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A scan-based configurable, programmable, and scalable architecture for sliding window-based operations

机译:基于扫描的可配置,可编程和可扩展架构,用于基于滑动窗口的操作

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In this paper, a scan-based programmable, configurable, and scalable architecture is proposed. This architecture is suitable for a wide range of applications in signal processing requiring programmability and presenting high bandwidth and real-time requirements beyond the capacity of off-the-shelf DSPs or FGPAs. The architecture is specifically targeting a very common type of signal processing operation: sliding window operations (SWOs). Through various examples, the "programmability, configurability, and scalability" of the proposed architecture are illustrated. Our approach is then compared to traditional programmable architectures with coefficient registers in terms of gate count, speed (delay), and other implementation-related issues. This comparison reveals that our architecture leads to less complex solutions with comparable performance. In general, this approach can be seen as an alternative offering reduced recurrent costs at the expense of potentially higher nonrecurrent costs, which makes it very attractive for high volume production.
机译:本文提出了一种基于扫描的可编程,可配置和可扩展的体系结构。该架构适用于信号处理中的各种应用,这些应用需要可编程性,并提供超越现成DSP或FGPA容量的高带宽和实时要求。该体系结构专门针对一种非常常见的信号处理操作类型:滑动窗口操作(SWO)。通过各种示例,示出了所提出的体系结构的“可编程性,可配置性和可伸缩性”。然后将我们的方法与具有系数寄存器的传统可编程体系结构进行比较,包括门数,速度(延迟)以及其他与实现相关的问题。这种比较表明,我们的体系结构导致了具有可比性能的更简单的解决方案。通常,可以将这种方法视为提供降低的经常性成本,但以潜在的更高的非经常性成本为代价的替代方法,这使其对于大量生产非常有吸引力。

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