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D2D communications based scarcity-aware two-stage multicast for video streaming

机译:基于D2D通信的稀缺性稀缺视频流的两阶段多播

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This paper proposes a device-to-device (D2D) communications based scarcity-aware two-stage multicast mechanism for delivering video streaming, in which the Base Station (BS) and D2D perform cooperative retransmissions to improve the mobile video quality and relieve the load of BS as well. In prior works, after BS's one-round multicast, the clients directly resort to D2D communications to obtain the missing frames by forming social groups. However, after the first-round multicast of BS, it is possible that some frames have not been correctly received by most of the clients, especially when the channel conditions are not good. That is, there are scarce frames in the network and the clients have very limited copies of them. In this case, it is inefficient for the clients to form social groups and directly exchange frames through D2D communications. Instead, this paper proposes an adaptive two-stage multicast mechanism: the BS first multicast video packets to the clients who request the same video services, after which the clients collect the information of missing frames and send it to the BS. Then the BS evaluates the scarcity of frames and re-multicast the scarce frames, if any, to the clients. After the BS's second-round multicast, the clients can then form groups to perform D2D communications so as to obtain the remaining missing packets from each other. Numerical studies show that the proposed simple scarcity-aware two-stage multicast mechanism can achieve about 5% video quality improvement than the existing one-stage multicast mechanism and have the potential to enhance the downlink capacity of the future 5G wireless network.
机译:本文提出的设备到设备(D2D)通信基于稀缺感知两阶段的多播递送视频流,其中,所述基站(BS)和D2D执行协作重传,以改善移动视频质量和减轻负载机构BS的为好。在以前的作品中,BS的一个轮播后,客户直接诉诸D2D通信通过形成社会群体获得丢失的帧。然而,BS的第一轮播后,有可能是某些帧没有被正确地大部分客户的好评,尤其是当信道条件不是很好。也就是说,在网络中稀缺的框架和客户都非常有限,它们的副本。在这种情况下,它是低效的客户,形成社会群体,并通过D2D通讯直接交换帧。取而代之的是,本文提出了一种自适应两级组播机制:首先,基站组播视频包谁请求相同的视频服务,在此之后,客户端收集丢失的帧的信息,并将其发送到BS的客户。然后,BS评估框架,并重新组播稀缺帧,如果有的话,客户的稀缺性。所述BS的第二轮后组播,客户端然后可以形成组并进行D2D通信,以获得彼此的剩余丢失的数据包。数值研究表明,所提出的简单的稀缺性感知两级组播机制可以实现比现有的单级组播机制约5 %的视频质量的提高,并有提升未来5G无线网络的下行链路容量的潜力。

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