ARAIDec 4, 2025

Declarative Synthesis and Multi-Objective Optimization of Stripboard Circuit Layouts Using Answer Set Programming

arXiv:2512.04910v1ICCD
Originality Incremental advance
AI Analysis

This provides a practical tool for electronics prototyping and education, advancing automated stripboard layout with a declarative programming approach.

The paper tackled automated stripboard circuit layout design by formulating it as a synthesis and multi-objective optimization problem using Answer Set Programming, resulting in compact, manufacturable layouts for various circuit complexities.

This paper presents a novel approach to automated stripboard circuit layout design using Answer Set Programming (ASP). The work formulates the layout problem as both a synthesis and multi-objective optimization task that simultaneously generates viable layouts while minimizing board area and component strip crossing. By leveraging ASP's declarative nature, this work expresses complex geometric and electrical constraints in a natural and concise manner. The two-phase solving methodology first ensures feasibility before optimizing layout quality. Experimental results demonstrate that this approach generates compact, manufacturable layouts for a range of circuit complexities. This work represents a significant advancement in automated stripboard layout, offering a practical tool for electronics prototyping and education while showcasing the power of declarative programming for solving complex design automation problems.

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