Skip to main content
Log in

Design and analysis of super wide band antenna and its notch band characteristics

  • Data analytics and machine learning
  • Published:
Soft Computing Aims and scope Submit manuscript

Abstract

In this paper, a modified version of the conventional line fed circular patch dipole is designed and analysed for super wide band characteristics with desired notch resonant features. The patch is designed to have a non-conventional circular shape along with variety of flared-out feed lines to excite the central patch. The patch carefully incorporates the etched-out rings with definite width to control the resonant characteristics of the antenna. The simulations are carried out in electromagnetic modelling tool and results are analysed in terms of the reports pertaining to the two-dimensional, planar polar plots of the radiation patterns and planar S11 plots. The proposed antenna is designed on a Rogers 5880 substrate, with a dielectric constant of 2.2 and 0.8 mm of thickness.

This is a preview of subscription content, log in via an institution to check access.

Access this article

Price excludes VAT (USA)
Tax calculation will be finalised during checkout.

Instant access to the full article PDF.

Fig. 1
Fig. 2
Fig. 3
Fig. 4
Fig. 5
Fig. 6
Fig. 7
Fig. 8
Fig. 9
Fig. 10
Fig. 11

Similar content being viewed by others

Data Availability

A data availability statement is mandatory for publication in this journal. Please confirm that this statement is accurate, or provide an alternative.

References

  • Abbas AS, Abdelazeez MK (2016) A dual band notch planar SWB antenna with two vertical sleeves on slotted ground plane. In: Proceedings of the IEEE international symposium on antennas and propagation (APSURSI), Fajardo, Puerto Rico, 26 June–1.

  • Ali T, Subhash BK, Biradar RC (2018) A miniaturized decagonal sierpinski UWB fractal antenna. Prog. Electromagn. Res. C 84:161–174

    Article  Google Scholar 

  • Balani W, Sarvagya M, Ali T, Anguera J, Andujar A, Das S (2019) Design techniques of super-wideband antenna–existing and future prospective. IEEE Access 7:141241–141257

    Article  Google Scholar 

  • Balanis CA (2012) Antenna theory: analysis and design, 3rd edn. Wiley, New York, NY, USA

    Google Scholar 

  • Chen KR, Row JS (2011) A compact monopole antenna for super wideband applications. IEEE Antennas Wirel Propag Lett 10:488–491

    Article  Google Scholar 

  • Electronic Communication Committee, The European table of frequency allocations and applications, Eur. Commun. Office, Copenhagen, Denmark, ERC Rep. 25, 2014.

  • Dong Y, Hong W, Liu L, Zhang Y, Kuai Z (2009) Performance analysis of a printed super-wideband antenna. Microw Opt Technol Lett 51:949–956

    Article  Google Scholar 

  • Esmati Z, Moosazadeh M (2015) Dual band-notched small monopole antenna with bandwidth enhancement by means of defected ground structure (DGS) for UWB application. Appl Comput Electromagn Soc J 30:619–625

    Google Scholar 

  • Federal Communications Commission (2002) First Report and Order, Revision of Part 15 of the Commission’s Rules Regarding Ultrawideband Transmission Systems; Federal Communications Commission: Washington, DC, USA

  • Figueroa-Torres CÁ, Medina-Monroy JL, Lobato-Morales H, Chávez-Pérez RA, Calvillo-Téllez A (2017) A novel fractal antenna based on the Sierpinski structure for super wide-band applications. Microw Opt Technol Lett 59:1148–1153

    Article  Google Scholar 

  • Huang Y, Boyle K (2008) Antennas: from theory to practice. Wiley, Hoboken, NJ, USA

    Book  Google Scholar 

  • Kumar S, Lee GH, Kim DH, Mohyuddin W, Choi HC, Kim KW (2020) Multiple-input-multiple-output/ diversity antenna with dual band-notched characteristics for ultra-wideband applications. Microw Opt Technol Lett 62:336–345

    Article  Google Scholar 

  • Liu J, Esselle KP, Hay SG, Zhong SS (2012) Study of an extremely wideband monopole antenna with triple band-notched characteristics. Prog Electromagn Res 123:143–158

    Article  Google Scholar 

  • Manohar M, Kshetrimayum RS, Gogoi AK (2017a) A compact dual band-notched circular ring printed monopole antenna for super-wideband applications. Radio Eng 26:64–70

    Google Scholar 

  • Manohar M, Kshetrimayum RS, Gogoi AK (2017b) A compact dual band-notched circular ring printed monopole antenna for super-wideband applications. Radioengineering 26:64–70

    Article  Google Scholar 

  • Moosazadeh M, Esmati Z (2012) A small CPW-fed ultra-wideband antenna with dual band-notched characteristics. Microw Opt Technol Lett 54:1528–1532

    Article  Google Scholar 

  • Moradhesari A, Moosazadeh M, Esmati Z (2012) Design of compact planar antenna with dual notched bands using slotted rectangular patch for ultrawideband applications. Microw Opt Technol Lett 54:2053–2056

    Article  Google Scholar 

  • Okas P, Sharma A, Gangwar RK (2017) Circular base loaded modified rectangular monopole radiator for super wideband application. Microw Opt Technol Lett 59:2421–2428

    Article  Google Scholar 

  • Oskouei HD, Mirtaheri A (2017) A monopole super wideband microstrip antenna with band-notch rejection. In: Progress in Electromagnetics Research Symposium—Fall (PIERS—FALL); IEEE: Singapore, pp 2019–2024.

