Abstract
AbstractWhen applying evolutionary algorithms to circuit design automation, circuit representation is the first consideration. There have been several studies applying different circuit representations. However, they still have some problems, such as lack of design ability, which means the diversity of evolved circuits was limited by the circuit representation, and inefficient transformation from circuit representation into SPICE (Simulation Program with Integrated Circuit Emphasis) netlist. In this paper, a novel tree-based circuit representation for analog circuits is proposed, which is equipped with an intuitive and three-terminal devices friendly mapping rule between circuit representation and SPICE netlist, as well as a suitable crossover operator. Based on the proposed representation, a framework for automated analog circuit design using genetic programming is proposed to evolve both the circuit topology and device values. Three benchmark circuits are applied to evaluate the proposed approach, showing that the proposed method is feasible and evolves analog circuits with better fitness and number of components while using less fitness evaluations than existing approaches. Furthermore, considering physical scalability limits of conventional circuit elements and the increased interest in emerging technologies, a memristor-based pulse generation circuit is also evolved based on the proposed method. The feasibility of the evolved circuits is verified by circuit simulation successfully. The experiment results show that the evolved memristive circuit is more compact and has better energy efficiency compared with existing manually-designed circuits.
Funder
Guangdong Provincial Key Laboratory of Brain-inspired Intelligent Computation
the Program for Guangdong Introducing Innovative and Enterpreneurial Teams
Shenzhen Science and Technology Program
Research Institute of Trustworthy Autonomous Systems
Publisher
Springer Science and Business Media LLC
Subject
Computer Science Applications,Hardware and Architecture,Theoretical Computer Science,Software
Cited by
3 articles.
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1. A new representation in 3D VLSI floorplan: 3D O-Tree;Genetic Programming and Evolvable Machines;2024-04-01
2. Memristor Modeling with Homeostatic Threshold Variation for Simulation and Application;2023 International Conference on Neuromorphic Computing (ICNC);2023-12-15
3. Evolving parsimonious circuits through shapley value-based genetic programming;Proceedings of the Genetic and Evolutionary Computation Conference Companion;2022-07-09