J

Tian Hua
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Abstract

Most of studies on network capacity are based on the assumption that all the nodes are uniformly distributed, which means that the networks are characterized by homogeneity. However, many realistic networks exhibit inhomogeneity due to natural and man-made reasons. In this work, the capacity of inhomogeneous hybrid networks with directional antennas for the first time is studied. By setting different node distribution probabilities, the whole network can be devided into dense cells and sparse cells. On this basis, an inhomogeneous hybrid network model is proposed. The network can exhibit significant inhomogeneity due to the coexistence of two types of cells. Then, we derive the network capacity and maximize the capacity under different channel allocation schemes. Finally, how the network parameters influence the network capacity is analyzed. It is found that if there are plenty of base stations, the per-node throughput can achieve constant order, and if the beamwidth of directional antenna is small enough, the network capacity can scale.
J
大多数关于网络容量的研究都是基于所有节点均匀分布的假设,这意味着网络具有同质性。然而,由于自然和人为的原因,许多现实网络表现出非同质性。本文首次研究了具有定向天线的非均匀混合网络的容量问题。通过设置不同的节点分布概率,将整个网络划分为密集单元和稀疏单元。在此基础上,提出了一种非均匀混合网络模型。由于两种细胞的共存,网络可以表现出显著的不均匀性。然后推导出不同信道分配方案下的网络容量和最大容量。最后,分析了网络参数对网络容量的影响。研究发现,在基站数量较多的情况下,节点吞吐量可以达到定序;在定向天线波束宽度足够小的情况下,网络容量可以扩展。
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