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A Cross-Layer Framework for Exploiting Virtual MISO Links in Mobile Ad Hoc Networks

机译:在移动自组织网络中利用虚拟MISO链接的跨层框架

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Space-time communications can help combat fading and, hence, can significantly increase the capacity of ad hoc networks. Cooperative diversity or virtual antenna arrays facilitate spatio-temporal communications without actually requiring the deployment of physical antenna arrays. Virtual MISO entails the simultaneous transmission of appropriately encoded information by multiple nodes to effectively emulate a transmission on an antenna array. We present a novel multilayer approach for exploiting virtual MISO links in ad hoc networks. The approach spans the physical, medium access control and routing layers, and provides 1) a significant improvement in the end-to-end performance in terms of throughput and delay and 2) robustness to mobility and interference-induced link failures. The key physical layer property that we exploit is an increased transmission range due to achieved diversity gain. Except for space-time signal processing capabilities, our design does not require any additional hardware. We perform extensive simulations to quantify the benefits of our approach using virtual MISO links. As compared to using only SISO links, we achieve an increase of up to 150 percent in terms of the end-to-end throughput and a decrease of up to 75 percent in the incurred end-to-end delay. Our results also demonstrate a reduction in the route discovery attempts due to link failures by up to 60 percent, a direct consequence of the robustness that our approach provides to link failures
机译:时空通信可以帮助抵抗衰落,因此可以极大地增加自组织网络的容量。合作分集或虚拟天线阵列可促进时空通信,而无需实际部署物理天线阵列。虚拟MISO要求多个节点同时传输适当编码的信息,以有效模拟天线阵列上的传输。我们提出了一种新颖的多层方法,用于利用ad hoc网络中的虚拟MISO链接。该方法跨越物理,介质访问控制和路由层,并提供1)吞吐量和延迟方面的端到端性能的显着提高,以及2)对移动性和干扰引起的链路故障的鲁棒性。我们利用的关键物理层属性是由于实现了分集增益而增加了传输范围。除了时空信号处理功能外,我们的设计不需要任何其他硬件。我们使用虚拟MISO链接进行广泛的仿真,以量化我们方法的好处。与仅使用SISO链接相比,我们将端到端吞吐量提高了150%,将端到端延迟降低了75%。我们的结果还表明,由于链路故障而导致的路由发现尝试最多减少了60%,这是我们的方法提供的链路故障鲁棒性的直接结果。

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