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ENPCO: an entropy-based partition-codec algorithm to reduce power for bipartition-codec architecture in pipelined circuits

机译:ENPCO:一种基于熵的分区编解码器算法,可降低流水线电路中双向编解码器架构的功耗

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This work proposes a new algorithm to synthesize low power bipartition-codec architecture for pipelined circuits. The bipartition-codec architecture has been introduced as an effective power reduction technique for circuit design. The entropy-based partition-codec (ENPCO) algorithm extends this approach as it optimizes for both: power and area. It uses entropy as a criterion to balance between power and area. The ENPCO algorithm is composed of two phases: first, it clusters the output vectors with high occurrence into a group, moving all remaining output vectors into another group. The first group will be encoded in order to save power. Secondly, based on circuit entropy, output patterns are moved between both groups in order to balance power consumption and area overhead. A number of Microelectronic Center of North Carolina (MCNC) benchmarks were used to verify the effectiveness of our algorithm. Results demonstrate that ENPCO algorithm can achieve low power with less area overhead than the single-phase algorithm introduced previously by Shanq-Jang Ruan et al. (1999).
机译:这项工作提出了一种新算法,用于合成流水线电路的低功耗双向编解码器架构。双向编解码器体系结构已被引入作为一种有效的电路设计功耗降低技术。基于熵的分区编解码器(ENPCO)算法扩展了此方法,因为它同时针对功率和面积进行了优化。它使用熵作为衡量力量和面积之间平衡的标准。 ENPCO算法由两个阶段组成:首先,它将出现率很高的输出矢量聚类为一组,然后将所有剩余的输出矢量移至另一组中。为了节省功率,将对第一组进行编码。其次,基于电路熵,输出模式在两组之间移动,以平衡功耗和面积开销。北卡罗来纳州微电子中心(MCNC)的许多基准用于验证我们算法的有效性。结果表明,与Shanq-Jang Ruan等人先前介绍的单相算法相比,ENPCO算法可以以较低的面积开销实现低功耗。 (1999)。

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