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Predicting impact of multi-paths on phase change in map-based vehicular ad hoc networks

机译:在基于地图的车辆自组织网络中预测多路径对相变的影响

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Dynamic Spectrum Access, which through its ability to adapt the operating frequency of a radio, is widely believed to be a solution to the limited spectrum problem. Mobile Ad Hoc Networks (MANETs) can extend high capacity mobile communications over large areas where fixed and tethered-mobile systems are not available. In one use case with high potential impact cognitive radio employs spectrum sensing to facilitate identification of allocated frequencies not currently accessed by their primary users. Primary users own the rights to radiate at a specific frequency and geographic location, secondary users opportunistically attempt to radiate at a specific frequency when the primary user is not using it. We quantify optimal signal detection in map based cognitive radio networks with multiple rapidly varying phase changes and multiple orthogonal signals. Doppler shift occurs due to reflection, scattering, and rapid vehicle movement. Path propagation as well as vehicle movement produces either constructive or destructive interference with the incident wave. Our signal detection algorithms can assist the Doppler spread compensation algorithm by deciding how many phase changes in signals are present in a selected band of interest. Additionally we can populate a spatial radio environment map (REM) database with known information that can be leveraged in an ad hoc network to facilitate Dynamic Spectrum Access. We show how topography can help predict the impact of multi-paths on phase change, as well as about the prediction from dense traffic areas. Utilization of high resolution geospatial data layers in RF propagation analysis is directly applicable.
机译:动态频谱访问通过其适应无线电工作频率的能力,被广泛认为是有限频谱问题的一种解决方案。移动自组织网络(MANET)可以在没有固定和系留移动系统的大区域上扩展高容量移动通信。在具有高潜在影响的一个使用案例中,认知无线电采用频谱感应来帮助识别其主要用户当前未访问的已分配频率。主要用户拥有以特定频率和地理位置辐射的权利,次要用户在主要用户不使用辐射时尝试以特定频率辐射。我们量化具有多个快速变化的相位变化和多个正交信号的基于地图的认知无线电网络中的最佳信号检测。由于反射,散射和车辆快速移动,会发生多普勒频移。路径传播以及车辆运动都会对入射波产生相长干涉或相消干涉。我们的信号检测算法可以通过确定感兴趣的选定频段中信号中存在多少个相位变化来辅助多普勒扩展补偿算法。此外,我们可以使用已知信息填充空间无线电环境地图(REM)数据库,这些信息可以在ad hoc网络中利用以促进动态频谱访问。我们将展示地形如何帮助预测多径对相变的影响,以及如何从密集交通区域进行预测。在射频传播分析中使用高分辨率地理空间数据层是直接适用的。

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