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A model for the handover traffic in low Earth-orbiting (LEO) satellite networks for personal communications

机译:低地球轨道(LEO)卫星网络中用于个人通信的切换业务量模型

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The spectacular growth of cellular telephone networks has demonstrated the demand for personal communications. Communication systems based on low Earth orbit (LEO) constellations of satellites seem to be an adequate approach to achieve a worldwide network. When defining the capacity in terms of satellite circuits, the network designer has to take into account the handover traffic. Unfortunately, in a LEO communication network where handover is most often due to the network nodes motion, handover traffic models for terrestrial cellular networks cannot be used. Hence specific models must be developed. This paper proposes an analytical model for the handover in LEO satellite networks. This model is applied to different network configurations and compared to discrete-time simulations. Simulation results agree with those obtained from the analytical model.
机译:蜂窝电话网络的惊人发展证明了对个人通信的需求。基于卫星的低地球轨道(LEO)星座的通信系统似乎是实现全球网络的适当方法。在根据卫星电路定义容量时,网络设计人员必须考虑切换流量。不幸的是,在LEO通信网络中切换最常归因于网络节点的运动,因此不能使用用于地面蜂窝网络的切换业务量模型。因此,必须开发特定的模型。本文提出了一种LEO卫星网络切换的分析模型。该模型适用于不同的网络配置,并与离散时间仿真进行了比较。仿真结果与从分析模型获得的结果一致。

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