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2024 | OriginalPaper | Buchkapitel

Metasurface-Backed Polarization-Diversified Microstrip Patch Antenna for Biomedical Multi-communication Applications

verfasst von : Swarnadipto Ghosh, Dipankar Saha, Ayona Chakraborty, Samik Chakraborty, Sunday Cookey Ekpo, Fanuel Elias

Erschienen in: The Second International Adaptive and Sustainable Science, Engineering and Technology Conference

Verlag: Springer Nature Switzerland

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Abstract

A uniform and homogeneous 4X4 array-based metasurface-backed polarization-diversified microstrip patch antenna (MPA) has been proposed to study the characteristics of human physiology and blood composition in at least three different frequencies [viz., GSM (2.27 GHz), WLAN (5.2 GHz), and X-band (8.78 GHz)] when used as an invasive or noninvasive sensor. It is capable of transceiving the information over the same commonly used frequency band(s). The proposed polarization-diversified antenna can accurately characterize the physiological changes of the behavior of biosamples/biofluids occasioned by their height dielectric constant and conductivity variations with three different frequencies yielding S11 < −10 dB.

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Literatur
1.
Zurück zum Zitat Raghavan, S., Rajeshkumar, V.: An overview of metamaterials in biomedical applications. Prog. Electromagn. Res. 25, 369 (2013) Raghavan, S., Rajeshkumar, V.: An overview of metamaterials in biomedical applications. Prog. Electromagn. Res. 25, 369 (2013)
2.
Zurück zum Zitat Jamlos, M.A., Othman, N.A., Mustafa, W.A., Marzuki, M.K.: Metamaterial antenna for biomedical application. In: Proceedings of the 11th National Technical Seminar on Unmanned System Technology 2019: NUSYS’19, pp. 519–528. Springer, Singapore (2021)CrossRef Jamlos, M.A., Othman, N.A., Mustafa, W.A., Marzuki, M.K.: Metamaterial antenna for biomedical application. In: Proceedings of the 11th National Technical Seminar on Unmanned System Technology 2019: NUSYS’19, pp. 519–528. Springer, Singapore (2021)CrossRef
3.
Zurück zum Zitat Keltouma, N., Amaria, S., Khadidja, B., Mokhtaria, C., Salima, S., Kada, B., Turkiya, A.: Dual-band half-circular ring implantable antenna with metamaterial SRR for biomedical applications. Telecommun. Radio Eng. 82(3) (2023) Keltouma, N., Amaria, S., Khadidja, B., Mokhtaria, C., Salima, S., Kada, B., Turkiya, A.: Dual-band half-circular ring implantable antenna with metamaterial SRR for biomedical applications. Telecommun. Radio Eng. 82(3) (2023)
4.
Zurück zum Zitat Naik, K.K., Teja, S.C.S., Sailaja, B.V., Sri, P.A.: Design of flexible parasitic element patch antenna for biomedical application. Prog. EM Res. M 94, 143–153 (2020) Naik, K.K., Teja, S.C.S., Sailaja, B.V., Sri, P.A.: Design of flexible parasitic element patch antenna for biomedical application. Prog. EM Res. M 94, 143–153 (2020)
5.
Zurück zum Zitat Khan, U.R., Sheikh, J.A., Bashir, S., Ahmed, S.: Metamaterial inspired wideband on-body antenna design for bio-medical applications. Mater. Today Proc. 80, 1772–1776 (2023)CrossRef Khan, U.R., Sheikh, J.A., Bashir, S., Ahmed, S.: Metamaterial inspired wideband on-body antenna design for bio-medical applications. Mater. Today Proc. 80, 1772–1776 (2023)CrossRef
6.
Zurück zum Zitat Wang, Z., Liu, J., Long, Y.: A simple wide-bandwidth and high gain microstrip patch antenna with both sides shorted. IEEE Antennas Wirel. Propag. Lett. 18(6), 1144–1148 (2019)CrossRef Wang, Z., Liu, J., Long, Y.: A simple wide-bandwidth and high gain microstrip patch antenna with both sides shorted. IEEE Antennas Wirel. Propag. Lett. 18(6), 1144–1148 (2019)CrossRef
