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An enhanced dynamic transmission opportunity scheme to support varying traffic load over wireless campus networks

机译:增强的动态传输机会方案,以支持无线校园网络的不同流量负载

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Transmission opportunity (TXOP) is a key factor to enable efficient channel bandwidth utilization over wireless campus networks (WCN) for interactive multimedia (IMM) applications. It facilitates in resource allocation for the similar categories of multiple packets transmission until the allocated time is expired. The static TXOP limits are defined for various categories of IMM traffics in the IEEE802.11e standard. Due to the variation of traffic load in WCN, the static TXOP limits are not sufficient enough to guarantee the quality of service (QoS) for IMM traffic flows. In order to address this issue, several existing works allocate the TXOP limits dynamically to ensure QoS for IMM traffics based on the current associated queue size and pre-setting threshold values. However, existing works do not take into account all the medium access control (MAC) overheads while estimating the current queue size which in turn is required for dynamic TXOP limits allocation. Hence, not considering MAC overhead appropriately results in inaccurate queue size estimation, thereby leading to inappropriate allocation of dynamic TXOP limits. In this article, an enhanced dynamic TXOP (EDTXOP) scheme is proposed that takes into account all the MAC overheads while estimating current queue size, thereby allocating appropriate dynamic TXOP limits within the pre-setting threshold values. In addition, the article presents an analytical estimation of the EDTXOP scheme to compute the dynamic TXOP limits for the current high priority traffic queues. Simulation results were carried out by varying traffic load in terms of packet size and packet arrival rate. The results show that the proposed EDTXOP scheme achieves the overall performance gains in the range of 4.41%—8.16%, 8.72%—11.15%, 14.43%—32% and 26.21%—50.85% for throughput, PDR, average ETE delay and average jitter, respectively when compared to the existing work. Hence, offering a better TXOP limit allocation solution than the rest.
机译:传输机会(TXOP)是实现用于交互式多媒体(IMM)应用程序的无线校园网络(WCN)的有效信道带宽利用的关键因素。它有助于为多个数据包的类似类别传输的资源分配,直到分配的时间过期。静态TXOP限制对于IEEE802.11e标准中的各类IMM流量定义。由于WCN中交通负荷的变化,静态TXOP限制不足以保证IMM交通流量的服务质量(QoS)。为了解决这个问题,有几个现有工程动态分配TXOP限制,以确保基于当前相关的队列大小和预设置阈值的IMM流量的QoS。但是,现有的作品不考虑所有介质访问控制(MAC)开销,同时估计当前队列大小,这又需要动态TXOP限制分配。因此,不考虑Mac开销适当地导致不准确的队列大小估计,从而导致动态TXOP限制的不当分配。在本文中,提出了一种增强的动态TXOP(EDTXOP)方案,其考虑了所有MAC开销,同时估计当前队列大小,从而在预设置阈值内分配适当的动态TXOP限制。此外,本文介绍了EDTXOP方案的分析估计,以计算当前高优先级流量队列的动态TXOP限制。通过不同的交通负荷在分组大小和分组到达率方面进行仿真结果。结果表明,拟议的EDTXOP方案达到了4.41%-8.16%的整体性能增益,8.72%-11.15%,14.43%-32%和26.21%-50.85%,用于吞吐量,pdr,平均延迟和平均水平与现有工作相比,抖动分别。因此,提供比其余更好的TXOP限制分配解决方案。

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