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Dynamic Context Compression for Low-Power Coarse-Grained Reconfigurable Architecture

机译:低功耗粗粒度可重构体系结构的动态上下文压缩

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Most of the coarse-grained reconfigurable architectures (CGRAs) are composed of reconfigurable ALU arrays and configuration cache (or context memory) to achieve high performance and flexibility. Specially, configuration cache is the main component in CGRA that provides distinct feature for dynamic reconfiguration in every cycle. However, frequent memory-read operations for dynamic reconfiguration cause much power consumption. Thus, reducing power in configuration cache has become critical for CGRA to be more competitive and reliable for its use in embedded systems. In this paper, we propose dynamically compressible context architecture for power saving in configuration cache. This power-efficient design of context architecture works without degrading the performance and flexibility of CGRA. Experimental results show that the proposed approach saves up to 39.72% power in configuration cache with negligible area overhead (2.16%).
机译:大多数粗粒度可重配置体系结构(CGRA)由可重配置ALU阵列和配置高速缓存(或上下文内存)组成,以实现高性能和灵活性。特别地,配置缓存是CGRA中的主要组件,为每个周期的动态重新配置提供了独特的功能。但是,频繁进行动态重新配置的内存读取操作会导致大量功耗。因此,降低配置缓存的功耗已成为CGRA在嵌入式系统中使用更具竞争力和可靠性的关键。在本文中,我们提出了动态可压缩的上下文架构,以节省配置缓存中的功耗。这种高效节能的上下文体系结构设计可以在不降低CGRA的性能和灵活性的情况下工作。实验结果表明,该方法在配置缓存中可节省多达39.72%的功耗,而区域开销却可以忽略不计(2.16%)。

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