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Design and implementation of application-specific instruction-set processor design for high-throughput multi-standard wireless orthogonal frequency division multiplexing baseband processor

机译:高通量多标准无线正交频分复用基带处理器的专用指令集处理器设计与实现

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摘要

The two implementation choices for the baseband part of wireless radios are the application-specific platforms (e.g. application-specific integrated circuits (ASICs)) and the programmable processors (e.g. digital signal processors (DSPs)). An application-specific instruction-set processor (ASIP) is a customised processor that bridges the gap between the two platforms. In this work, a novel implementation of the signal processing part of an orthogonal frequency division multiplexing (OFDM) baseband processor using three ASIPs is presented. The ASIPs provide novel architectures for the symbol chain, including fast Fourier transform, channel estimation subsystem and synchronisation subsystem. This design provides a close to DSPs level of flexibility, making it suitable for supporting all the modes of a large number of OFDM standards. In the meantime, the system maintains a performance level comparable to ASICs. This is demonstrated by providing post-layout results for 0.13 μm Taiwan semiconductor manufacturing company complementary metal-oxide semiconductor technology.
机译:无线电基带部分的两种实现选择是专用平台(例如,专用集成电路(ASIC))和可编程处理器(例如,数字信号处理器(DSP))。专用指令集处理器(ASIP)是定制的处理器,可以弥合两个平台之间的鸿沟。在这项工作中,提出了使用三个ASIP的正交频分复用(OFDM)基带处理器的信号处理部分的新颖实现。 ASIP为符号链提供了新颖的架构,包括快速傅立叶变换,信道估计子系统和同步子系统。这种设计提供了接近DSP的灵活性,使其适合于支持大量OFDM标准的所有模式。同时,该系统保持与ASIC相当的性能水平。通过提供0.13μm台湾半导体制造公司互补金属氧化物半导体技术的布局后结果,可以证明这一点。

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