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Erschienen in: Wireless Personal Communications 3/2021

07.03.2021

Efficiency Improvement of Dual-Band Wireless Power Transfer (DB-WPT) System with U-shape Resonator and Capacitively Loaded E-shape Defected Ground Structure (DGS)

verfasst von: Hany A. Atallah, Mahmoud Mohamed Ahmed El Negm Yousef, Adel B. Abdel-Rahman

Erschienen in: Wireless Personal Communications | Ausgabe 3/2021

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Abstract

This paper suggests a design for dual-band wireless power transfer systems that use E-shape defected ground structure resonator loaded with a 1.5 pF capacitor and U-shape resonator at the top layer. When the two resonators of the proposed design are coupled back-to-back, it transfers to a dual band-pass filter leading to an efficient WPT system working at 0.9 GHz and 1.4 GHz. A compact size of 20 mm × 20 mm is fabricated achieving a WPT efficiency of more than 97% at a distance of 16 mm for both bands. Good concurrences among the equivalent circuit model (ECM), the theoretical studies, and the measurements have been attained.

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Literatur
1.
Zurück zum Zitat Mohamed, M., Cheffena, M., Moldsvor, A., & Fontan, F. P. (2017). Physical-statistical channel model for off-body area network. IEEE Antennas and Wireless Propagation Letters, 16, 1516–1519.CrossRef Mohamed, M., Cheffena, M., Moldsvor, A., & Fontan, F. P. (2017). Physical-statistical channel model for off-body area network. IEEE Antennas and Wireless Propagation Letters, 16, 1516–1519.CrossRef
2.
Zurück zum Zitat Soltesz, K., Sturk, C., Paskevicius, A., Liao, Q., Qin, G., Oberg, T. S., & Steen, S. (2017). Closed-loop prevention of hypotension in the heartbeating brain-dead porcine model. IEEE Transactions Biomed Engineering, 64(6), 1310–1317.CrossRef Soltesz, K., Sturk, C., Paskevicius, A., Liao, Q., Qin, G., Oberg, T. S., & Steen, S. (2017). Closed-loop prevention of hypotension in the heartbeating brain-dead porcine model. IEEE Transactions Biomed Engineering, 64(6), 1310–1317.CrossRef
3.
Zurück zum Zitat Wang, G., Liu, W., Sivaprakasam, M., & Kendir, G. A. (2005). Design and analysis of an adaptive transcutaneous power telemetry for biomedical implants. IEEE Transactions Circuits System I: Regular Papers, 52(10), 2109–2117.CrossRef Wang, G., Liu, W., Sivaprakasam, M., & Kendir, G. A. (2005). Design and analysis of an adaptive transcutaneous power telemetry for biomedical implants. IEEE Transactions Circuits System I: Regular Papers, 52(10), 2109–2117.CrossRef
4.
Zurück zum Zitat Kiani, M., & Ghovanloo, M. (2010). An RFID-based closed-loop wireless power transmission system for biomedical applications. IEEE Transactions Circuits System II Express Briefs, 57(4), 260–264.CrossRef Kiani, M., & Ghovanloo, M. (2010). An RFID-based closed-loop wireless power transmission system for biomedical applications. IEEE Transactions Circuits System II Express Briefs, 57(4), 260–264.CrossRef
5.
Zurück zum Zitat Huh, J., Lee, S. W., Lee, W. Y., Cho, G. H., & Rim, C. T. (2011). Narrow width inductive power transfer system for online electrical vehicles. IEEE Transactions Power Electronics, 26(12), 3666–3679.CrossRef Huh, J., Lee, S. W., Lee, W. Y., Cho, G. H., & Rim, C. T. (2011). Narrow width inductive power transfer system for online electrical vehicles. IEEE Transactions Power Electronics, 26(12), 3666–3679.CrossRef
6.