7.
Zurück zum Zitat Ta, S.X., Park, I.: Compact wideband circularly polarized patch antenna array using metasurface. IEEE Antennas Wirel. Propag. Lett. 16, 1932–1936 (2017)CrossRef Ta, S.X., Park, I.: Compact wideband circularly polarized patch antenna array using metasurface. IEEE Antennas Wirel. Propag. Lett. 16, 1932–1936 (2017)CrossRef
8.
Zurück zum Zitat Cao, Y., et al.: Broadband and high-gain microstrip patch antenna loaded with parasitic mushroom-type structure. IEEE Antennas Wirel. Propag. Lett. 18(7), 1405–1409 (2019)CrossRef Cao, Y., et al.: Broadband and high-gain microstrip patch antenna loaded with parasitic mushroom-type structure. IEEE Antennas Wirel. Propag. Lett. 18(7), 1405–1409 (2019)CrossRef
9.
Zurück zum Zitat Liu, W., Chen, Z.N., Qing, X.: Metamaterial-based low-profile broadband aperture-coupled grid-slotted patch antenna. IEEE Trans. Antennas Propag. 63(7), 3325–3329 (2015)CrossRef Liu, W., Chen, Z.N., Qing, X.: Metamaterial-based low-profile broadband aperture-coupled grid-slotted patch antenna. IEEE Trans. Antennas Propag. 63(7), 3325–3329 (2015)CrossRef
10.
Zurück zum Zitat Malik, N.A., Sant, P., Ajmal, T., Ur-Rehman, M.: Implantable antennas for bio-medical applications. IEEE J. EM RF Microw. Med. Biol. 5(1), 84–96 (2020) Malik, N.A., Sant, P., Ajmal, T., Ur-Rehman, M.: Implantable antennas for bio-medical applications. IEEE J. EM RF Microw. Med. Biol. 5(1), 84–96 (2020)
11.
Zurück zum Zitat Wajid, A., Ahmad, A., Ullah, S., Choi, D.-y., Islam, F.U.: Performance analysis of wearable dual-band patch antenna based on EBG and SRR surfaces. Sensors. 22(14), 5208 (2022)CrossRef Wajid, A., Ahmad, A., Ullah, S., Choi, D.-y., Islam, F.U.: Performance analysis of wearable dual-band patch antenna based on EBG and SRR surfaces. Sensors. 22(14), 5208 (2022)CrossRef
12.
Zurück zum Zitat Sabban, A.: Wideband wearable antennas for 5G, IoT, and medical applications. In: Advanced Radio Frequency Antennas for Modern Communication and Medical Systems. IntechOpen, London (2020)CrossRef Sabban, A.: Wideband wearable antennas for 5G, IoT, and medical applications. In: Advanced Radio Frequency Antennas for Modern Communication and Medical Systems. IntechOpen, London (2020)CrossRef
13.
Zurück zum Zitat Ghosh, S., Saha, D., Prahannathan, V., Saha, C.: Mathematical modelling of slotted circular meta-atom for holographic meta-surface applications. In: 2023 International Conference on Microwave, Optical, and Communication Engineering (ICMOCE), vol. 2023, pp. 1–4, Bhubaneswar. https://doi.org/10.1109/ICMOCE57812.2023.10167286 Ghosh, S., Saha, D., Prahannathan, V., Saha, C.: Mathematical modelling of slotted circular meta-atom for holographic meta-surface applications. In: 2023 International Conference on Microwave, Optical, and Communication Engineering (ICMOCE), vol. 2023, pp. 1–4, Bhubaneswar. https://​doi.​org/​10.​1109/​ICMOCE57812.​2023.​10167286
14.
15.
Zurück zum Zitat Saha, D., Ghosh, S., Chakrabarti, M., Chattopadhyay, A.: Prism-shaped nonuniformly distributed slotted SIW array with highly reduced SLL for mm-wave ground surveillance application. In: 2023 First International Conference on Microwave, Antenna and Communication (MAC), vol. 2023, pp. 1–5, Prayagraj. https://doi.org/10.1109/MAC58191.2023.10177066 Saha, D., Ghosh, S., Chakrabarti, M., Chattopadhyay, A.: Prism-shaped nonuniformly distributed slotted SIW array with highly reduced SLL for mm-wave ground surveillance application. In: 2023 First International Conference on Microwave, Antenna and Communication (MAC), vol. 2023, pp. 1–5, Prayagraj. https://​doi.​org/​10.​1109/​MAC58191.​2023.​10177066
