A compact smiley shaped flexible patch antenna for ISM band applications

Author:

Julius Fusic S.1ORCID,Sugumari T.2ORCID,Giri Jayant3ORCID,Sitharthan R.4ORCID,Badawy Ahmed Said5,Ahmad Naim5ORCID,Sathish T.6ORCID

Affiliation:

1. Department of Mechatronics Engineering, Thiagarajar College of Engineering 1 , Madurai, Tamil Nadu, India

2. Department of Electronics and Communication Engineering, KLN College of Engineering 2 , Madurai, Tamil Nadu, India

3. Department of Mechanical Engineering, Yeshwantrao Chavan College of Engineering 3 , Nagpur, India

4. School of Electrical Engineering, Vellore Institute of Technology 4 , Chennai, Tamil Nadu, India

5. College of Computer Science, King Khalid University 5 , Abha 62521, Saudi Arabia

6. Saveetha School of Engineering, SIMATS 6 , Chennai 602105, Tamil Nadu, India

Abstract

Breast cancer is a medical condition characterized by the uncontrolled proliferation of cells in the breast tissue. Breast cancer can originate from various parts of the breast, and methods such as Breast ultrasound, Diagnostic mammogram, Breast magnetic resonance imaging, and Biopsy are currently used for its diagnosis. However, these methods have certain limitations, and their size can be a hindrance. To overcome this, low-power, flexible antennas can be designed for bio-communication between medical equipment and external instrumentation. Flexible and wearable antennas have advantages such as affordability, ease of fabrication, and high gain. In this article, a microstrip patch antenna operating at 2.45 GHz and made of polyamide material is designed using High Frequency Structure Simulator software. The simulation results show the patch antenna has a gain of 1, −14.81 dB return loss at 2.45 GHz based on |S11| ≤ −10 dB. The directive radiation pattern with axial ratio of 63.39 dB and voltage standing wave ratio ≤3. Furthermore, the hardware development of proposed antenna with polyamide substrate provides the resonance frequency nearing to simulation results as 2.318 GHz with return loss of −28.19 dB. Based on mathematical analysis, simulation and hardware results, the proposed antenna is a superior option for breast cancer detection.

Funder

Deanship of Scientific Research, King Khalid University

Publisher

AIP Publishing

Reference25 articles.

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4. A printed compact UWB Vivaldi antenna with hemi cylindrical slots and directors for microwave imaging applications;AEU-Int. J. Electr. Commun.,2019

5. Design and analysis of single-fed dual-mode circular parasitic patch antenna (CPPA) for UAV application;SN Comput. Sci.,2023

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