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Contention-based Medium Access Control with Physical Layer Assisted Link Differentiation

机译:基于竞争的媒体访问控制,具有物理层辅助链接差异化

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In this paper, we develop contention-based medium access control (MAC) schemes for both best-effort data transmissions and delay-sensitive multimedia transmissions over WLANs. A user detection module and a multi-rate adaptation module are proposed in the physical layer to assist in link differentiation. With these two modules, for best-effort data transmissions, a new distributed queuing MAC protocol (PALD-DQMP) is proposed. Based on different users' channel states, PALD-DQMP makes use of a distributed queuing system to schedule the transmissions. To support delay-sensitive multimedia transmissions, an enhanced PALD-DQMP (E-PALD-DQMP) is designed by providing two-level optimized transmission scheduling for four access categories, thus eliminating both external and internal collisions among mobile stations. Simulation results show that our proposed protocols outperform the standard MAC protocols for both delay-sensitive and best-effort traffics. All these improvements are mainly contributed by the availability of cross-layer channel state information, and the consequent multi-rate adaptation scheme.
机译:在本文中,我们开发基于争用的媒体访问控制(MAC)方案,用于最佳数据传输和WLAN上的延时敏感的多媒体传输。在物理层中提出了用户检测模块和多速率自适应模块,以帮助链路分化。利用这两个模块,为了获得最佳数据传输,提出了一种新的分布式队列MAC协议(PALD-DQMP)。基于不同的用户的频道状态,Pald-DQMP利用分布式排队系统来安排传输。为了支持延迟敏感的多媒体传输,通过为四个接入类别提供两级优化传输调度来设计增强的Pald-DQMP(E-Pald-DQMP),从而消除了移动台中的外部和内部冲突。仿真结果表明,我们提出的协议优于延时敏感和最佳流量的标准MAC协议。所有这些改进主要是由于交叉层信道状态信息的可用性以及随后的多速率适应方案。

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