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Use of distributed antenna systems in maximizing data throughput in 3G microcellular systems-simulation study of the effect of correlated shadowing

机译:分布式天线系统在3G微孔系统中最大化数据吞吐量中的应用 - 相关阴影效果的仿真研究

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The use of multiple geographically-distributed base station antennas to improve high speed multimedia service in a microcellular UMTS system is studied. Macro-diversity is used with widely separated antennas assuming micro-cells whose radii are in the range of hundreds of meters, and the effect of correlation between paths due to the smaller size of the cells is accounted for. Using a simulation of the downlink, assuming optimal power control and equal power allocation to all transmit-diversity branches, the geographical location of multiple base station antennas in hexagonal-shaped cells is varied to find the maximum bit rate for a varying number of active users randomly located in the cell. It is shown that the best location of the antennas need to be at a distance of 40??60% of the cell radius. Distributed antenna systems are found to be a good candidate for low processing gain, high-data rate transmissions.
机译:研究了多个地理上分布式基站天线来改善微孔UMTS系统中的高速多媒体服务。 宏观多样性与假设微电池的广泛分离的天线一起使用,其半电池在数百米的范围内,并且考虑了由于电池尺寸较小的路径之间的相关性的效果。 使用下行链路的模拟,假设最佳功率控制和对所有传输分集的相等功率分配,多个基站天线在六边形单元中的地理位置变化,以找到变化数量的活动用户的最大比特率 随机位于细胞中。 结果表明,天线的最佳位置需要处于40%的电池半径的距离。 发现分布式天线系统是低处理增益,高数据速率传输的良好候选者。

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