Capacity and trunking efficiency of smart antenna

D.J.Y. Lee, Ce Xu
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引用次数: 4

Abstract

The smart antenna is believed to be the solution for a high capacity system. It improves both C/I ratio and trunk efficiency. In this paper, we use a computer simulation to compare the capacity among omni, 3-sector, Lee's micro cell, 6 sector and a 12-antenna switched beam smart antenna. First, the C/I ratios under different pathless exponent and reuse factor are compared within these systems. Then, the trunking efficiencies among these systems are also compared. As the result shows, the smart antenna does support a reasonably good C/I ratio, and the highest trunking efficiency. This simulator is also enhanced to calculate the path loss exponent for specific design areas based on the collected measured data. This path loss exponent then can be used as input to the simulator to simulate the C/I and frequency reuse factor for the area. Measured data were collected in LA. Path loss exponents were calculated using Lee's propagation model. Based on the calculated path loss exponent and the simulator, in a dense urban area, the smart antenna system can support a k=3 reuse scheme.
智能天线的容量和集群效率
智能天线被认为是高容量系统的解决方案。它提高了C/I比和干线效率。本文通过计算机仿真比较了全扇区、3扇区、李氏微蜂窝、6扇区和12天线切换波束智能天线的容量。首先,比较了不同无路径指数和重用系数下系统的C/I比率。然后,比较了这些系统之间的集群效率。结果表明,该智能天线确实支持相当好的C/I比和最高的集群效率。该模拟器还可以根据收集的测量数据计算特定设计区域的路径损耗指数。这个路径损耗指数然后可以用作模拟器的输入,以模拟该区域的C/I和频率重用因子。测量数据在洛杉矶收集。利用Lee的传播模型计算路径损耗指数。基于计算的路径损耗指数和模拟器,在人口密集的城市地区,智能天线系统可以支持k=3的复用方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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