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Analysis and Optimization of Sparse Random Linear Network Coding for Reliable Multicast Services

机译:可靠组播业务稀疏随机线性网络编码的分析与优化

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Point-to-multipoint communications are expected to play a pivotal role in next-generation networks. This paper refers to a cellular system transmitting layered multicast services to a multicast group of users. Reliability of communications is ensured via different random linear network coding (RLNC) techniques. We deal with a fundamental problem: the computational complexity of the RLNC decoder. The higher the number of decoding operations is, the more the user’s computational overhead grows and, consequently, the faster the battery of mobile devices drains. By referring to several sparse RLNC techniques, and without any assumption on the implementation of the RLNC decoder in use, we provide an efficient way to characterize the performance of users targeted by ultra-reliable layered multicast services. The proposed modeling allows to efficiently derive the average number of coded packet transmissions needed to recover one or more service layers. We design a convex resource allocation framework that allows to minimize the complexity of the RLNC decoder by jointly optimizing the transmission parameters and the sparsity of the code. The designed optimization framework also ensures service guarantees to predetermined fractions of users. The performance of the proposed optimization framework is then investigated in a LTE-A eMBMS network multicasting H.264/SVC video services.
机译:点对多点通信有望在下一代网络中发挥关键作用。本文涉及一种将多层组播服务传输到用户组播组的蜂窝系统。通过不同的随机线性网络编码(RLNC)技术可确保通信的可靠性。我们处理一个基本问题:RLNC解码器的计算复杂性。解码操作的次数越多,用户的计算开销增长得越多,因此,移动设备的电池消耗越快。通过引用几种稀疏的RLNC技术,并且无需对使用中的RLNC解码器的实现进行任何假设,我们提供了一种有效的方法来表征以超可靠的分层多播服务为目标的用户的性能。所提出的模型允许有效地导出恢复一个或多个服务层所需的编码分组传输的平均数量。我们设计了一个凸资源分配框架,该框架允许通过共同优化传输参数和代码稀疏性来最小化RLNC解码器的复杂性。设计的优化框架还确保为预定部分用户提供服务保证。然后,在多播H.264 / SVC视频服务的LTE-A eMBMS网络中研究提出的优化框架的性能。

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