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Feedback-based bandwidth allocation with call admission control for providing delay guarantees in IEEE 802.11e networks

机译:基于呼叫反馈控制的基于反馈的带宽分配,可在IEEE 802.11e网络中提供延迟保证

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摘要

The 802.11e working group has recently proposed innovative functionalities in order to support delay-sensitive multimedia applications, such as real-time voice and video, in Wireless Local Area Networks (WLANs). In particular, the 802.11e proposal introduces: (1) the Hybrid Coordination Function (HCF), which is an improved channel access method aimed at allocating the first-hop WLAN bandwidth to delay-insensitive and delay-sensitive flows; (2) a Call Admission Control (CAC) algorithm for preventing network overloads, which would drastically degrade the service offered by the network; (3) and a Signalling scheme for service request and QoS service level negotiation. This paper proposes a dynamic bandwidth allocation algorithm along with a measurement-based CAC algorithm for providing delay guarantees to real-time media flows in IEEE 802.11e networks. The dynamic bandwidth allocation algorithm has been designed using classic feedback control; whereas the CAC scheme is an extension of the one proposed by the 802.11e working group because it takes into account the actually used resources rather than the average rates declared by data sources. Both the schemes exploit the HCF Controlled Channel Access (HCCA) centralized access method. The proposed algorithms have been implemented in the ns-2 simulator and extensive computer simulations have been carried out to assess their validity. Simulation results have shown that proposed algorithms protect the WLAN from heavy overloads and guarantees bounded delays for multimedia flows, whereas, analogous algorithms proposed by the 802.11e working group fail for high network loads.
机译:802.11e工作组最近提出了创新的功能,以支持无线局域网(WLAN)中对延迟敏感的多媒体应用,例如实时语音和视频。尤其是802.11e提案引入:(1)混合协调功能(HCF),这是一种改进的信道访问方法,旨在将第一跳WLAN带宽分配给对延迟不敏感和对延迟敏感的流; (2)防止网络过载的呼叫准入控制(CAC)算法,该算法会严重降低网络提供的服务; (3)以及用于服务请求和QoS服务级别协商的信令方案。本文提出了一种动态带宽分配算法以及一种基于测量的CAC算法,以为IEEE 802.11e网络中的实时媒体流提供时延保证。动态带宽分配算法是使用经典反馈控制设计的; CAC方案是802.11e工作组提出的方案的扩展,因为它考虑了实际使用的资源,而不是数据源声明的平均速率。两种方案都利用HCF控制的信道访问(HCCA)集中式访问方法。所提出的算法已在ns-2仿真器中实现,并且已进行了广泛的计算机仿真以评估其有效性。仿真结果表明,所提出的算法可以保护WLAN免受严重的过载,并保证多媒体流的有限延迟,而802.11e工作组提出的类似算法则无法应对高网络负载。

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