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Performance evaluation of 2D RAKE algorithms for WCDMA-DL applications at the handset

机译:手机上用于WCDMA-DL应用的2D RAKE算法的性能评估

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Several 2D RAKE algorithms have been evaluated for performance improvement over a conventional single antenna RAKE receiver at the handset for WCDMA downlink air interface. The main focus of the research is to study the feasibility of smart antenna algorithms for handset application and to identify the best candidate algorithm in terms of performance improvement (BLER) and relative hardware complexity (power and area requirements on a chip). The candidate algorithms are based on the following performance metrics: maximum signal-to-noise ratio (MSNR), maximum signal-to-interference-plus-noise ratio (MSINR) and minimum mean squared error (MMSE). The algorithms have been investigated for hardware complexity based on TSMC 0.18 μm technology. 3GPP specified propagation channels and test conditions have been employed to evaluate coded BLER performance. The improvement in error rate performance combined with relative hardware complexity are used to assess the feasibility of an algorithm for handset applications.
机译:已针对WCDMA下行链路空中接口的手机上的常规单天线RAKE接收器评估了几种2D RAKE算法,以提高性能。该研究的主要重点是研究智能天线算法在手机应用中的可行性,并在性能改进(BLER)和相对硬件复杂性(芯片上的功率和面积要求)方面确定最佳候选算法。候选算法基于以下性能指标:最大信噪比(MSNR),最大信噪比加噪声比(MSINR)和最小均方误差(MMSE)。已经针对基于台积电0.18μm技术的硬件复杂性对算法进行了研究。已使用3GPP指定的传播信道和测试条件来评估已编码的BLER性能。错误率性能的提高与相对硬件复杂性的结合被用于评估手机应用算法的可行性。

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