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Channel and content aware 3D video scheduling with prioritized queuing

机译:具有优先级排队功能的可感知频道和内容的3D视频调度

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In this paper we address 3D video delivery over wireless systems based on Orthogonal Frequency Division Multiple Access (OFDMA), by considering a Medium Access Control (MAC) layer scheduling method combined with a prioritized queuing mechanism to prioritize the most important video components/layers with the goal of improving the perceived quality of 3D video at the receiver. We consider colour plus depth 3D video and we exploit its properties in terms of importance of the different components for the perceived quality. The priority values of the Scalable Video Coding (SVC) encoded 3D video are signalled from the Application Layer to the MAC layer via cross-layer signalling. All the users attached to a Base Station feedback their sub-channel gain to the Base Station periodically via partial Channel State Information (CSI) and this information is used in the sub-channel allocation process at the scheduler. Thereby, the proposed scheduler always guarantees that the most important layers are scheduled over the sub channels with higher gain at each time slot of an OFDMA frame. Furthermore, we have established a Packet Loss Rate (PLR) threshold which is used by the scheduler to drop video layers which are worst affected by packet losses to save scarce radio resources. Simulation results show that the MAC layer PLR is improved in the prioritized colour/depth layers at the cost of slight increase in PLR in the low prioritized layers. This results in a global quality improvement for the prioritized case.
机译:在本文中,我们考虑了介质访问控制(MAC)层调度方法与优先级排队机制相结合,以优先考虑最重要的视频组件/层,从而解决了基于正交频分多址(OFDMA)的无线系统上的3D视频传递问题。改善接收器3D视频感知质量的目标。我们考虑彩色加深度3D视频,并根据不同组件对感知质量的重要性来利用其属性。可伸缩视频编码(SVC)编码的3D视频的优先级值通过跨层信令从应用程序层发送到MAC层。附加到基站的所有用户都通过部分信道状态信息(CSI)周期性地将其子信道增益反馈给基站,并且此信息在调度程序的子信道分配过程中使用。因此,所提出的调度器总是保证在OFDMA帧的每个时隙上以较高的增益在子信道上调度最重要的层。此外,我们已经建立了一个数据包丢失率(PLR)阈值,调度程序使用它来丢弃受数据包丢失影响最严重的视频层,以节省稀缺的无线电资源。仿真结果表明,MAC层PLR在优先颜色/深度层中得到了改善,但代价是低优先级中的PLR略有增加。这导致优先案例的整体质量提高。

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