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Power minimization of functional units by partially guarded computation

机译:通过部分保护的计算功率最小化功能单元

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This paper deals with power minimization problem for data-dominated applications based on a novel concept called partially guarded computation. We divide a functional unit into two parts MSP (Most Significant Part) and LSP (Least Significant Part) and allow the functional unit to perform only the LSP computation if the range of output data can be covered by LSP. We dynamically disable MSP computation to remove unnecessary transitions thereby reducing power consumption. We also propose a systematic approach for determining optimal location of the boundary between the two pans during high-level synthesis. Experimental results show about 10-44% power reduction with about 30-36% area overhead and less than 3% delay overhead in functional units.
机译:本文涉及基于新颖概念的数据主导应用的功率最小化问题。我们将功能单元划分为两个部分MSP(大多数重要部分)和LSP(最低有效部分),并且如果LSP的输出数据范围可以覆盖,则允许功能单元仅执行LSP计算。我们动态禁用MSP计算以消除不必要的转换,从而降低功耗。我们还提出了一种系统的方法,用于在高级合成期间确定两个平底锅之间的边界的最佳位置。实验结果表明,功率降低约10-44%,面积约为30-36%,功能单元的延迟开销小于3%。

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