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Simulation and experimental testbed for adaptive video streaming in ad hoc networks

机译:Ad hoc网络中自适应视频流的仿真和实验测试平台

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This paper presents a performance evaluation of the scalable video streaming over mobile ad hoc networks. In particular, we focus on the rate-adaptive method for streaming scalable video (H.264/SVC). For effective adaptation a new cross-layer routing protocol is introduced. This protocol provides an efficient algorithm for available bandwidth estimation. With this information, the video source adjusts its bit rate during the video transmission according to the network state. We also propose a free simulation framework that supports evaluation studies for scalable video streaming. The simulation experiments performed in this study involve the transmission of SVC streams with Medium Grain Scalability (MGS) as well as temporal scalability over different network scenarios. The results reveal that the rate-adaptive strategy helps avoid or reduce the congestion in MANETs obtaining a better quality in the received videos. Additionally, an actual ad hoc network was implemented using embedded devices (Raspberry Pi) in order to assess the performance of the proposed adaptive transmission mechanism in a real environment. Additional experiments were carried out prior to the implementation with the aim of characterizing the wireless medium and packet loss profile. Finally, the proposed approach shows an important reduction in energy consumption, as the study revealed. (C) 2016 Elsevier B.V. All rights reserved.
机译:本文提出了对移动自组织网络上可伸缩视频流的性能评估。特别是,我们专注于流可伸缩视频(H.264 / SVC)的速率自适应方法。为了有效地适应,引入了新的跨层路由协议。该协议为可用带宽估计提供了一种有效的算法。利用此信息,视频源会根据网络状态在视频传输过程中调整其比特率。我们还提出了一个免费的仿真框架,该框架可支持可伸缩视频流的评估研究。在这项研究中进行的模拟实验涉及具有中等粒度可伸缩性(MGS)的SVC流的传输以及在不同网络场景下的时间可伸缩性。结果表明,速率自适应策略有助于避免或减少MANET中的拥塞,从而在接收的视频中获得更好的质量。另外,使用嵌入式设备(Raspberry Pi)实现了一个实际的ad hoc网络,以便在实际环境中评估所提出的自适应传输机制的性能。在实施之前进行了其他实验,目的是表征无线介质和丢包情况。最后,该研究表明,所提出的方法显示出能源消耗的显着减少。 (C)2016 Elsevier B.V.保留所有权利。

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