English

A Study on the Inductance and Thermal Regression and Optimization for Automatic Layout Design of Power Modules

Neural and Evolutionary Computing 2023-12-15 v1 Computational Engineering, Finance, and Science Numerical Analysis Performance Numerical Analysis

Abstract

Power modules with excellent inductance and temperature metrics are significant to meet the rising sophistication of energy demand in new technologies. In this paper, we use a surrogate-based approach to render optimal layouts of power modules with feasible and attractive inductance-temperature ratios at low computational budget. In particular, we use the class of feedforward networks to estimate the surrogate relationships between power module layout-design variables and inductance-temperature factors rendered from simulations; and Differential Evolution algorithms to optimize and locate feasible layout configurations of power module substrates minimizing inductance and temperature ratios. Our findings suggest the desirable classes of feedforward networks and gradient-free optimization algorithms being able to estimate and optimize power module layouts efficiently and effectively.

Keywords

Cite

@article{arxiv.2312.08523,
  title  = {A Study on the Inductance and Thermal Regression and Optimization for Automatic Layout Design of Power Modules},
  author = {Victor Parque and Aiki Nakamura and Tomoyuki Miyashita},
  journal= {arXiv preprint arXiv:2312.08523},
  year   = {2023}
}

Comments

Paper presented at 2023 IEEE CPMT Symposium Japan (ICSJ)