63 / 2025-05-14 14:04:45
A Study on Multi-objective Design Optimization Models and Algorithms for Reliability-aware PCB Design
printed circuit board,multi-objective optimization model,NSGA-Ⅱ genetic algorithm,Lagrange relaxation
Final Paper
Shengfu Gao / State Grid Corporation of China
Guiwen Yang / Beihang university-school of reliability and systems engineering
Ruihao Zhang / Beihang University (Beijing University of Aeronautics and Astronautics)
Meilin Wen / Beihang University
Modern electronic devices demand ever-smaller, higher-performance printed circuit boards (PCBs), yet miniaturization and complex service environments exacerbate failure risks. We first identify key failure modes under real-world conditions, build life-prediction models via multivariate nonlinear regression, and quantify reliability through uncertainty analysis. Next, we set optimization objectives and constraints based on failure-mode frequency, severity, and coupling, then formulate the coupled multi-objective model. An enhanced NSGA-II—using Lagrange relaxation to decouple constraints—expands the search space and improves solution diversity. Validation on a model-aircraft drive-control PCB demonstrates the method's effectiveness in balancing performance and reliability.
Important Date
  • Conference Date

    Aug 01

    2025

    to

    Aug 04

    2025

  • Aug 20 2025

    Draft paper submission deadline

Sponsored By
中国机械工程学会设备智能运维分会
Organized By
新疆大学