使用多种低延迟队列调度机制提高实时流量的QoS

Mudathir Yousif, I. Abuel Maaly, M. Abbas
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引用次数: 0

摘要

为了提高LTE移动网络中实时和关键任务数据流量的QoS性能,提出了一种多低延迟队列调度机制模型。该模型的主要目标是实现最小延迟并提高实时应用(如LTE上的实时视频和语音)的QoS。此外,还解决了低优先级队列不足和带宽分配等问题。该模型由四个部分组成:一是分类器,对路由器接口的入站流量进行分类;其次,四种基于类的加权公平队列(CBWFQ)调度机制,在前两个队列中激活严格优先级特征。第三,两个单独的速率限制器(策略器),每个严格优先级队列一个。利用优化网络工程工具(OPNET)对两种场景进行了设计和仿真。结果表明,与现有调度机制(自定义队列、先验队列、CBWFQ和低延迟队列)相比,多低延迟队列调度机制模型的实时流量延迟较小。另一方面,该模型还解决了低优先级队列不足的问题。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Improving QoS for Real-time Traffic using Multiple Low Latency Queueing Scheduling Mechanisms
In this work, a Multiple Low Latency Queuing scheduling mechanism model is developed to improve the QoS performance for real time and critical mission data traffic in LTE mobile networks. The main objective of this model is to achieve minimum delay and improve the QoS for real time applications (like Live Video and Voice over LTE). In addition, issues likestarvation of lower priority queues and bandwidth allocation are addressed. The model is composed of four components, first, classifier to classify the incoming traffic in router interface. Second, four Class Based Weighted Fair Queues (CBWFQ) scheduling mechanisms, with activation of strict priority feature in the first two queues. Third, two separate rate limiters (policers), one for each strict priority queue. Two scenarios are designed and simulated using Optimized Network Engineering Tool (OPNET). The results show that, in the case of Multiple Low Latency Queuing scheduling mechanism model, the real time traffic suffers less delay compared to the case of existing scheduling mechanisms like (Custom Queuing, Priory Queuing, CBWFQ and Low Latency Queuing). On the other hand, the model also addressed the starvation of lower-priority queuesproblem.
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