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A hybridized genetic parallel programming based logic circuit synthesizer

机译:一种基于混合遗传并行编程的逻辑电路综合器

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摘要

Genetic Parallel Programming (GPP) is a novel Genetic Programming paradigm. Based on the GPP paradigm and a local search operator - FlowMap, a logic circuit synthesizing system integrating GPP and FlowMap, a Hybridized GPP based Logic Circuit Synthesizer (HGPPLCS) is developed. To show the effectiveness of the proposed HGPPLCS, six combinational logic circuit problems are used for evaluations. Each problem is run for 50 times. Experimental results show that both the lookup table counts and the propagation gate delays of the circuits collected are better than those obtained by conventional design or evolved by GPP alone. For example, in a 6-bit one counter experiment, we obtained combinational digital circuits with 8 four-input lookup tables in 2 gate level on average. It utilizes 2 lookup tables and 3 gate levels less than circuits evolved by GPP alone.
机译:遗传并行编程(GPP)是一种新颖的遗传编程范例。基于GPP范例和本地搜索运算符-FlowMap,将GPP和FlowMap集成在一起的逻辑电路合成系统,开发了基于GPP的混合逻辑电路合成器(HGPPLCS)。为了展示所提出的HGPPLCS的有效性,使用了六个组合逻辑电路问题进行评估。每个问题运行50次。实验结果表明,所收集电路的查找表计数和传播门延迟均优于常规设计获得的结果或仅由GPP演进的结果。例如,在一个6位的1计数器实验中,我们获得了平均数字为2门级的具有8个四输入查找表的组合数字电路。与仅由GPP演进的电路相比,它利用2个查找表和3个门级。

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