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Prioritized Quality of Service Support Medium Access Control for Real Time Flows

机译:优先服务质量支持实时流的媒体访问控制

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摘要

In multi-hop wireless mobile ad hoc network each node is capable of sending, receiving and forwarding data packets. Since it is an infrastructure-less networks, it makes it feasible to set up at anyplace and at any time. Supporting Quality of Service (QoS) in such network is a challenge due to limited available resources like bandwidth etc. This paper describes a new approach of Medium Access Control (MAC) which supports QoS for real time applications. Each node is assigned priorities dynamically based on their roles (as sender, receiver or forwarding node) and type of traffics (Real Time Packet ȁ3; RTP or Non Real Time Packet - NRTP) in the networks. This approach enhances QoS for Real Time data in terms of bandwidth utilization and delay. This ensures higher network throughput with lower delay for packet delivery. New queue has been designed to fit in to the proposed MAC protocol. Simulation shows that our proposed MAC performs much better than the standard IEEE 802.11 DCF in terms of average throughput, delay, MAC overheads in support of RTP and fairness within a class of traffic also increases.
机译:在多跳无线自组织网络中,每个节点都能够发送,接收和转发数据包。由于它是无基础架构的网络,因此可以随时随地进行设置。由于有限的可用资源(如带宽等),在这样的网络中支持服务质量(QoS)是一个挑战。本文介绍了一种支持实时应用QoS的媒体访问控制(MAC)的新方法。每个节点根据其角色(作为发送方,接收方或转发节点)和网络中的流量类型(实时数据包ȁ3; RTP或非实时数据包-NRTP)动态分配优先级。这种方法在带宽利用率和延迟方面提高了实时数据的QoS。这样可以确保较高的网络吞吐量,并减少数据包传递的延迟。已经设计了新队列以适合建议的MAC协议。仿真表明,在平均吞吐量,延迟,支持RTP的MAC开销以及一类流量内的公平性方面,我们提出的MAC性能比标准IEEE 802.11 DCF好得多。

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