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Erschienen in: Wireless Personal Communications 1/2023

07.09.2022

Nano Spherical Dielectric Resonator Antenna for Rectenna Application

verfasst von: Ashok Kumar, Rajveer Singh Yaduvanshi

Erschienen in: Wireless Personal Communications | Ausgabe 1/2023

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Abstract

The paper presents a novel method for the enhancement in the gain and impedance bandwidth by a silicon dioxide SiO2 substrate of nano spherical dielectric resonator antenna. The results of enhanced gain and impedance are analyzed and compared with the previous research work. Nano spherical dielectric resonator antenna has been designed and simulated using HFSS software. The antenna structure contains spherical dielectric resonators at a frequency of 10.5THz with higher antenna gain and lower return loss. Simulated results show that nano spherical dielectric resonator antenna provides below 2-dB VSWR and upper 3-dB axial ratio. The VSWR is acceptable. The impedance bandwidth of nano spherical dielectric resonator antenna is 43.82%. The proposed nano spherical dielectric resonator antenna provides the gain of 6.5 dB and threturn loss of − 20.52 dB. The proposed nano spherical dielectric resonator antenna can be used in nano rectenna for energy harvesting with compact size.

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Literatur
1.
Zurück zum Zitat Khan, I., Rehman, A., Zia, K., Naveed, U., Bibi, S., Sherazi, R., Hussain, I., Rehman, M. U., & Massa, S. (2020). Microbes and environment: global warming reverting the frozen zombies. In Environment, climate, plant and vegetation growth (pp. 607–633). Springer. Khan, I., Rehman, A., Zia, K., Naveed, U., Bibi, S., Sherazi, R., Hussain, I., Rehman, M. U., & Massa, S. (2020). Microbes and environment: global warming reverting the frozen zombies. In Environment, climate, plant and vegetation growth (pp. 607–633). Springer.
2.
Zurück zum Zitat Kumar, A., & Yaduvanshi, R. S. (2021). Design and analysis of circularly polarized dielectric resonator antenna. Wireless Personal Communications, 118(4), 2663–2673.CrossRef Kumar, A., & Yaduvanshi, R. S. (2021). Design and analysis of circularly polarized dielectric resonator antenna. Wireless Personal Communications, 118(4), 2663–2673.CrossRef
3.
Zurück zum Zitat Owusu, P. A., & Asumadu-Sarkodie, S. (2016). A review of renewable energy sources, sustainability issues and climate change mitigation. Cogent Engineering, 3(1), 1167990.CrossRef Owusu, P. A., & Asumadu-Sarkodie, S. (2016). A review of renewable energy sources, sustainability issues and climate change mitigation. Cogent Engineering, 3(1), 1167990.CrossRef
4.
Zurück zum Zitat Das, S., Sasidharan, C., & Ray, A. (2020). Charging India’s two-and three-wheeler transport. A Guide for Planning Charging Infrastructure for Two-and Three-WheelerFleets in Indian Cities, Alliance for an Energy Efficient Economy (AEEE). Das, S., Sasidharan, C., & Ray, A. (2020). Charging India’s two-and three-wheeler transport. A Guide for Planning Charging Infrastructure for Two-and Three-WheelerFleets in Indian Cities, Alliance for an Energy Efficient Economy (AEEE).
5.
Zurück zum Zitat Kumar, A., & Yaduvanshi, R. S. (2020). Miniaturization of rectangular dielectric resonator antenna. In 2020 2nd international conference on advances in computing, communication control and networking (ICACCCN) (pp. 574–577). IEEE. Kumar, A., & Yaduvanshi, R. S. (2020). Miniaturization of rectangular dielectric resonator antenna. In 2020 2nd international conference on advances in computing, communication control and networking (ICACCCN) (pp. 574–577). IEEE.
6.
Zurück zum Zitat Dehghani-Sanij, A. R., Tharumalingam, E., Dusseault, M. B., & Fraser, R. (2019). Study of energy storage systems and environmental challenges of batteries. Renewable and Sustainable Energy Reviews, 104, 192–208.CrossRef Dehghani-Sanij, A. R., Tharumalingam, E., Dusseault, M. B., & Fraser, R. (2019). Study of energy storage systems and environmental challenges of batteries. Renewable and Sustainable Energy Reviews, 104, 192–208.CrossRef
