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Dtsma: Distributed Time-spread Multiple Access For Wireless Mesh Networks With Ieee 802.16d Mac Protocol

机译:Dtsma:具有Ieee 802.16d Mac协议的无线网状网络的分布式时间传播多路访问

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This paper studies the use of IEEE 802.16d mesh MAC protocol for multi-hop networking in an indoor domestic environment. The mesh network is expected to support time-sensitive audio-video applications with stringent QoS requirement. In the literature, time-spread multiple access (TSMA) is a promising technology to provide a minimum throughput guarantee in a multi-hop mesh network with dynamic topology. However, existing TSMA schemes require the number of nodes in the entire network and their global maximum node degree, be known a priori to a central controller. The requirement is not practical. In view of this problem, this paper proposes a distributed time-spread multiple access (DTSMA) scheme. The proposed DTSMA has the following main contributions: (a) A method for each node to determine locally its polynomial coefficients without a priori global knowledge of node number and maximum node degree, and (b) A method to distribute to neighbours the locally determined polynomial coefficients, and to resolve collision between two sets of identical polynomial coefficients from two neighbouring nodes. The proposed DTSMA has been evaluated through extensive simulations to confirm that it can indeed preserve the capability of providing a minimum throughput guarantee in the absence of the a priori global knowledge. In benchmark against the de facto distributed coordinated scheduling (DCS) in the original IEEE 802.16d mesh MAC protocol under various domestic wireless channel conditions, DTSMA outperforms in terms of packet delivery ratio and average end-to-end packet delay which are important metrics for time-sensitive audio-video applications. Simulation results also show that DTSMA outperforms TSMA in terms of average end-to-end packet delay and average delay jitter when the severity of propagation impairment is high.
机译:本文研究了IEEE 802.16d网状MAC协议在室内家庭环境中用于多跳网络的用途。预计网状网络将支持具有严格QoS要求的时间敏感型音频视频应用程序。在文献中,时间扩展多路访问(TSMA)是一种有前途的技术,可以在具有动态拓扑的多跳网状网络中提供最低的吞吐量保证。但是,现有的TSMA方案要求整个网络中的节点数及其全局最大节点度,这是中央控制器的先验知识。该要求不切实际。针对这一问题,本文提出了一种分布式时分多址(DTSMA)方案。拟议的DTSMA具有以下主要贡献:(a)每个节点无需先验全局了解节点数量和最大节点度即可在本地确定其多项式系数的方法,以及(b)在邻居中分配本地确定的多项式的方法系数,并解决来自两个相邻节点的两组相同多项式系数之间的冲突。通过广泛的仿真对提议的DTSMA进行了评估,以确认在没有先验全局知识的情况下,它确实可以保持提供最小吞吐量保证的能力。在各种家用无线信道条件下,针对原始IEEE 802.16d网状MAC协议中的事实上的分布式协调调度(DCS)进行基准测试,DTSMA在数据包传输率和平均端到端数据包延迟方面均优于后者,这对于时间敏感的音频视频应用程序。仿真结果还表明,当传播损害的严重程度很高时,DTSMA在平均端到端数据包延迟和平均延迟抖动方面优于TSMA。

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