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Nearest Distance Based Downlink Rate Modeling in Hyper-dense Heterogeneous Wireless Cell Networks

机译:超密集异构无线网络网络中最近的基于距离的下行链路速率建模

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摘要

Different kinds of low transmit power, flexible cell extension and hyper dense base stations (BSs) overlaying on the well established macro cells, forming the hyper-dense multilayer heterogeneous wireless cell networks (HetNets), where the BSs in each tier are characterized by the differences in BSs transmit power, path loss exponent, tier-biasing factor and BSs spatial density, is the promising technology for 5th generation mobile networks and to support hot spots and cell edge coverage. The HetNets downlink rate modeling is one of the key and challenge problems for the random deployment characteristics of BSs in lower layer. In this paper, a three tier HetNets, which includes macro tier, Pico tier and Femto tier, is first modeled with the spatial point process in stochastic geometry theory; then, considering the BSs low transmit power, flexible cell extension and hyper BSs spatial density, a tractable downlink rate model based on the nearest distance and bias accepted factor is proposed, which adopt stochastic geometry theory and is easy to compute; last, the proposed downlink rate model is validated by numerical examples to confirm that the flexible cell extension BSs deployment in complex high traffic area with different path loss exponent is an effective scheme to improve quality of service.
机译:不同种类的低传输功率,柔性电池延伸和超密集的基站(BSS)覆盖在良好的宏观小区上,形成了多层多层的异构无线网络(Hetnet),其中每个层中的BSS的特征在于BSS发射功率,路径损耗指数,层偏置因子和BSS空间密度的差异是第五代移动网络的有希望的技术,并支持热点和细胞边缘覆盖。 Hetnets下行链路速率建模是下层中BSS随机部署特性的关键和挑战问题之一。在本文中,三层Hetnet,包括宏层,微微层和毫微微层,首先用随机几何论中的空间点过程建模;然后,考虑到BSS低发射功率,柔性电池延伸和超BSS空间密度,提出了一种基于最接近距离和偏置接受因子的易诊下行率模型,其采用随机几何论,易于计算;最后,通过数字示例验证了所提出的下行链路速率模型,以确认具有不同路径损耗指数的复杂高流量区域中的灵活单元扩展BSS部署是提高服务质量的有效方案。

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