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首页> 外文期刊>IEEE Transactions on Communications >Delivering High-Frame-Rate Video to Mobile Devices in Heterogeneous Wireless Networks
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Delivering High-Frame-Rate Video to Mobile Devices in Heterogeneous Wireless Networks

机译:在异构无线网络中向移动设备交付高帧速视频

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High-frame rate (HFR) video streaming is emerging as a new paradigm in popular multimedia applications (e.g., mobile cloud gaming) to achieve smooth viewing experience perceived by end users. However, it is severely challenging to guarantee the delivery quality of HFR video over wireless platforms with regard to the high transmission rate and limited network resources. Multihoming capability enables mobile devices to concurrently receive video data with different radio interfaces (e.g., cellular and Wi-Fi). To effectively deliver mobile HFR video over multiple wireless access networks, this paper develops an application-layer transmission scheme dubbed joint FRAme Scheduling and Error Resilience (FRASER). First, we propose an unequal frame scheduling approach by taking advantage of interlaced forward error correction coding and reliability-aware data allocation to minimize the total distortion. Second, we introduce an error resilience scheme at the receiver side to proactively leverage the out-of-order and overdue video packets to mitigate the error propagations. The proposed FRASER is able to substantially reduce the probability of I (Intra) frame loss and consecutive P (Predicted) frame drops. We conduct the performance evaluation through extensive emulations in Exata involving HFR video streaming encoded with H.264 codec. Evaluation results show that FRASER outperforms the reference transmission schemes in terms of video peak signal-to-noise ratio, end-to-end delay, and received frame rate. Thus, FRASER is recommended for delivering HFR video streaming to multihomed mobile devices in heterogeneous wireless networks.
机译:高帧率(HFR)视频流正在成为流行的多媒体应用程序(例如,移动云游戏)中的一种新范例,以实现最终用户感知的流畅观看体验。然而,就高传输速率和有限的网络资源而言,要保证通过无线平台的HFR视频的传送质量面临着严峻的挑战。多宿主功能使移动设备能够通过不同的无线电接口(例如,蜂窝和Wi-Fi)同时接收视频数据。为了有效地通过多个无线访问网络交付移动HFR视频,本文开发了一种称为联合FRAme调度和错误恢复(FRASER)的应用层传输方案。首先,我们提出了一种不等价的帧调度方法,它利用隔行前向纠错编码和可靠性感知的数据分配来最大程度地减少总失真。其次,我们在接收器端引入了一种错误恢复方案,以主动利用乱序和过期视频包来缓解错误传播。提出的FRASER能够大幅降低I(帧内)丢帧和连续P(预测)帧丢失的可能性。我们通过在Exata中进行广泛的仿真来进行性能评估,其中涉及使用H.264编解码器编码的HFR视频流。评估结果表明,在视频峰值信噪比,端到端延迟和接收帧速率方面,FRASER优于参考传输方案。因此,建议使用FRASER将HFR视频流传输到异构无线网络中的多宿主移动设备。

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