8.
Zurück zum Zitat Ullah, Z., Witjaksono, G., Nawi, I., Tansu, N., Irfan Khattak, M., & Junaid, M. (2020). A review on the development of tunable graphene nanoantennas for terahertz optoelectronic and plasmonic applications. Sensors, 20(5), 1401.CrossRef Ullah, Z., Witjaksono, G., Nawi, I., Tansu, N., Irfan Khattak, M., & Junaid, M. (2020). A review on the development of tunable graphene nanoantennas for terahertz optoelectronic and plasmonic applications. Sensors, 20(5), 1401.CrossRef
9.
Zurück zum Zitat Varshney, G., Gotra, S., Kaur, J., Pandey, V. S., & Yaduvanshi, R. S. (2019). Obtaining the circular polarization in a nano-dielectric resonator antenna for photonics applications. Semiconductor Science and Technology, 34(7), 07LT01.CrossRef Varshney, G., Gotra, S., Kaur, J., Pandey, V. S., & Yaduvanshi, R. S. (2019). Obtaining the circular polarization in a nano-dielectric resonator antenna for photonics applications. Semiconductor Science and Technology, 34(7), 07LT01.CrossRef
10.
Zurück zum Zitat Vandenbosch, G. A., & Ma, Z. (2012). Upper bounds for the solar energy harvesting efficiency of nano-antennas. Nano Energy, 1(3), 494–502.CrossRef Vandenbosch, G. A., & Ma, Z. (2012). Upper bounds for the solar energy harvesting efficiency of nano-antennas. Nano Energy, 1(3), 494–502.CrossRef
11.
Zurück zum Zitat Imani, M. F., Gollub, J. N., Yurduseven, O., Diebold, A. V., Boyarsky, M., Fromenteze, T., Pulido-Mancera, L., Sleasman, T., & Smith, D. R. (2020). Review of metasurface antennas for computational microwave imaging. IEEE transactions on antennas and propagation, 68(3), 1860–1875.CrossRef Imani, M. F., Gollub, J. N., Yurduseven, O., Diebold, A. V., Boyarsky, M., Fromenteze, T., Pulido-Mancera, L., Sleasman, T., & Smith, D. R. (2020). Review of metasurface antennas for computational microwave imaging. IEEE transactions on antennas and propagation, 68(3), 1860–1875.CrossRef
12.
Zurück zum Zitat Qiu, C., Wu, J., Zhu, R., Shen, L., & Zheng, B. (2019). Dual-band near-perfect metamaterial absorber based on cylinder MoS2-dielectric arrays for sensors. Optics Communications, 451, 226–230.CrossRef Qiu, C., Wu, J., Zhu, R., Shen, L., & Zheng, B. (2019). Dual-band near-perfect metamaterial absorber based on cylinder MoS2-dielectric arrays for sensors. Optics Communications, 451, 226–230.CrossRef
13.
Zurück zum Zitat Zou, C., Withayachumnankul, W., Bhaskaran, M., Sriram, S., & Fumeaux, C. (2017). Dielectric resonator nanoantennas: A review of the theoretical background, design examples, prospects, and challenges. IEEE Antennas and Propagation Magazine, 59(6), 30–42.CrossRef Zou, C., Withayachumnankul, W., Bhaskaran, M., Sriram, S., & Fumeaux, C. (2017). Dielectric resonator nanoantennas: A review of the theoretical background, design examples, prospects, and challenges. IEEE Antennas and Propagation Magazine, 59(6), 30–42.CrossRef
14.
Zurück zum Zitat Novotny, L., & Van Hulst, N. (2011). Antennas for light. Nature Photonics, 5(2), 83.CrossRef Novotny, L., & Van Hulst, N. (2011). Antennas for light. Nature Photonics, 5(2), 83.CrossRef
15.
Zurück zum Zitat Kanaujia, B. K., Singh, N., & Kumar, S. (2021). Rectenna: wireless energy harvesting system. Springer. Kanaujia, B. K., Singh, N., & Kumar, S. (2021). Rectenna: wireless energy harvesting system. Springer.
16.
Zurück zum Zitat Kumar, A., & Yaduvanshi, R. S. (2018). Investigations into polorisations in dielectric resonator antenna. In Optical and wireless technologies. Springer Nature. Kumar, A., & Yaduvanshi, R. S. (2018). Investigations into polorisations in dielectric resonator antenna. In Optical and wireless technologies. Springer Nature.
Metadaten
Titel
Nano Spherical Dielectric Resonator Antenna for Rectenna Application
verfasst von
Ashok Kumar
Rajveer Singh Yaduvanshi
Publikationsdatum
07.09.2022
Verlag
Springer US
Erschienen in
Wireless Personal Communications / Ausgabe 1/2023
Print ISSN: 0929-6212
Elektronische ISSN: 1572-834X
DOI
https://doi.org/10.1007/s11277-022-09947-w

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