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Spectrum-efficient routing algorithms with successive interference cancellation in multi-hop wireless networks

机译:多跳无线网络中具有连续干扰消除功能的频谱高效路由算法

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Successive Interference Cancellation (SIC) is a potentially powerful technique for improving the performance of multi-hop wireless networks, owing to its ability to enable concurrent receptions from multiple transmitters as well as interference rejection. In this paper, we address the problem of finding the route with maximal end-to-end spectral efficiency in multi-hop wireless networks, under the constraint of optimal bandwidth sharing. By taking advantage of SIC, more transmission opportunities are exploited by the nodes along the selected path. We formulate a cross-layer optimization framework to quantify the spectral efficiency improvement with SIC and then make use of several structural properties to derive exact solutions. Additionally, three SIC-based routing alternatives with low computational complexity are proposed, on the basis of the conventional shortest path algorithm, to obtain spectrum-efficient routes. Numerous simulation results verify that SIC can bring significant gains in terms of spectral efficiency.
机译:连续干扰消除(SIC)由于具有能够同时接收来自多个发射机的信号以及抑制干扰的能力,因此它是一种用于改善多跳无线网络性能的潜在强大技术。在本文中,我们解决了在最佳带宽共享的约束下,在多跳无线网络中找到具有最大端到端频谱效率的路由的问题。通过利用SIC,沿着所选路径的节点将利用更多的传输机会。我们制定了一个跨层优化框架,以量化SIC的频谱效率改善,然后利用几种结构特性来得出精确的解决方案。另外,在常规最短路径算法的基础上,提出了三种计算复杂度较低的基于SIC的路由选择方案,以获得频谱有效的路由。大量的仿真结果证明,SIC可以在频谱效率方面带来巨大的收益。

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