated to a queue and adjusts it over time based on online measurements of system states to ensure that the allocated bandwidth is just enough to attain the specified loss requirement. Consequently, no a priori detailed traffic information is required, making ABC more suitable for efficient aggregate quality of service (QoS) provisioning. We propose an ABC algorithm called augmented Fuzzy (A-Fuzzy) control, whereby fuzzy logic control is used to keep an average queue length at an appropriate target value, and the measured packet loss rate is used to augment the standard control to achieve better performance. An extensive simulation study based on both theoretical traffic models and real traffic traces under a wide range of system configurations demonstrates that the A-Fuzzy control itself is highly robust, yields high bandwidth utilization, and is indeed a viable alternative and improvement to static bandwidth allocation (SBA) and existing adaptive bandwidth allocation schemes. Additionally, we develop a simple and efficient measurement-based admission control procedure which limits the amount of input traffic in order to maintain the performance of the A-Fuzzy control at an acceptable level.
本文介绍了使用自适应带宽控制(ABC)来定量保证分组交换网络中聚合流量的丢包率。ABC从分配给队列的一些初始带宽量开始,并根据系统状态的在线测量随时间进行调整,以确保分配的带宽刚好足以满足指定的丢包要求。因此,无需先验的详细流量信息,这使得ABC更适合于高效的聚合服务质量(QoS)提供。我们提出了一种称为增强模糊(A-Fuzzy)控制的ABC算法,其中使用模糊逻辑控制将平均队列长度保持在适当的目标值,并使用测量的丢包率来增强标准控制以实现更好的性能。基于理论流量模型和实际流量踪迹在广泛的系统配置下进行的广泛模拟研究表明,A-Fuzzy控制本身具有高度的鲁棒性,产生高带宽利用率,并且确实是静态带宽分配(SBA)和现有自适应带宽分配方案的可行替代方案和改进。此外,我们开发了一种简单有效的基于测量的准入控制程序,该程序限制输入流量的量,以便将A-Fuzzy控制的性能维持在可接受的水平。