Zurück zum Zitat Yalong, Z., Xueliang, H., Jiaming, Z., & Linlin, T. (2013). Design of wireless power supply system for the portable mobile device. In IEEE international wireless symposium (IWS) (pp. 1–4). IEEE. Yalong, Z., Xueliang, H., Jiaming, Z., & Linlin, T. (2013). Design of wireless power supply system for the portable mobile device. In IEEE international wireless symposium (IWS) (pp. 1–4). IEEE.
7.
Zurück zum Zitat Yoon, S. K., Kim, S. J., & Kwon, U. K. (2012). A new circuit structure for near field wireless power transmission. In International symposium on circuits and systems (ISCAS), Seoul (pp. 982–985). IEEE. Yoon, S. K., Kim, S. J., & Kwon, U. K. (2012). A new circuit structure for near field wireless power transmission. In International symposium on circuits and systems (ISCAS), Seoul (pp. 982–985). IEEE.
8.
Zurück zum Zitat Karagozler, M. E., Campbell, J. D., Fedder, G. K., Goldstein, S. C., Weller, M. P., & Yoon, B. W. (2007). Electrostatic latching for inter-module adhesion, power transfer, and communication in modular robots. In International conference on intelligent robots and systems, San Diego, CA, IROS (pp. 2779–2786). IEEE/RSJ. Karagozler, M. E., Campbell, J. D., Fedder, G. K., Goldstein, S. C., Weller, M. P., & Yoon, B. W. (2007). Electrostatic latching for inter-module adhesion, power transfer, and communication in modular robots. In International conference on intelligent robots and systems, San Diego, CA, IROS (pp. 2779–2786). IEEE/RSJ.
9.
Zurück zum Zitat Atallah, H. A. (2018). Design of compact high efficient WPT system utilizing half ring resonators (HRRs) DGS for short-range applications. In 35th national radio science conference (NRSC), Cairo, Egypt (pp. 63–68). Atallah, H. A. (2018). Design of compact high efficient WPT system utilizing half ring resonators (HRRs) DGS for short-range applications. In 35th national radio science conference (NRSC), Cairo, Egypt (pp. 63–68).
10.
Zurück zum Zitat El Negm, M. M. A., Atallah, H. A., & Abdel-Rahman, A. B. (2019). Design of dual-band coupled resonators using complementary split ring resonators defected ground structure (CSRRs-DGS) for wireless power transfer applications. In 36th national radio science conference (NRSC), Port Said, Egypt (pp. 22–27). El Negm, M. M. A., Atallah, H. A., & Abdel-Rahman, A. B. (2019). Design of dual-band coupled resonators using complementary split ring resonators defected ground structure (CSRRs-DGS) for wireless power transfer applications. In 36th national radio science conference (NRSC), Port Said, Egypt (pp. 22–27).
11.
Zurück zum Zitat Atallah, H. A., Huseein, R., & Abdel-Rahman, A. B. (2019). Novel and compact design of capacitively loaded C-shaped DGS resonators for dual band wireless power transfer (DB-WPT) systems. AEU International Journal of Electronics and Communications, 100, 95–105.CrossRef Atallah, H. A., Huseein, R., & Abdel-Rahman, A. B. (2019). Novel and compact design of capacitively loaded C-shaped DGS resonators for dual band wireless power transfer (DB-WPT) systems. AEU International Journal of Electronics and Communications, 100, 95–105.CrossRef
12.
Zurück zum Zitat Kurs, A., Karalis, A., Moffatt, R., Joannopoulos, J. D., Fisher, P., & Soljoc, M. (2007). Wireless power transfer via strongly coupled magnetic resonances. Science, 5834(317), 83–86.MathSciNetCrossRef Kurs, A., Karalis, A., Moffatt, R., Joannopoulos, J. D., Fisher, P., & Soljoc, M. (2007). Wireless power transfer via strongly coupled magnetic resonances. Science, 5834(317), 83–86.MathSciNetCrossRef
13.
Zurück zum Zitat Matsumoto, H. (2002). Research on solar power satellites and microwave power transmission in Japan. IEEE Microwave Magazine, 4(3), 36–45.CrossRef Matsumoto, H. (2002). Research on solar power satellites and microwave power transmission in Japan. IEEE Microwave Magazine, 4(3), 36–45.CrossRef
