Abstract
With the rapid development in mobile communication technologies, rapid demands for efficient 5G antennas within smartphones at middle band frequency of 3.5 GHz are also on their market increase. Two of the major challenges involved are high costs of advanced dielectric material such as Duroid RT 5880 and size constraints within smartphone designs. The aim is to design a 5G antenna that resonates at 3.5Ghz antenna into smartphones using low-cost material that is FR-4 as substrate. Next, to observe and optimize the antenna design of rectangular and circular microstrip antennas to achieve efficient and compact mid band frequency for integration into smartphones using CST Studio Suite 2023. A couple of rectangular and circular microstrip patch antennas have been modelled and simulated using the CST Studio Suites 2023. Some of the cheaper alternatives are FR-4 lossy substrate with a dielectric constant £r = 4.3 and s = 0.02; this meets most of the performance specifications. Some of the parameters which have been studied are return loss, VSWR, gain, directivity, bandwidth, and size. Simulation results indicated that the best gain was provided by the rectangular patch antenna at 2.973 dBi and smallest in size, at 35.21*29.22 mm, which made it very appropriate for smartphones. The circular patch antenna showed a better bandwidth of about 0.1329 GHz with a VSWR of 1.0574 for impedance matching. In the end, the rectangular microstrip patch antenna presents a trade-off between performance and size, suitable for mid-band 5G smartphone integration. Future work should be done on optimizing designs for better performance with minimal size to meet the ever-evolving demands of next-generation communication devices.
Metadata
Item Type: | Thesis (Degree) |
---|---|
Creators: | Creators Email / ID Num. Munir, Muhamad Nur Firdaus UNSPECIFIED |
Contributors: | Contribution Name Email / ID Num. Thesis advisor Othman, Ali UNSPECIFIED |
Subjects: | T Technology > TK Electrical engineering. Electronics. Nuclear engineering > Electronics > Apparatus and materials > Antennas |
Divisions: | Universiti Teknologi MARA, Pulau Pinang > Permatang Pauh Campus > Faculty of Electrical Engineering Universiti Teknologi MARA, Pulau Pinang > Permatang Pauh Campus |
Programme: | Bachelor of Electrical Engineering (Hons) Electrical and Electronic Engineering |
Keywords: | 5G Antennas, Band Frequency, Smartphones |
Date: | February 2025 |
URI: | https://ir.uitm.edu.my/id/eprint/117896 |
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