  • Rafique U, Sami UD (2018) ‘Beveled-shaped super-wideband planar antenna.’ Turkish J Electr Eng Comput Sci 26:2417–2425

    Article  Google Scholar 

  • Rahman MN, Islam MT, Mahmud MZ, Samsuzzaman M (2017) Compact microstrip patch antenna proclaiming super wideband characteristics. Microw Opt Technol Lett 59:2563–2570

    Article  Google Scholar 

  • Rao Q, Geyi W (2009) Compact multiband antenna for handheld devices. IEEE Trans Antennas Propag 57:3337–3339

    Article  Google Scholar 

  • Samsuzzaman M, Islam MT (2015) ‘A semicircular shaped super wide band patch antenna with high bandwidth dimension ratio.’ Microw Opt Technol Lett 57(2):445–452

    Article  Google Scholar 

  • Schantz HG (2004) A brief history of UWB antennas. IEEE Aero Electron Syst Mag 19:22–26

    Article  Google Scholar 

  • Schantz HG (2004) A brief history of UWB antennas. IEEE Aerosp Electron Syst Mag 19(4):22–26

    Article  Google Scholar 

  • Shahsavari H, Nourinia J, Shirzad H, Shokri M, Asiaban S, Amiri ZH, Virdee B (2013) Compact planar super-wideband antenna with band-notched function. Appl Comput Electromagn Soc J 28:608–613

    Google Scholar 

  • Sharma S, Tripathi CC, Rishi R (2017) Impedance matching Techniques for microstrip patch antenna. Indian J Sci Technol 10:1–16

    Google Scholar 

  • Siahcheshm A, Nourinia J, Zehforoosh Y, Mohammadi B (2015) ‘A compact modified triangular CPW-fed antenna with multioctave bandwidth.’ Microw Opt Technol Lett 57(1):69–72

    Article  Google Scholar 

  • Singh S, Varma R, Sharma M, Hussain S (2019) Super wide band monopole reconfigurable antenna with triple notched band characteristics for numerous applications in wireless system. Wireless Pers Commun 106:987–999

    Article  Google Scholar 

  • Singhal S (2017) ‘Asymmetrically fed octagonal Sierpinski band-notched super wideband antenna.’ J Comput Electron 16:210–219

    Article  Google Scholar 

  • Singhal S (2018) ‘Octagonal Sierpinski band-notched super-wideband antenna with defected ground structure and symmetrical feeding.’ J Comput Electron 17:1071–1081

    Article  Google Scholar 

  • Singhal S, Singh AK (2016) CPW-fed octagonal super-wideband fractal antenna with defected ground structure. IET Microw Antennas Propag 11:370–377

    Article  Google Scholar 

  • Singhal S, Singh AK (2017) Modified star-star fractal (MSSF) super-wideband antenna. Microw Opt Technol Lett 59:624–630

    Article  Google Scholar 

  • Tran D, Aubry P, Szilagyi A, Lager IE, Yarovyi O, Ligthart LP (2010) On the design of a super wideband antenna. In: Ultra-Wide band. Intech Open Limited, London, U.K, pp 399–427.

  • Wiesbeck W, Adamiuk G, Sturm C (2009) Basic properties and design principles of UWB antennas. Proc IEEE 97(4):372–385

    Article  Google Scholar 

  • Zhang X, Ur Rahman S, Cao Q, Gil I, Khan MI (2019) A novel SWB antenna with triple band-notches based on elliptical slot and rectangular split ring resonators. Electronics 8:202

    Article  Google Scholar 

Download references

Funding

There is no funding for this work.

Author information

Authors and Affiliations

Authors

Contributions

All authors contributed equally for developing code, writing paper and proof reading.

Corresponding author

Correspondence to Pradeep Vinaik Kodavanti.

Ethics declarations

Conflict of interest

No Conflict of Interest.

Ethical approval

Not applicable.

Informed consent

Not applicable.

Additional information

Publisher's Note

Springer Nature remains neutral with regard to jurisdictional claims in published maps and institutional affiliations.

Rights and permissions

Reprints and permissions

About this article

Check for updates. Verify currency and authenticity via CrossMark

Cite this article

Kodavanti, P.V., Jayasree, P.V.Y. & Bhima, P.R. Design and analysis of super wide band antenna and its notch band characteristics. Soft Comput 26, 4275–4287 (2022). https://doi.org/10.1007/s00500-022-06891-6

Download citation

  • Accepted:

  • Published:

  • Issue Date:

  • DOI: https://doi.org/10.1007/s00500-022-06891-6

Keywords

Navigation