Miniaturized Spiral Planar Inverted F Antenna of 2.4 GHz Using Design of Experiment Method for EEG-based Controlled Prosthetic Arm

Authors

  • Liya Yusrina Sabila Departement of Electrical Engineering, University of Ahmad Dahlan http://orcid.org/0000-0002-6766-7104
  • Teguh Prakoso Departement of Electrical Engineering, University of Diponegoro
  • Munawar Agus Riyadi Departement of Electrical Engineering, University of Diponegoro

DOI:

https://doi.org/10.55981/jet.445

Keywords:

antenna, PIFA, spiral design, 2.4 GHz, conformal antenna, prosthetic arm

Abstract

This paper presents the design of a planar inverted F antenna with a miniature or tiny shape at the frequency of 2.4 GHz. The antenna uses a spiral design to reduce the dimension of the antenna with conformal shape for a suitable prosthetic arm. Usually, the antenna design uses long experimental steps, namely trial and error. It can be summarized using the DOE (design of experiment) method. The DOE is a method to streamline the experimental steps to get the best design. The DOE method uses a tuning reference at the design parameter variation of 5 % of the nominal value. Four tuning steps can get the best results from S11, bandwidth, and gain. The designed antenna works at the resonant frequency of 2.431 GHz with the value of S11 is -22.634 dB, bandwidth of 37.1 MHz, and gain of -7.596 dBi.

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References

O. Chinbat and J. S. Lin, “Prosthetic arm control by human brain,” in Proc. 2018 Int. Symp. Comput. Consum. Control, 2018, pp. 54–57. Crossref

M. A. Riyadi, T. Prakoso, F. O. Whaillan, M. David Wahono, and A. Hidayatno, “Classification of EEG-based brain waves for motor imagery using support vector machine,” in Proc. 2019 3rd Int. Conf. Electr. Eng. Comput. Sci., 2019, pp. 422–425. Crossref

R. Kaur, Surekha, and N. Kumar, “Study of planar inverted-F antenna (PIFA) for fourth generation wireless devices,” Int. J. Mod. Comput. Sci., vol. 4, no. 2, pp. 35–37, 2016.

Anjali and A. Kaur, “Performance analysis of patch and PIFA antenna for WCS and SDR applications,” Int. J. Adv. Res. Comput. Commun. Eng., vol. 6, no. 7, pp. 265–269, Jul. 2017.

S. Kumar, and M. Singh, “Big data analytics for healthcare industry: Impact, applications, and tools,” Big Data Mining Anal., vol. 2, no. 1, pp. 48–57, Mar. 2019. Crossref

L. M. Ang, K. P. Seng, G. K. Ijemaru, and A. M. Zungeru, “Deployment of IoV for smart cities: Applications, architecture, and challenges,” IEEE Access, vol. 7, pp. 6473–6492, 2019. Crossref

B. P. L. Lau et al., “A survey of data fusion in smart city applications,” Inf. Fusion, vol. 52, pp. 357–374, Dec. 2019. Crossref

A. Munir, A. Harish, and Chairunnisa, “Size reduction of UHF planar inverted-F antenna with patch geometry modification,” in 2014 Int. Symp. Antennas Propag. Conf. Proc., pp. 537–538, 2014. Crossref

R. Kumar, L. S. Solanki, and S. Singh, “Miniature archimedean spiral PIFA antennas for biomedical implantable devices,” in 2019 6th Int. Conf. Signal Process. Integr. Netw., pp. 162–167, 2019. Crossref

A. Harish, and A. Munir, “Compact circularly spiral planar inverted-F antenna for medical implant application,” in Proc. Int. Conf. Elect. Eng. Comput. Sci. Inform., pp. 488–491, 2014.

P. Soontornpipit, “Design and development of a dual-band PIFA antenna for brain interface applications,” in 2019 7th Int. Elect. Eng. Congr., 2019. Crossref

S. Sayah and R. Sarkis, "Design and analysis of conformal antennas for smart watch," in Proc. 2017 Prog. Electromagn. Res. Symp. Fall, 2017, pp. 1889-1894. Crossref

R. Zabihi and R. G. Vaughan, “Conformal axial-direction PIFA on a small cylinder,” in Proc. 2017 XXXIInd General Assem. Scientific Symp. Int. Union Radio Science, 2017. Crossref

T. Prakoso, I. A. Utami, I. Santoso, M. A. Riyadi, and M. Facta, “Systematic tuning of coupled-line filter using DOE method,” in Proc. 2018 3rd Int. Conf. Inf. Technol. Inf. Syst. Electr. Eng., pp. 391–395, 2018. Crossref

C. A. Balanis, Antenna Theory: Analysis and Design, 4th ed. Hoboken, New Jersey: John Wiley & Sons, Inc., 2016.

K. Fujimoto and H. Morishita, Modern Small Antennas. UK: Cambridge University Press, 2013.

L. J. Xu, Y. X. Guo, and W. Wu, “Dual-band implantable antenna with open-end slots on ground,” IEEE Antennas Wireless. Propag. Lett., vol. 11, pp. 1564–1567, 2012. Crossref

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Published

2022-08-31

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Section

Articles

How to Cite

[1]
“Miniaturized Spiral Planar Inverted F Antenna of 2.4 GHz Using Design of Experiment Method for EEG-based Controlled Prosthetic Arm”, J. Elektron. dan Telekomun., vol. 22, no. 1, pp. 23–29, Aug. 2022, doi: 10.55981/jet.445.