ELECTRICA

VERY SIMPLE AND ACCURATE COMPUTER-AIDED-DESIGN (CAD) MODELS DEVELOPED BY GENETIC PROGRAMMING FOR THE QUASI- STATIC ANALYSIS OF UNSHIELDED SUSPENDED AND INVERTED MICROSTRIP LINES

1.

Faculty of Engineering, Department of Electrical and Electronics Engineering, Erciyes University, Kayseri, Turkey

2.

Faculty of Engineering and Architecture, Department of Electrical and Electronics Engineering, Bozok University, Yozgat, Turkey

ELECTRICA 2017; 17: 3303-3309
Read: 824 Downloads: 504 Published: 20 December 2019

Very simple computer-aided-design models are introduced to determine the characteristic parameters such as effective permittivities and characteristic impedances of unshielded suspended and inverted microstrip lines. Computer- aided-design models are determined with the use of the genetic programming. The results of computer-aided-design models are compared with the results of quasi-static analysis, experimental works available in the literature and a commercial electromagnetic simulator. The comparison results clearly show that computer-aided-design models proposed in this work are in very good agreement with the simulation, theoretical and experimental results for the suspended and inverted microstrip lines. The design parameter ranges in this work are 2 ≤ εr2 ≤ 20, 0.5 ≤ w/b ≤ 10, 0.1 ≤ a/b ≤ 1.5, and the respective characteristic impedances of unshielded suspended and inverted microstrip lines are 28Ω ≤ Z0 ≤ 185Ω, and 24 Ω ≤ Z0 ≤ 159 Ω, respectively. It is observed that the accuracies of computer-aided-design models proposed in this paper are good enough for the most practical cases.

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EISSN 2619-9831