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Rate, Energy, and Delay Tradeoffs in Wireless Multicast: Network Coding versus Routing

机译:无线组播中的速率,能量和延迟权衡:网络编码与路由

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摘要

We build on the framework of joint scheduling and network coding optimization. The formulation is extended to include rate, energy, and delay in network coding and routing paradigms. We then study energy-rate and delay-rate relationships to see how minimum energy and delay change as functions of multicast rate demand. The main observation is that as the rate demand approaches maximum achievable rate, the solution tends to increasingly use more diverse, longer paths. This translates into non-linearly higher energy and delay for higher input rates. In the case of energy, we are also able to show that network coding provides more benefits (when compared to routing) at higher rates. Another observation is related to the scheduling over maximal independent sets (MISs). We present results on comparing the performance of scheduling over all, exponentially growing MISs and small randomly selected subsets of MISs. Our results point to the effectiveness of the latter in achieving near-optimal rate and energy while reducing the complexity of the problem.
机译:我们建立在联合调度和网络编码优化的框架上。该表述扩展到包括速率,能量和网络编码和路由范例中的延迟。然后,我们研究能量速率和延迟速率之间的关系,以了解最小能量和延迟如何随多播速率需求而变化。主要观察结果是,随着速率需求接近最大可实现速率,该解决方案倾向于越来越多地使用更多样化,更长的路径。这转化为非线性的更高能量和更高输入速率的延迟。在能源方面,我们还能够证明网络编码以更高的速率提供了更多的好处(与路由相比)。另一个观察结果与最大独立集(MIS)上的调度有关。我们在比较所有指数增长的MIS和随机选出的MIS小子集的性能方面,给出了比较结果。我们的结果表明,后者在降低问题的复杂性的同时,可以达到接近最佳的速率和能量。

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