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Wireless Hybrid QoS Architecture with an Enhancement of Fair Intelligent Congestion Control

机译:增强了公平智能拥塞控制功能的无线混合QoS架构

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More subtle and explicit QoS control mechanisms are required at the radio access level, even though the simple and scalable Differentiated Services (DiffServ) QoS control model is acceptable for the core of the network. At the radio access level, available resources are severely limited and the degree of traffic aggregation is not significant, thus rendering the DiffServ principles less effective. In this paper we present a suitable hybrid QoS architecture framework to address the problem. At the wireless access end, the local QoS mechanism is designed in the context of IEEE 802.11 WLAN with 802.11e QoS extensions; so streams of those session-based applications are admitted, established according to the traffic profile they require, and guaranteed. As the core in the Admission Control of the hybrid QoS architecture, the Fair Intelligent Congestion Control (FICC) algorithm is applied to provide fairness among traffic aggregates and control congestion at the bottleneck interface between the wireless link and the network core via mechanisms of packet scheduling, buffer management, feedback and adjustments. It manages effectively the overloading scenario by preventing traffic violation from uncontrolled traffic, and providing guarantee to the priority traffic in terms of guaranteed bandwidth allocation and specified delay.
机译:即使简单且可扩展的差分服务(DiffServ)QoS控制模型对于网络核心来说是可接受的,但在无线访问级别上仍需要更细微和显式的QoS控制机制。在无线访问级别上,可用资源受到严重限制,流量聚合的程度并不重要,因此使DiffServ原理的有效性降低。在本文中,我们提出了一个合适的混合QoS体系结构框架来解决该问题。在无线访问端,本地QoS机制是在具有802.11e QoS扩展的IEEE 802.11 WLAN的环境中设计的。因此,这些基于会话的应用程序流将被接受,根据其所需的流量配置文件建立并得到保证。作为混合QoS体系结构准入控制的核心,采用公平智能拥塞控制(FICC)算法,通过分组调度机制在无线链路和网络核心之间的瓶颈接口处提供流量聚合之间的公平性并控制拥塞。 ,缓冲区管理,反馈和调整。通过防止流量不受控制的流量违规,并在保证带宽分配和指定延迟方面为优先流量提供保证,它可以有效地管理过载情况。

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