首页> 外文会议>Global Telecommunications Conference, 2004. GLOBECOM '04. IEEE >Spatial correlation models for total co-channel interference and carrier-to-interference ratio in mobile cellular systems
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Spatial correlation models for total co-channel interference and carrier-to-interference ratio in mobile cellular systems

机译:移动蜂窝系统中总同信道干扰和载波干扰比的空间相关模型

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摘要

Shadowing fading, an inevitable phenomenon caused by obstructions in the propagation path, causes large variation in the received signal strength for mobile radio environments. The spatial correlation of the shadowing effects is exponentially decayed with the increase of distance between any two separate positions. The variation of the shadowing effects is generally modeled as a Gaussian-Markov stochastic process. In this work, two Gaussian-Markov stochastic models are proposed to characterize the spatial correlation properties and the variations of the total co-channel interference (CCI) and the carrier-to-interference ratio (CIR) for mobile cellular systems. The numerical and simulation results show that these two models can characterize the spatial correlation properties of the total CCI and the CIR very well. These models can be applied to applications such as handoff scheme design, link performance prediction, link adaptation control, and performance simulations.
机译:阴影衰落是一种由传播路径中的障碍物引起的不可避免的现象,会导致移动无线电环境的接收信号强度发生较大变化。阴影效果的空间相关性随任何两个单独位置之间距离的增加而呈指数衰减。阴影效应的变化通常被建模为高斯-马尔可夫随机过程。在这项工作中,提出了两个高斯-马尔可夫随机模型来表征空间相关特性以及移动蜂窝系统的总同信道干扰(CCI)和载波干扰比(CIR)的变化。数值和仿真结果表明,这两个模型可以很好地描述总CCI和CIR的空间相关特性。这些模型可以应用于诸如切换方案设计,链路性能预测,链路自适应控制和性能仿真之类的应用。

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