International Journal of Innovative Research in Computer and Communication Engineering
ISSN Approved Journal | Impact factor: 8.771 | ESTD: 2013 | Follows UGC CARE Journal Norms and Guidelines
| Monthly, Peer-Reviewed, Refereed, Scholarly, Multidisciplinary and Open Access Journal | High Impact Factor 8.771 (Calculated by Google Scholar and Semantic Scholar | AI-Powered Research Tool | Indexing in all Major Database & Metadata, Citation Generator | Digital Object Identifier (DOI) |
| TITLE | A Compact Super Wideband Hexagonal Shaped Monopole Antenna with Reconfigurable |
|---|---|
| ABSTRACT | To reduce interference from other wireless communications, a compact super wideband frequency diversity hexagonal shaped monopole antenna with switchable rejection band capabilities is proposed. The patch consists of hexagonal structure with an open-ended horizontal slot that divides the patch into upper and lower parts. The overall size of the proposed antenna is 36 mmx36 mmx1.6 mm on an FR-4 substrate material with a loss tangent of tan δ= 0.02. The notch switchable features and the frequency diversity are controlled by changing the length of the resonator through alternating the state of inserted PIN diode inside the horizontal open-ended slot. The upper part of the hexagonal patch is connected to the negative terminal of the diodes and the biasing circuit in the back layer through a conducting via. The lower part is connected to the positive terminal of the diode. When diode is ON, the proposed antenna behaves as a ultrawide band covering a bandwidth from 3.17 GHz to 11.3 GHz. When diode is OFF, antenna behaves as multiband antenna operating at frequencies 3.67GHz, 6.16GHz, 9.91GHz. The antenna’s radiation pattern is broadsided directional, the return loss and VSWR are observed for the ON and OFF cases. Hence, the proposed super wideband antenna is well-suited for applications in wireless communications. |
| AUTHOR | G. GAYATHRI, CH. KALYAN, S. SAI RAJU, J. NAGA SIVA KRISHNA, J.S.DEEPIKA U.G. Student, Department of ECE, SVIET Engineering College, Nandamuru, Pedana, Andhra Pradesh, India Assistant Professor, Department of ECE, SVIET Engineering College, Nandamuru, Pedana, Andhra Pradesh, India |
| VOLUME | 182 |
| DOI | DOI: 10.15680/IJIRCCE. 2026.1403115 |
| pdf/115_A Compact Super Wideband Hexagonal Shaped Monopole Antenna with Reconfigurable.pdf | |
| KEYWORDS | |
| References | 1. Federal Communication Commissions (FCC) (First Report and Order), Revision of Part15 of the Commission’s Rules Regarding Ultra-Wideband Transmission Systems, document ET Docket 98—153, Washington, DC, USA, 2002. 2. W. Balani, M. Sarvagya, T. Ali, M. Pai M. M., J. Anguera, A. Andujar, and S. Das, ‘‘Design techniques of super-wideband Antenna–Existing and future prospective,’’ IEEE Access, vol. 7, pp. 141241–141257, 2019. 3. B. Yeboah-Akowuah, E. T. Tchao, M. Ur-Rehman, M. M. Khan, and S. Ahmad, ‘‘Study of a printed split-ring monopole for dual-spectrum communications” 4. T. Okan, ‘‘A compact octagonal-ring monopole antenna for super wideband applications,’’ Microw. Opt. Technol. Lett., vol. 62, no. 3, pp. 1237–1244, Mar. 2020. 5. S. Ahmad, S. Khan, B. Manzoor, M. Soruri, M. Alibakhshikenari, M. Dalarsson, and F. Falcone, ‘‘A compact CPW-fed ultra-wideband multi-input-multi-output (MIMO) antenna for wireless communica- tion networks,’’ IEEE Access, vol. 10, pp. 25278–25289, 2022 6. M. A. Dorostkar, M. T. Islam, and R. Azim, ‘‘Design of a novel super wide band circular-hexagonal fractal antenna,’’ Prog. Electromagn. Res., vol. 139, pp. 229–245, 2013. 7. I. Raviteja, C. Padmanjali, D. V. S. Kalyan, B. Alekhya, G. Chakravarthy, and M. V. Ramya, ‘‘Analysis and design of hexagonal patch antenna with fractals for wide band applications,’’ Int. J. Innov. Technol. Exploring Eng. (IJITEE), vol. 8, no. 8, pp. 583–587, 2019. 8. R. Kumar, N. Kushwaha, and R. V. S. Ram Krishna, ‘‘Design of ultra-wide-band hexagonal patch slot antenna for high-gain wireless applications,’’ J. Electromagn. Waves Appl., vol. 28, no. 16, pp. 2034–2048, Nov. 2014. 9. R. Boopathi Rani and S. K. Pandey, ‘‘A parasitic hexagonal patch antenna surrounded by same shaped slot for WLAN, UWB applications with notch at vanet frequency band,’’ Microw. Opt. Technol. Lett., vol. 58, no. 12, pp. 2996–3000, Dec. 2016. 10. Chandrabhan and A. Kumar, ‘‘Triple band notch loaded hexagonal patch stacked antenna,’’ Int. J. Eng. Technol. (IJET), vol. 9, no. 3, pp. 2485–2490, Jun. 2017 11. M. Abdelazeez and A. Sharif, ‘‘Enhanced UWB printed monopole antenna based on ground plane modifications,’’ Jordanian J. Comput. Inf. Technol. (JJCIT), vol. 4, no. 1, pp. 25–33, 2018. 12. Y. S. Al-Faouri, N. M. Awad, and M. K. Abdelazeez, ‘‘Enhanced ultra- wide band hexagonal patch antenna,’’ Jordanian J. Comput. Inf. Technol., vol. 4, no. 3, pp. 150–158, 2018. |