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A Practical Space-Code Correlator Receiver for DSP Based Software Radio Implementation in CDMA2000

机译:CDMA2000中基于DSP的软件无线电实现的实用空间码相关器接收器

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Development of practical algorithms for beamforming in 3G CDMA systems and their software radio implementations are still a challenging task, which will facilitate upgrading of traditional base stations into smart antenna capable 3G base stations. In this paper, we propose a practical space-code correlator (SCC) receiver structure for its software radio implementation a DSP. SCC's advantage comes from the fact that it doesn't require any training sequence or learning parameter as in other algorithms (LMS or CM). DSP implementations of the SCC are performed using Texas Instruments C67xx family platforms. In the simulations, reverse link base band signal format of CDMA2000 is used and the effects of different array topologies (uniform linear array-ULA or uniform circular array-UCA) are considered. The implementation results regarding beamforming accuracy, weight vector computation time (execution time), search resolution effect on DOA estimation accuracy, DSP resource utilization, and received SINR are presented. The results show that DSP based SCC beamformer can estimate weight vectors within less than 10 ms with DOA search resolution of 2° especially when C6713 DSP is used. With faster DSPs and larger search resolutions, execution time could be significantly reduced as well. It provides comparable SINR performance with LMS and CM algorithms.
机译:在3G CDMA系统中开发实用的波束成形算法及其软件无线电实现仍然是一项艰巨的任务,这将有助于将传统基站升级为具有智能天线功能的3G基站。在本文中,我们提出了一种实用的空间码相关器(SCC)接收器结构,用于其软件无线电实现DSP。 SCC的优势在于它不需要像其他算法(LMS或CM)中那样的任何训练序列或学习参数。 SCC的DSP实现是使用Texas Instruments C67xx系列平台执行的。在仿真中,使用了CDMA2000的反向链路基带信号格式,并考虑了不同阵列拓扑(均匀线性阵列-ULA或均匀圆形阵列-UCA)的影响。给出了有关波束成形精度,权重向量计算时间(执行时间),搜索分辨率对DOA估计精度,DSP资源利用率和接收到的SINR的实现结果。结果表明,基于DSP的SCC波束形成器可以在不到10 ms的时间内估计权重矢量,DOA搜索分辨率为2°,尤其是在使用C6713 DSP的情况下。使用更快的DSP和更大的搜索分辨率,执行时间也可以大大减少。它通过LMS和CM算法提供可比的SINR性能。

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