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Increasing the directivity of a microstrip patch array by genetic optimization Cover

Increasing the directivity of a microstrip patch array by genetic optimization

Open Access
|Mar 2015

Abstract

Conventional single element microstrip patch antennae have a. In order to increase the directivity, an array of microstrip patches can be used. It may be possible to further, improve the performance of arrays by applying genetic algorithms (GA). This paper presents a method to increase the directivity of a 2 × 1 patch array with broadside radiation using GA. The proposed GA method divides the patch area into different cells, taking into account that cells have a small overlap area between them. The patch array is etched on a substrate with a relative permittivity of 3.38 and a thickness of 1.52 mm. The antenna operates at 4 GHz resulting use of GA to select the inter-element spacing, optimized shape inset length of feeding. The results show that the directivity of the genetic array is larger than that of the conventional array with the same overall dimensions, which resonates at the same frequency.

J.Natn.Sci.Foundation Sri Lanka 2015 43 (1):83-89

Language: English
Page range: 83 - 89
Published on: Mar 31, 2015
Published by: National Science Foundation of Sri Lanka
In partnership with: Paradigm Publishing Services

© 2015 Jeevani Windhya Jayasinghe, Disala Nilanthaka Uduwawala, Jaume Anguera, published by National Science Foundation of Sri Lanka
This work is licensed under the Creative Commons License.