16.
Zurück zum Zitat Ekpo, S., George, D.: A deterministic multifunctional architecture design for highly adaptive small satellites. Int. J. Satell. Commun. Policy Manag. 1(2/3), 174–194 (2012)CrossRef Ekpo, S., George, D.: A deterministic multifunctional architecture design for highly adaptive small satellites. Int. J. Satell. Commun. Policy Manag. 1(2/3), 174–194 (2012)CrossRef
17.
Zurück zum Zitat Ekpo, S., George, D.: A system engineering consideration for future-generations small satellites design. In: Proceedings of First IEEE European Satellite Telecoms Conference, pp. 1–4, Rome (2012) Ekpo, S., George, D.: A system engineering consideration for future-generations small satellites design. In: Proceedings of First IEEE European Satellite Telecoms Conference, pp. 1–4, Rome (2012)
18.
Zurück zum Zitat Ekpo, S.C.: Thermal subsystem operational times analysis for ubiquitous small satellites relay in LEO. Int. Rev. Aerosp. Eng. J. 11(2), 48–57 (2018) Ekpo, S.C.: Thermal subsystem operational times analysis for ubiquitous small satellites relay in LEO. Int. Rev. Aerosp. Eng. J. 11(2), 48–57 (2018)
19.
Zurück zum Zitat Ekpo, S., Kettle, D.: Mm-wave LNAs design for adaptive small satellite applications. In: Proceedings of Joint 5th ESA Workshop on mmWave and 31st ESA Antenna Workshop, pp. 843–847, Noordwijk (2009) Ekpo, S., Kettle, D.: Mm-wave LNAs design for adaptive small satellite applications. In: Proceedings of Joint 5th ESA Workshop on mmWave and 31st ESA Antenna Workshop, pp. 843–847, Noordwijk (2009)
20.
Zurück zum Zitat Ekpo, S., George, D.: Reconfigurable cooperative intelligent control design for space missions. Recent Patents Space Technol. 2(1), 2–11 (2012)CrossRef Ekpo, S., George, D.: Reconfigurable cooperative intelligent control design for space missions. Recent Patents Space Technol. 2(1), 2–11 (2012)CrossRef
21.
Zurück zum Zitat Zafar, M., Ekpo, S., George, J., Sheedy, P., Uko, M., Gibson, A.: Hybrid power divider and combiner for passive RFID tag wireless energy harvesting. IEEE Access J. 10, 502–515 (2022)CrossRef Zafar, M., Ekpo, S., George, J., Sheedy, P., Uko, M., Gibson, A.: Hybrid power divider and combiner for passive RFID tag wireless energy harvesting. IEEE Access J. 10, 502–515 (2022)CrossRef
22.
Zurück zum Zitat Enahoro, S., Ekpo, S., Charles Uko, M., Ansari, U., Altaf, A., Zafar, M.: Adaptive beamforming for mmWave 5G MIMO antennas. In: Proceedings of 21st IEEE Annual Wireless & Microwave Conference, pp. 1–4. Sand Key, Clearwater Beach (Online/Virtual) (2021) Enahoro, S., Ekpo, S., Charles Uko, M., Ansari, U., Altaf, A., Zafar, M.: Adaptive beamforming for mmWave 5G MIMO antennas. In: Proceedings of 21st IEEE Annual Wireless & Microwave Conference, pp. 1–4. Sand Key, Clearwater Beach (Online/Virtual) (2021)
23.
Zurück zum Zitat Ansari, U., Ekpo, S., Charles Uko, M., Altaf, A., Zafar, M., Enahoro, S., Okpalugo, O.: 5G-enabled mobile operating hospital and emergency care service. In: Proceedings of 21st IEEE Annual Wireless & Microwave Conference, pp. 1–6. Sand Key, Clearwater Beach (Online/Virtual) (2021) Ansari, U., Ekpo, S., Charles Uko, M., Altaf, A., Zafar, M., Enahoro, S., Okpalugo, O.: 5G-enabled mobile operating hospital and emergency care service. In: Proceedings of 21st IEEE Annual Wireless & Microwave Conference, pp. 1–6. Sand Key, Clearwater Beach (Online/Virtual) (2021)
