TY - JOUR
T1 - An efficient and fast polarity optimization approach for mixed polarity Reed-Muller logic circuits
AU - He, Zhenxue
AU - Xiao, Limin
AU - Gu, Fei
AU - Xia, Tongsheng
AU - Su, Shubin
AU - Huo, Zhisheng
AU - Zhang, Rong
AU - Zhang, Longbing
AU - Ruan, Li
AU - Wang, Xiang
N1 - Publisher Copyright:
© 2016, Higher Education Press and Springer-Verlag Berlin Heidelberg.
PY - 2017/8/1
Y1 - 2017/8/1
N2 - Although the genetic algorithm has been widely used in the polarity optimization of mixed polarity Reed-Muller (MPRM) logic circuits, few studies have taken into account the polarity conversion sequence. In order to improve the efficiency of polarity optimization of MPRM logic circuits, we propose an efficient and fast polarity optimization approach (FPOA) considering the polarity conversion sequence. The main idea behind the FPOA is that, firstly, the best polarity conversion sequence of the polarity set waiting for evaluation is obtained by using the proposed hybrid genetic algorithm (HGA); secondly, each of polarity in the polarity set is converted according to the best polarity conversion sequence obtained by HGA. Our proposed FPOA is implemented in C and a comparative analysis has been presented for MCNC benchmark circuits. The experimental results show that for the circuits with more variables, the FPOA is highly effective in improving the efficiency of polarity optimization of MPRM logic circuits compared with the traditional polarity optimization approach which neglects the polarity conversion sequence and the improved polarity optimization approach with heuristic technique.
AB - Although the genetic algorithm has been widely used in the polarity optimization of mixed polarity Reed-Muller (MPRM) logic circuits, few studies have taken into account the polarity conversion sequence. In order to improve the efficiency of polarity optimization of MPRM logic circuits, we propose an efficient and fast polarity optimization approach (FPOA) considering the polarity conversion sequence. The main idea behind the FPOA is that, firstly, the best polarity conversion sequence of the polarity set waiting for evaluation is obtained by using the proposed hybrid genetic algorithm (HGA); secondly, each of polarity in the polarity set is converted according to the best polarity conversion sequence obtained by HGA. Our proposed FPOA is implemented in C and a comparative analysis has been presented for MCNC benchmark circuits. The experimental results show that for the circuits with more variables, the FPOA is highly effective in improving the efficiency of polarity optimization of MPRM logic circuits compared with the traditional polarity optimization approach which neglects the polarity conversion sequence and the improved polarity optimization approach with heuristic technique.
KW - genetic algorithm
KW - hybrid genetic algorithm
KW - mixed polarity Reed-Muller
KW - polarity conversion sequence
KW - polarity optimization
UR - https://www.scopus.com/pages/publications/85014509622
U2 - 10.1007/s11704-016-5259-2
DO - 10.1007/s11704-016-5259-2
M3 - 文章
AN - SCOPUS:85014509622
SN - 2095-2228
VL - 11
SP - 728
EP - 742
JO - Frontiers of Computer Science
JF - Frontiers of Computer Science
IS - 4
ER -