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Device-to-Device assisted wireless video delivery with network coding

机译:利用网络编码的设备到设备辅助无线视频传输

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摘要

Broadcasting popular data content such as videos to multiple users is widely used in mobile wireless networks. We consider a group of mobile users, within proximity of each other, who are interested in the same video or cloud services. In this scenario, users are able to use device-to-device (D2D) connections, e.g., WiFi or Bluetooth, to get the video in a cooperative way. In this paper we consider the D2D-assisted wireless network coded video broadcast problem for users with multiple interfaces to minimize the number of transmission slots. In order to obtain all needed videos, user can receive encoded packet according to cellular link and local cooperative D2D links simultaneously. We analyze the lower bound and upper bound of number of transmission slots under two different receiver models. In the first model, receiver just drop the encoded packet which cannot be decoded immediately, and we propose a joint broadcast and D2D encoding solution based on the clique partition in the graph. In the second model that receiver can buffer all received encoded packets and decode when enough packets are received, we propose an optimal solution using an integer linear programming (ILP) formulation, and we also propose an effective heuristic encoding solution based on random linear coding. Simulation results show that the proposed transmission strategy can significantly reduce the number of transmission slots in most cases, which is an important performance metric in wireless video delivery. (C) 2017 Elsevier B.V. All rights reserved.
机译:在移动无线网络中广泛使用向多个用户广播诸如视频之类的流行数据内容。我们考虑对同一视频或云服务感兴趣的一群彼此相邻的移动用户。在这种情况下,用户可以使用设备到设备(D2D)连接,例如WiFi或蓝牙,以协作方式获取视频。在本文中,我们考虑了具有多个接口的用户的D2D辅助无线网络编码视频广播问题,以最大程度地减少传输时隙的数量。为了获得所有需要的视频,用户可以同时根据蜂窝链路和本地协作D2D链路接收编码的数据包。我们分析了两种不同接收机模型下传输时隙数量的下限和上限。在第一个模型中,接收者只是丢弃了无法立即解码的编码数据包,并且我们基于图中的集团分区提出了一种联合广播和D2D编码解决方案。在接收器可以缓冲所有接收到的编码数据包并在接收到足够的数据包时进行解码的第二种模型中,我们提出了使用整数线性规划(ILP)公式的最佳解决方案,并且还提出了基于随机线性编码的有效启发式编码解决方案。仿真结果表明,所提出的传输策略在大多数情况下可以显着减少传输时隙的数量,这是无线视频传输中的重要性能指标。 (C)2017 Elsevier B.V.保留所有权利。

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