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首页> 外文期刊>IEEE transactions on circuits and systems. II, Express briefs >Heterogeneous Multi-ASIP and NoC-Based Architecture for Adaptive Parallel TBICM-ID-SSD
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Heterogeneous Multi-ASIP and NoC-Based Architecture for Adaptive Parallel TBICM-ID-SSD

机译:自适应并行TBICM-ID-SSD的异构Multi-ASIP和基于NoC的架构

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摘要

A novel multi-ASIP and network-on-chip (NoC) based flexible architecture for parallel iterative demapping with turbo decoding using signal space diversity (TBICM-ID-SSD) is presented in this brief. The proposed heterogeneous multi-ASIP architecture uses multiple instances of two types of application-specific instruction-set processor (ASIP): one dedicated for turbo decoding and the second for demodulation, besides butterfly-topology-based NoCs. This architecture presents novel and outstanding levels of flexibility and scalability in the design of advanced iterative receivers. It supports modulation schemes from BPSK to 256-QAM for any mapping style and supports 8 state single and double binary turbo codes used in 3GPP-LTE, DVB-RCS, and WiMAX. FPGA prototyping results are presented, and the extra hardware cost required to enable turbo demodulation is evaluated.
机译:在本简介中,提出了一种新颖的基于多ASIP和片上网络(NoC)的灵活体系结构,用于使用信号空间分集(TBICM-ID-SSD)进行Turbo解码的并行迭代解映射。所提出的异构多ASIP体系结构使用两种类型的专用指令集处理器(ASIP)的多个实例:一种是专用于Turbo解码的,另一种是用于解调的,除了基于蝶形拓扑的NoC之外。这种架构在高级迭代接收器的设计中展现了新颖而出众的灵活性和可扩展性。它支持任何映射样式的从BPSK到256-QAM的调制方案,并支持3GPP-LTE,DVB-RCS和WiMAX中使用的8状态单双态Turbo码和双二进制Turbo码。给出了FPGA原型设计结果,并评估了实现Turbo解调所需的额外硬件成本。

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