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A Kernel-Based Partitioning Algorithm for Low-Power, Low-Area Overhead Circuit Design Using Don’t-Care Sets

机译:使用免维护集的低功耗,低面积架空电路设计的基于内核的划分算法

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This letter proposes an efficient kernel-based partitioning algorithm for reducing area and power dissipation in combinational circuit designs using don’t-care sets. The proposed algorithm decreases power dissipation by partitioning a given circuit using a kernel extracted from the logic. The proposed algorithm also reduces the area overhead by minimizing duplicated gates in the partitioned sub-circuits. The partitioned subcircuits are further optimized utilizing observability don’t-care sets. Experimental results for the MCNC benchmarks show that the proposed algorithm synthesizes circuits that on the average consume 22.5% less power and have 12.7% less area than circuits generated by previous algorithms based on a precomputation scheme.
机译:这封信提出了一种有效的基于核的分区算法,以减少使用无关集的组合电路设计中的面积和功耗。所提出的算法通过使用从逻辑中提取的内核对给定电路进行分区来降低功耗。所提出的算法还通过最小化分区子电路中的重复栅极来减少面积开销。利用可观察性无关集进一步优化了分区子电路。针对MCNC基准测试的实验结果表明,与基于预先计算方案的先前算法生成的电路相比,该算法所合成的电路平均平均功耗降低22.5%,电路面积减少12.7%。

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