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Performance Evaluation of Flow QoS Guarantee Method Based on TCP Congestion Control and MAC Frame Priority Control over Multi-rate WLAN Environment

机译:多速率WLAN环境下基于TCP拥塞控制和MAC帧优先控制的流QoS保证方法性能评估

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In order to guarantee the bandwidth of a flow (flow QoS) in Wireless LANs (WLANs), a flow QoS guarantee method using both TCP Congestion Control for QoS (QoS-TCP) and MAC Frame Priority Control (QoS-MAC), which we refer to as a cross layer control method, has been proposed. This method tries to guarantee the bandwidth of a flow mainly by using QoS-TCP. And MAC Frame Priority Control assists with QoS-TCP to guarantee the bandwidth. This paper uses TCP-AV and Receive Opportunity Control in MAC Frame (ROC) as QoS-TCP and QoS-MAC, respectively. The previous study evaluates the cross layer control method in a single rate environment. In this environment, each terminal uses only one transmission rate in the physical layer. However, current wireless devices usually use multiple transmission rates. This study calls this environment as a multi-rate environment. Thus, the performance evaluation of the cross layer control method over the multi-rate environment is insufficient. This paper evaluates the throughput performance of the cross layer control method in the multi-rate environments. Moreover, this paper shows that the method can assure the target bandwidth in the multi-rate environment. From simulation results, we found that the method can guarantee the target bandwidth for a priority flow and improve the total throughput in the multi-rate environment.
机译:为了保证无线局域网(WLAN)中流(流QoS)的带宽,我们使用了同时使用QoS的TCP拥塞控制(QoS-TCP)和MAC帧优先级控制(QoS-MAC)的流QoS保证方法。已经提出了一种称为跨层控制方法的方法。该方法主要通过使用QoS-TCP来尝试确保流的带宽。而MAC帧优先级控制则借助QoS-TCP来保证带宽。本文分别将TCP-AV和MAC帧中的接收机会控制(ROC)用作QoS-TCP和QoS-MAC。先前的研究评估了单速率环境中的跨层控制方法。在这种环境下,每个终端在物理层中仅使用一种传输速率。但是,当前的无线设备通常使用多种传输速率。本研究将此环境称为多速率环境。因此,跨速率控制方法在多速率环境下的性能评估不足。本文评估了跨速率控制方法在多速率环境下的吞吐性能。此外,本文表明该方法可以确保多速率环境下的目标带宽。从仿真结果可以看出,该方法可以保证优先级流的目标带宽,并提高多速率环境下的总吞吐量。

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