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Maximizing The Delivery Of Mpr Broadcasting Under Realistic Physical Layer Assumptions

机译:在实际物理层假设下最大化Mpr广播的交付

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It is now commonly accepted that the unit disk graph used to model the physical layer in wireless networks does not reflect real radio transmissions, and that a more realistic model should be considered for experimental simulations. Previous work on realistic scenarios has been focused on unicast, however broadcast requirements are fundamentally different and cannot be derived from the unicast case. Therefore, the broadcast protocols must be adapted in order to still be efficient under realistic assumptions. In this paper, we study the well-known multipoint relay broadcast protocol (MPR), in which each node has to choose a set of 1-hop neighbors to act as relays in order to cover the whole 2-hop neighborhood. We give experimental results showing that the original strategy used to select these multipoint relays does not suit a realistic model. On the basis of these results, we propose new selection strategies solely based on link quality. One of the key aspects of our solutions is that our strategies do not require any additional hardware and may be implemented at the application layer, which is particularly relevant to the context of ad hoc and sensor networks where energy savings are mandatory. We finally provide new experimental results that demonstrate the superiority of our strategies under realistic physical assumptions.
机译:现在,通常公认的是,用于对无线网络中的物理层进行建模的单位磁盘图不能反映实际的无线电传输,因此,对于实验仿真,应考虑使用更现实的模型。以前在现实场景中的工作主要集中在单播,但是广播要求从根本上不同,不能从单播情况中得出。因此,必须调整广播协议,以便在现实的假设下仍然有效。在本文中,我们研究了众所周知的多点中继广播协议(MPR),其中每个节点必须选择一组1跳邻居作为中继,以覆盖整个2跳邻居。我们给出的实验结果表明,用于选择这些多点继电器的原始策略不适合实际模型。基于这些结果,我们提出了仅基于链路质量的新选择策略。我们解决方案的关键方面之一是我们的策略不需要任何额外的硬件,并且可以在应用层实现,这特别与必须节能的自组织网络和传感器网络有关。我们最终提供了新的实验结果,这些结果证明了在现实的物理假设下我们的策略的优越性。

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