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Software Radio Implementation of a Smart Antenna System on Digital Signal Processors for cdma2000

机译:cdma2000数字信号处理器上智能天线系统的软件无线电实现

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This paper presents a software defined radio (SDR) implementation based on programmable digital signal processors (DSP) for smart antenna systems (SAS). We evaluate adaptive beamforming algorithms, namely non-blind-type least mean square (LMS) and blind-type constant modulus (CM) using TI TMS320C6000 high performance DSPs for cdma2000 reverse link. Adaptive beamformers are implemented using TI code composer studio (CCS) that includes assembly language and C code development tools. Performance variation of these sofware radio beamformers in terms of weight computation time and received SINR are compared for different C6000 development boards (TMS320C6701 EVM, TMS320C6711 DSK, and TMS320C6713 DSK) and array topologies under varying multipath propagation conditions. Results show that while antenna array and algorithm type are important for the SINR performance, DSP type becomes important for the weight computation time.
机译:本文介绍了一种基于智能天线系统(SAS)的可编程数字信号处理器(DSP)的软件定义无线电(SDR)实现。我们使用适用于cdma2000反向链路的TI TMS320C6000高性能DSP评估自适应波束形成算法,即非盲型最小均方(LMS)和盲型恒定模量(CM)。自适应波束形成器是使用TI代码编写器工作室(CCS)实现的,其中包括汇编语言和C代码开发工具。在不同的多径传播条件下,针对不同的C6000开发板(TMS320C6701 EVM,TMS320C6711 DSK和TMS320C6713 DSK)和阵列拓扑,比较了这些软件无线电波束成形器在重量计算时间和接收SINR方面的性能变化。结果表明,虽然天线阵列和算法类型对SINR性能很重要,但DSP类型对权重计算时间却很重要。

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