Abstract
An analytical model is proposed for computing the resonant frequency, quality factors, bandwidth, input impedance, and gain of electromagnetically coupled stacked equilateral triangular patch antennas. The model is simple, fast, and suitable to apply directly in the computer-aided design (CAD) programs. The accuracy of the present model is computed against our newly performed and previously reported experimental results for various sets of relative permittivity and thickness of microstrip structure. We have also employed commercial software to validate the model.
Additional information
Notes on contributors
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M. Biswas
Manotosh Biswas was born in West Bengal, India, in 1976. He received his BTech, MTech and PhD degrees in radio physics and electronics from the University of Calcutta, India, in 2001, 2003, and 2008, respectively. Dr Biswas obtained the Young Scientist Award from URSI in 2005 and is a Senior Member of IEEE. He started his career in the Department of Electronics, West Bengal State University, India as a reader in Feb 2009. In July 2010, he joined as a reader in the Department of Electronics & Tele-Communication Engineering, Jadavpur University, India and currently he is serving as a professor in the same University. His research interest includes planner antennas, dielectric resonator antennas, and matamaterials. He has published more than 30 technical journal articles and 49 technical conference proceedings articles. Email: [email protected]
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M. Dam
Mihir Dam was born in Kolkata, W. Bengal, India, on 1 January 1983. He received the MSc degree in electronic science in 2005 and the MTech degree in radio physics and electronics in 2007 from Calcutta University, India. He received the PhD degree from Jadavpur University, India, in 2019. Currently, he is working as an assistant professor in the Department of Electronics, Vidyasagar College for Women. He has published more than 8 technical journals and more than 15 technical conference articles. His research interest includes microstrip patch antennas, dielectric resonator antennas etc.