Abstract
At present, area has become one of the main bottlenecks restricting the development of EDA. The area optimization for XNOR/OR-based fixed polarity Reed–Muller (FPRM) circuits aims to find an FPRM circuit with a minimum area. Because the area optimization is a combinatorial optimization problem, we first propose an adaptive bacterial foraging algorithm based on tabu search (ABFA-TS), which includes fuzzy control theory and tabu search strategy. Few studies have considered the problem of polarity conversion sequence. In order to solve the problem of conversion sequence, we propose a hybrid genetic algorithm (HGA) based on the nearest neighbor. Moreover, based on the proposed ABFA-TS and proposed HGA, we propose an area optimization approach for FPRM circuits, which searches for an FPRM circuit with a minimum area. The experimental results confirmed that the maximum time saving rate of HGA reached 78%, and confirmed the superiority of the FPRM area optimization approach in optimizing the FPRM circuits area.
| Original language | English |
|---|---|
| Article number | 110414 |
| Journal | Applied Soft Computing |
| Volume | 143 |
| DOIs | |
| State | Published - Aug 2023 |
Keywords
- Adaptive bacterial foraging algorithm
- Area optimization
- Combinatorial optimization problem
- Fixed polarity Reed–Muller
- Hybrid genetic algorithm
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