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A cross-layer adaptation HCCA MAC for QoS-aware H.264 video communications over Wireless Mesh Networks

机译:无线网状网络上用于QoS感知的H.264视频通信的跨层适配HCCA MAC

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We present in this paper a novel scheme of QoS-guaranteed transmission of H.264 video over Wireless Mesh Networks (WMNs) based on a Cross-Layer Adaptation HCCA (CLA-HCCA) MAC protocol. This CLA-HCCA strategy utilizes the queue length information at the MAC layer and the MAC layer interference estimation for optimal routing selection at network layer. The scheme will exchange timely Link Capacity Estimation (LCE) information for an adaptive adjustment of spectrally capable transmission at the physical layer. This Cross-Layer Adaptation approach provides an optimized transmission to guarantee the minimum packets delay and drop rate needed for time bound applications, such as video. Since conventional IEEE 802.11e HCCA MAC does not offer cross-layer design framework, we need to resolve the problem associated with IEEE 802.11e HCCA MAC by designing a novel adaptive architecture based on LCE. This integrated scheme allows the physical layer to achieve the optimal transmission via Video-Adaptive FEC (VA-FEC) scheme implemented in the application layer. We evaluate the proposed scheme based on network-level metrics, including bit rate, packets delay and drop rate, in comparison with the state-of-the-art Physical Rate Based Admission Control scheme (PRBAC) HCCA MAC scheme based on IEEE 802.lie WMNs. Extensive simulation results based on H.264 video transmission for the proposed CLA-HCCA and the PRBAC-HCCA schemes have been obtained. We have confirmed that the proposed CLA-HCCA strategy outperforms the PRBAC-HCCA MAC by a significant margin as LCE and VA-FEC is able to adapt to the dynamic network conditions of IEEE 802.lie WMNs in a timely fashion.
机译:我们在本文中提出了一种基于跨层自适应HCCA(CLA-HCCA)MAC协议的QoS保证的H.264视频在无线网状网络(WMN)上传输的新方案。这种CLA-HCCA策略利用MAC层的队列长度信息和MAC层干扰估计来在网络层进行最佳路由选择。该方案将及时交换链路容量估计(LCE)信息,以对物理层的频谱能力传输进行自适应调整。这种跨层自适应方法提供了一种优化的传输方式,以保证时间限制应用(例如视频)所需的最小数据包延迟和丢包率。由于常规的IEEE 802.11e HCCA MAC不提供跨层设计框架,因此我们需要通过设计基于LCE的新型自适应体系结构来解决与IEEE 802.11e HCCA MAC相关的问题。这种集成方案允许物理层通过在应用层中实现的视频自适应FEC(VA-FEC)方案实现最佳传输。与基于IEEE 802的最新的基于物理速率的准入控制方案(PRBAC)HCCA MAC方案相比,我们基于网络级指标(包括比特率,数据包延迟和丢包率)评估了该方案。说谎的WMN。已获得了针对拟议的CLA-HCCA和PRBAC-HCCA方案的基于H.264视频传输的广泛仿真结果。我们已经确认,由于LCE和VA-FEC能够及时适应IEEE 802.lie WMN的动态网络条件,因此所提出的CLA-HCCA策略在性能上远远优于PRBAC-HCCA MAC。

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