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Codesign implementation of a 3G base station receiver

机译:3G基站接收器的协同设计实现

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We show how a software/hardware codesign approach can lead to the implementation of a spatio-temporal array-receiver (STAR) in a 3G WCDMA base station context. STAR has already proven substantial gains over the 2D RAKE receiver (Affes, S. and Mermelstein, P., IEEE J. Select. Areas Commun., vol.16, p.1411-22, 1998), and current technology is now sufficiently integrated to allow its cost-efficient hardware implementation. To this end, we demonstrate how the STAR algorithm can be translated to fit into a mixed FPGA/GPP (general purpose processor) architecture. We also define a data flow path, including pipelining and sequencing, which can be used to increase the number of channels that can be processed simultaneously within the system.
机译:我们展示了软件/硬件代码签名方法如何在3G WCDMA基站环境中导致时空阵列接收器(STAR)的实现。事实证明,STAR已经比2D RAKE接收机获得了实质性的收益(Affes,S。和Mermelstein,P.,IEEE J. Select。Areas Commun。,第16卷,第1411-22页,1998年),并且目前的技术已经足够集成以实现其经济高效的硬件实施。为此,我们演示了如何将STAR算法转换为适合混合的FPGA / GPP(通用处理器)体系结构。我们还定义了一条数据流路径,包括流水线和排序,可用于增加可在系统内同时处理的通道数。

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