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Low-complexity smart antenna methods for third-generation W-CDMA systems

机译:用于第三代W-CDMA系统的低复杂度智能天线方法

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摘要

There is still an open debate within the research community regarding the likely performance enhancement of smart antennas versus their complexity for commercial wireless applications. The goal of the study presented in this paper is to investigate the performance improvement attainable using relatively simple smart antenna techniques when applied to the third-generation W-CDMA air interface. Methods to achieve this goal include fixed multibeam architectures with different beam selection algorithms (maximum power criterion, combined beams) or adaptive solutions driven by relatively simple direction finding algorithms. After comparing these methods against each other for several representative scenarios, some issues related to the sensitivity of these methods are also studied, (e.g., robustness to environment, mismatches originating from implementation limitations, etc.). Results indicate that overall, conventional beamforming seems to be the best choice in terms of balancing the performance and complexity requirements, in particular when the problem with interfering high-bit-rate W-CDMA users is considered
机译:对于智能天线可能的性能增强与商用无线应用的复杂性,研究界内部仍存在公开辩论。本文提出的研究目的是研究将相对简单的智能天线技术应用于第三代W-CDMA空口时可获得的性能改善。实现此目标的方法包括具有不同波束选择算法(最大功率准则,组合波束)的固定多波束架构,或由相对简单的测向算法驱动的自适应解决方案。在几种代表性情况下将这些方法相互比较之后,还研究了与这些方法的敏感性相关的一些问题(例如,对环境的鲁棒性,源自实施限制的失配等)。结果表明,就平衡性能和复杂性要求而言,总体而言,常规波束成形似乎是最佳选择,尤其是在考虑到干扰高比特率W-CDMA用户的问题时

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