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Reconfigurable baseband processing architecture for communication

机译:用于通信的可重配置基带处理架构

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The development of multiple communication standards and services has created the need for a flexible and efficient computational platform for baseband signal processing. Using a set of heterogeneous reconfigurable execution units (RCEUS) and a homogeneous control mechanism, the proposed reconfigurable architecture achieves a large computational capability while still providing a high degree of flexibility. Software tools and a library of commonly used algorithms are also proposed in this paper to provide a convenient framework for hardware generation and algorithm mapping. In this way, the architecture can be specified in a high-level language and it also provides increased hardware resource usage. Finally, we evaluate the system's performance on representative algorithms, specifically a 32-tap finite impulse response (FIR) filter and a 256-point fast Fourier transform (FFT), and compare them with commercial digital signal processor (DSP) chips as well as with other reconfigurable and multi-core architectures.
机译:多种通信标准和服务的发展产生了对用于基带信号处理的灵活高效的计算平台的需求。通过使用一组异构的可重配置执行单元(RCEUS)和同类控制机制,所提出的可重配置体系结构实现了很大的计算能力,同时仍提供了高度的灵活性。本文还提出了软件工具和常用算法库,为硬件生成和算法映射提供了方便的框架。这样,可以用高级语言指定体系结构,并且还可以提高硬件资源的使用率。最后,我们根据代表性算法评估系统的性能,特别是32抽头有限脉冲响应(FIR)滤波器和256点快速傅立叶变换(FFT),并将其与商用数字信号处理器(DSP)芯片以及与其他可重新配置的多核架构。

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