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Full duplex communication highly improves spectrum efficiency of a wireless communication link. However, when it is applied to a cellular network, the capacity gain from this technology remains unknown. The reason is that full duplex communication changes the aggregate interference experienced by each communication link in cellular networks. In this paper, the capacity gain from full duplex communication is studied for cellular networks of 4G and beyond, where the same frequency channel is adopted in each cell. A two-layer Poisson point process (PPP) is adopted to model the network topology, and stochastic geometry is employed to derive the coverage probability and the average capacity of typical link in a cellular network. On the basis of these derived parameters, the capacity gain from full duplex communication is determined. Numerical results reveal that without mutual interference cancellation (MIC), the capacity gain is small under various power levels; with perfect MIC at base stations, the capacity gain can exceed 60%; with imperfect MIC at base stations, the capacity gain decreases quickly even with a slight drop of MIC performance.  相似文献   
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利用计算机辅助分析软件,仿真铝合金轮圈铸造过程,以稳态收敛分析结果,观察冷却水、冷却气、模具初始温度、轮圈几何造型对轮圈铸造缩孔指标的影响。用仿真程序与缩孔、缩松预测轮圈铸造质量,找出最佳制程参数,从而降低轮圈压泄漏气率,提高轮圈铸造质量,降低生产成本。  相似文献   
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