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Smart Antennas in a WCDMA Radio Network System: Modeling and Evaluations

机译:WCDMA无线电网络系统中的智能天线:建模和评估

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A comprehensive study is given of smart antennas for wide-band code-division multiple access (WCDMA). It analyzes, evaluates, and presents methods and ideas for the deployment of smart antennas in WCDMA third-generation wireless systems and for future generations. Three major implementations are evaluated and analyzed in a dynamic system simulator: higher order sectorization (HOS), fixed beams (FBs) with secondary common pilot channel (S-CPICH), and FBs with primary common pilot channel (P-CPICH) as a phase reference. The system modeling integrates antenna and wave propagation modeling to evaluate and design smart antennas in wireless communications. Furthermore, this paper analyzes the impact of angular spread of various antenna configurations, the interaction and impact of radio resource management as power tuning of the common channel, scrambling code (SCO) allocation technique, and soft and softer handover algorithm. Moreover, an SCO allocation strategy and an adaptive load-dependent power-tuning algorithm of the P-CPICH are proposed. Furthermore, a signal-to-(interference plus noise) ratio derivation is given. Extensive simulation studies are carried out to evaluate the capacity gains of HOS and FB. The 12-sector sites yield the best system downlink capacity gain compared to three-sector sites equipped with a single antenna, slightly more than three-sector sites equipped with four FBs each. The six-sector sites equipped with two FBs each reduce the gap between HOS and FB systems to 10%
机译:对用于宽带码分多址(WCDMA)的智能天线进行了全面研究。它分析,评估并提出了在WCDMA第三代无线系统中以及为子孙后代部署智能天线的方法和思想。在动态系统仿真器中评估和分析了三种主要实现方式:高阶扇区化(HOS),具有辅助公共导频信道(S-CPICH)的固定波束(FB)和具有主要公共导频信道(P-CPICH)的FB相位参考。该系统建模集成了天线和波传播建模,以评估和设计无线通信中的智能天线。此外,本文分析了各种天线配置的角展度的影响,作为公共信道功率调整的无线电资源管理的相互作用和影响,扰码(SCO)分配技术以及越来越软的切换算法。此外,提出了一种SCO分配策略和P-CPICH的自适应负载相关功率调整算法。此外,给出了信噪比的推导。进行了广泛的仿真研究,以评估居屋和FB的容量增益。与配备单个天线的三个扇区站点相比,这十二个扇区站点产生的系统下行链路容量增益最佳,比每个三个站点都配备四个FB的站点略多。六个扇区的站点配备了两个FB,每个站点将HOS和FB系统之间的距离减少了10%

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