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Completion Delay Minimization for Instantly Decodable Network Codes

机译:即时可解码网络代码的完成延迟最小化

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摘要

In this paper, we consider the problem of minimizing the completion delay for instantly decodable network coding (IDNC) in wireless multicast and broadcast scenarios. We are interested in this class of network coding due to its numerous benefits, such as low decoding delay, low coding and decoding complexities, and simple receiver requirements. We first extend the IDNC graph, which represents all feasible IDNC coding opportunities, to efficiently operate in both multicast and broadcast scenarios. We then formulate the minimum completion delay problem for IDNC as a stochastic shortest path (SSP) problem. Although finding the optimal policy using SSP is intractable, we use this formulation to draw the theoretical guidelines for the policies that can minimize the completion delay in IDNC. Based on these guidelines, we design a maximum weight clique selection algorithm, which can efficiently reduce the IDNC completion delay in polynomial time. We also design a quadratic-time heuristic clique selection algorithm, which can operate in real-time applications. Simulation results show that our proposed algorithms significantly reduce the IDNC completion delay compared to the random and maximum-rate algorithms, and almost achieve the global optimal completion delay performance over all network codes in broadcast scenarios.
机译:在本文中,我们考虑了在无线多播和广播场景中使即时可解码网络编码(IDNC)的完成延迟最小化的问题。我们对此类网络编码感兴趣,因为它具有许多优点,例如低解码延迟,低编码和解码复杂性以及简单的接收器要求。我们首先扩展代表所有可行IDNC编码机会的IDNC图,以有效地在多播和广播场景中运行。然后,我们将IDNC的最小完成延迟问题表述为随机最短路径(SSP)问题。尽管使用SSP查找最佳策略是很棘手的,但我们使用此公式为可以最小化IDNC的完成延迟的策略绘制了理论指导。基于这些准则,我们设计了最大权重集团选择算法,该算法可以有效地减少多项式时间内IDNC完成的延迟。我们还设计了一种可以在实时应用中运行的二次时间启发式团选择算法。仿真结果表明,与随机和最大速率算法相比,我们提出的算法显着减少了IDNC完成延迟,并且在广播场景中几乎可以在所有网络代码上实现全局最佳完成延迟性能。

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