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July 14, 2025International journal of electrical and computer engineering systemsOpen Access

Optimized Triple-Slot Patch Antenna with Electromagnetic Band Gap Structures for Enhanced Performance

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Authors

GCGowri ChaduvulaLBLeela Kumari B

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Implication

Optimized antenna design improves radiation performance and gain in IoT applications, suggesting EBG integration is beneficial.

Key Points

  • The proposed antenna achieves a gain improvement of 1.92 dB over a conventional design, enhancing overall performance.
  • It demonstrates a gain of 6.15 dB and directivity of 7.51 dB at a frequency of 5.2 GHz.
  • Design and performance were validated through simulations using HFSS software, confirming accuracy in measurements.
  • Integration of EBG structures into the antenna design highlights its potential for various IoT applications.

Cite This Study

Chaduvula et al. (2025) studied this question.

synapsesocial.com/papers/68af40a1cf1dd9ea359ecc45https://doi.org/10.32985/ijeces.16.7.6
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Performance of microstrip patch antenna for single and array element with and without EBG2021
  2. 2Design of Integrated Polygonal UWB MIMO Antenna With EBG Structure Based on Characteristic Mode Analysis2025
  3. 3A Multi-Slotted Multi-Band Microstrip Patch Antenna Design for 5G Communication Devices2025 · 8 citations
  4. 4Design and implementation of a graphene–polyimide-based H-slot terahertz antenna for wireless and biomedical applications2025 · 9 citations
  5. 5Miniaturized EBG Antenna for Efficient 5.8 GHz RF Energy Harvesting in Self-Powered IoT and Medical Sensors2025 · 5 citations