Capacity enhancement of narrowband CDMA by intelligent antennas

U. Martin, I. Gaspard
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引用次数: 5

Abstract

A standard-compatible upgrade of IS95-CDMA base station (BS) transceivers by smart antennas can at least double the cellular radio capacity at the cost of a moderately increased transceiver complexity. This is demonstrated for the adoption of a beam diversity concept. At the sectorized BS, uniform linear antenna arrays are employed. An intelligent adaptive receiver antenna is implemented based on the DFT beamspace transform and angular-temporal RAKE combining. Downlink transmission utilizes beam selection. In Monte-Carlo-based performance assessments a special point of emphasis is put on the real-world-like modeling of the directional radio propagation phenomena. Small and large area channel models for densely built-up urban macro-cells are used which were determined from the results of a spatio-temporally sensitive sounding campaign at 1.9 GHz. Thus, the analysis results are valid for the important application case of larger urban cells operated in the PCS and IMT-2000 bands.
利用智能天线增强窄带CDMA容量
通过智能天线对IS95-CDMA基站(BS)收发器进行标准兼容升级,以适度增加收发器复杂性为代价,至少可以使蜂窝无线电容量增加一倍。采用波束分集概念证明了这一点。在分扇形BS中,采用均匀线性天线阵列。基于DFT波束空间变换和角时RAKE组合实现了一种智能自适应接收机天线。下行传输利用波束选择。在蒙特卡罗的性能评估中,一个特别的重点放在了定向无线电传播现象的真实世界模拟上。利用1.9 GHz时空敏感测深运动的结果,对密集建设的城市宏小区采用了大面积和小面积信道模型。因此,分析结果对于在PCS和IMT-2000频段运行的大型城市小区的重要应用情况是有效的。
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