Application of Genetic Algorithm for the Optimization of Energy Saving Glass Coating Structure Design

Attenuation of GSM, GPS and personal communication signal leads to poor communication inside the building using regular shapes of energy saving glass coating. Thus, the transmission is very low. A brand new type of band pass frequency selective surface (FSS) for energy saving glass application is pr...

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Main Authors: Mohd Johar, Fauzi, Azmin, Farah Ayuni, Shibghatullah, A. S., Suaidi, Mohd Kadim, Ahmad, Badrul Hisham, Salleh, Siti Nadzirah, Abd Aziz, M. Z. A, Md Shukor, Mahfuzah, Liew, Voon Bin, Wong, Wei Yang
Format: Article
Language:en
Published: 2014
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Online Access:http://eprints.utem.edu.my/id/eprint/12523/1/144._Application_of_Genetic_Algorithm_for_the_Optimization_of_Energy_Saving_Glass_Coating_Structure_Design.doc
http://eprints.utem.edu.my/id/eprint/12523/
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Summary:Attenuation of GSM, GPS and personal communication signal leads to poor communication inside the building using regular shapes of energy saving glass coating. Thus, the transmission is very low. A brand new type of band pass frequency selective surface (FSS) for energy saving glass application is presented in this paper for one unit cell. Numerical Periodic Method of Moment approach according to a previous study has been applied to determine the new optimum design of one unit cell energy saving glass coating structure. Optimization technique based on the Genetic Algorithm (GA) is used to obtain an improved in return loss and transmission signal. The unit cell of FSS is designed and simulated using the CST Microwave Studio software at based on industrial, scientific and medical bands (ISM). A unique and irregular shape of an energy saving glass coating structure is obtained with lower return loss and improved transmission coefficient.