24.
Zurück zum Zitat Enahoro, S., Ekpo, S., Gibson, A.: Massive multiple-input multiple-output antenna architecture for multiband 5G adaptive beamforming applications. In: Proceeding of 22nd IEEE Annual Wireless & Microwave Conference, vol. 27, pp. 1–4, Marriott Sand Key, Clearwater Beach, (Online/Virtual) (2022) Enahoro, S., Ekpo, S., Gibson, A.: Massive multiple-input multiple-output antenna architecture for multiband 5G adaptive beamforming applications. In: Proceeding of 22nd IEEE Annual Wireless & Microwave Conference, vol. 27, pp. 1–4, Marriott Sand Key, Clearwater Beach, (Online/Virtual) (2022)
25.
Zurück zum Zitat Ekpo, S., George, D., Adebisi, B.: A multicriteria optimisation design of SPSE for adaptive LEO satellites missions using the PSI method. In: AIAA Space 2013 Conference & Exposition, pp. 1–19, San Diego (2013) Ekpo, S., George, D., Adebisi, B.: A multicriteria optimisation design of SPSE for adaptive LEO satellites missions using the PSI method. In: AIAA Space 2013 Conference & Exposition, pp. 1–19, San Diego (2013)
26.
Zurück zum Zitat Ekpo, S., Adebisi, B., Wells, A.: Regulated-element frost beamformer for vehicular multimedia sound enhancement and noise reduction applications. IEEE Access J. 5, 27254–27262 (2017)CrossRef Ekpo, S., Adebisi, B., Wells, A.: Regulated-element frost beamformer for vehicular multimedia sound enhancement and noise reduction applications. IEEE Access J. 5, 27254–27262 (2017)CrossRef
27.
Zurück zum Zitat Ekpo, S.C., Adebisi, B., George, D., Kharel, R., Uko, M.: A system-level multicriteria modelling of payload operational times for communication satellite missions in LEO. Recent Prog. Space Tech. 4(1), 67–77 (2014) Ekpo, S.C., Adebisi, B., George, D., Kharel, R., Uko, M.: A system-level multicriteria modelling of payload operational times for communication satellite missions in LEO. Recent Prog. Space Tech. 4(1), 67–77 (2014)
28.
Zurück zum Zitat Uko, M., Ekpo, S.: A 23–28 GHz pHEMT MMIC low-noise amplifier for satellite-cellular convergence applications. Int. Rev. Aerosp. Eng. J. 14(5), 1–10 (2021) Uko, M., Ekpo, S.: A 23–28 GHz pHEMT MMIC low-noise amplifier for satellite-cellular convergence applications. Int. Rev. Aerosp. Eng. J. 14(5), 1–10 (2021)
29.
Zurück zum Zitat Uko, M., Ekpo, S.: 8–12 GHz pHEMT MMIC low-noise amplifier for 5G and fiber-integrated satellite applications. Int. Rev. Aerosp. Eng. J. 13(3), 99–107 (2020) Uko, M., Ekpo, S.: 8–12 GHz pHEMT MMIC low-noise amplifier for 5G and fiber-integrated satellite applications. Int. Rev. Aerosp. Eng. J. 13(3), 99–107 (2020)
30.
Zurück zum Zitat George, J., Uko, M.C., Ekpo, S.C., Ijaz, M., Kharel, R., Wang, Q., Ji, H.: Design of a multiband RF slotted-antenna for biosensing applications. In: Proceedings of 12th IEEE/IET International Symposium on Communication Systems Networks and Digital Signal Processing Conference, pp. 1–6, Porto (Online/Virtual) (2020) George, J., Uko, M.C., Ekpo, S.C., Ijaz, M., Kharel, R., Wang, Q., Ji, H.: Design of a multiband RF slotted-antenna for biosensing applications. In: Proceedings of 12th IEEE/IET International Symposium on Communication Systems Networks and Digital Signal Processing Conference, pp. 1–6, Porto (Online/Virtual) (2020)
Metadaten
Titel
Metasurface-Backed Polarization-Diversified Microstrip Patch Antenna for Biomedical Multi-communication Applications
verfasst von
Swarnadipto Ghosh
Dipankar Saha
Ayona Chakraborty
Samik Chakraborty
Sunday Cookey Ekpo
Fanuel Elias
Copyright-Jahr
2024
DOI
https://doi.org/10.1007/978-3-031-53935-0_20