首页> 外文期刊>EURASIP journal on advances in signal processing >Highly Flexible Multimode Digital Signal Processing Systems Using Adaptable Components and Controllers
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Highly Flexible Multimode Digital Signal Processing Systems Using Adaptable Components and Controllers

机译:使用自适应组件和控制器的高度灵活的多模数字信号处理系统

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Multimode systems have emerged as an area- and power-efficient platform for implementing multiple timewise mutually exclusive digital signal processing (DSP) applications in a single hardware space. This paper presents a design methodology for integrating flexible components and controllers into primarily fixed logic multimode DSP systems, thereby increasing their overall efficiency and implementation capabilities. The components are built using a technique called small-scale reconfigurability (SSR) that provides the necessary flexibility for both intermode and intramode reconfigurabilities, without the penalties associated with general-purpose reconfigurable logic. Using this methodology, area and power consumption are reduced beyond what is provided by current multimode systems, without sacrificing performance. The results show an average of 7% reduction in datapath component area, 26% reduction in register area, 36% reduction in interconnect MUX cost, and 68% reduction in the number of controller signals, with an average 38% increase in component utilization for a set of benchmark 32-bit DSP applications.
机译:多模系统已经成为一种节省区域和功率的平台,可以在单个硬件空间中实现多个时间互斥的数字信号处理(DSP)应用。本文提出了一种将柔性组件和控制器集成到主要是固定逻辑多模DSP系统中的设计方法,从而提高了它们的整体效率和实现能力。这些组件使用称为小规模可重配置性(SSR)的技术构建,该技术为模式间和模式内可重配置性提供了必要的灵活性,而没有与通用可重配置逻辑相关联的代价。使用这种方法,可以在不牺牲性能的情况下将面积和功耗降低到当前多模系统所不能提供的水平。结果表明,数据路径组件面积平均减少了7%,寄存器面积减少了26%,互连MUX成本减少了36%,控制器信号数量减少了68%,其中组件利用率平均提高了38%。一组基准的32位DSP应用程序。

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