Efficient Optimization Method for Designing Defected Ground Structure-Based Common-Mode Filters

  • Chung, Ook; 
  • Lee, Jongheun; 
  • Song, Suhyoun; 
  • Yoo, Hogeun; 
  • Lee, Jaehoon
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초록

An efficient optimization method for designing defected ground structure (DGS)-based common-mode filters (CMFs) is proposed, utilizing equation-based transmission line models integrated with a genetic algorithm (GA). Designing an optimal DGS-based CMF using full-wave simulation tools is time-consuming due to its process-intensive nature. The proposed optimization method implements transmission line theory to allow for direct S-parameter calculation, enabling integration with an optimization algorithm to identify optimal parameters within a confined 5 mm x 10 mm design space. This work demonstrates a compact asymmetric DGS design to illustrate the method's capability. The resulting compact asymmetric DGS-based CMF achieves wideband common-mode suppression with a -10 dB bandwidth from 3.18 GHz to 12.89 GHz. The optimization method significantly reduces design time by minimizing the need for lengthy and repetitive full-wave simulations. The measured S-parameters of the fabricated CMF closely match the simulated results, validating the model's accuracy. Compared with traditional methods for designing DGS-based CMFs, the proposed method utilizes transmission line theory to optimize the design efficiently, providing a practical and efficient solution.

키워드

common-mode filter; defected ground structure (DGS); modeling method; optimization; transmission line modeling; signal integrity; SUPPRESSION FILTER
제목
Efficient Optimization Method for Designing Defected Ground Structure-Based Common-Mode Filters
저자
Chung, Ook; Lee, Jongheun; Song, Suhyoun; Yoo, Hogeun; Lee, Jaehoon
DOI
10.3390/electronics14142903
발행일
2025-07-20
유형
Article
저널명
Electronics (Basel)
권
14
호
14