14.
Zurück zum Zitat Wang, G., Liu, W., Sivaprakasam, M., Zhou, M., Weiland, J. D., & Humayun, M. S. (2006). A dual band wireless power and data telemetry for retinal prosthesis. In Proceedings of international conference of the IEEE engineering in medicine and biology society, New York (pp. 4392–4395). Wang, G., Liu, W., Sivaprakasam, M., Zhou, M., Weiland, J. D., & Humayun, M. S. (2006). A dual band wireless power and data telemetry for retinal prosthesis. In Proceedings of international conference of the IEEE engineering in medicine and biology society, New York (pp. 4392–4395).
15.
Zurück zum Zitat Abdel-Rahman, A. B., Verma, A. K., Boutejdar, A., & Omar, A. S. (2004). Compact stub type microstrip bandpass filter using defected ground plane. IEEE Microwave Wireless Component Letters, 14, 136–138.CrossRef Abdel-Rahman, A. B., Verma, A. K., Boutejdar, A., & Omar, A. S. (2004). Compact stub type microstrip bandpass filter using defected ground plane. IEEE Microwave Wireless Component Letters, 14, 136–138.CrossRef
16.
Zurück zum Zitat Ahn, D. (2001). A design of the low-pass filter using the novel microstrip defected ground structure. IEEE Transaction Microwave Theory Technique, 49(1), 86–93.CrossRef Ahn, D. (2001). A design of the low-pass filter using the novel microstrip defected ground structure. IEEE Transaction Microwave Theory Technique, 49(1), 86–93.CrossRef
17.
Zurück zum Zitat Abdel-Rahman, A. B., & Omar, A. S. (2010). Miniaturized bandpass filters using capacitor loaded folded slot coupled resonators. In Middle east conference on antennas and propagation (MECAP), Cairo (pp. 1–4). IEEE. Abdel-Rahman, A. B., & Omar, A. S. (2010). Miniaturized bandpass filters using capacitor loaded folded slot coupled resonators. In Middle east conference on antennas and propagation (MECAP), Cairo (pp. 1–4). IEEE.
18.
Zurück zum Zitat Hussien, R., Atallah, H. A., Hekal, S., & Abdel-Rahman, A. B. (2018). A new design for compact size wireless power transfer applications using spiral defected ground structures. Radioengineering, 27(4), 1032–1037.CrossRef Hussien, R., Atallah, H. A., Hekal, S., & Abdel-Rahman, A. B. (2018). A new design for compact size wireless power transfer applications using spiral defected ground structures. Radioengineering, 27(4), 1032–1037.CrossRef
19.
Zurück zum Zitat Tahar, F., Barakat, A., Saad, R., Yoshitomi, K., & Pokharel, R. K. (2017). Dual-band defected ground structures wireless power transfer system with independent external and inter resonator coupling. IEEE Transaction on Circuits and Systems II: Express Briefs, 64(12), 1372–1376.CrossRef Tahar, F., Barakat, A., Saad, R., Yoshitomi, K., & Pokharel, R. K. (2017). Dual-band defected ground structures wireless power transfer system with independent external and inter resonator coupling. IEEE Transaction on Circuits and Systems II: Express Briefs, 64(12), 1372–1376.CrossRef
20.
Zurück zum Zitat Ahn, D., & Mercier, P. P. (2016). Wireless power transfer with concurrent 200-kHz and 6.78-MHz operation in a single-transmitter device. IEEE Transactions on Power Electronics, 31(7), 5018–5029. Ahn, D., & Mercier, P. P. (2016). Wireless power transfer with concurrent 200-kHz and 6.78-MHz operation in a single-transmitter device. IEEE Transactions on Power Electronics, 31(7), 5018–5029.
21.
Zurück zum Zitat Balanis, C. A. (2005). Antenna theory: Analysis and design (3rd ed.). Wiley. Balanis, C. A. (2005). Antenna theory: Analysis and design (3rd ed.). Wiley.
Metadaten
Titel
Efficiency Improvement of Dual-Band Wireless Power Transfer (DB-WPT) System with U-shape Resonator and Capacitively Loaded E-shape Defected Ground Structure (DGS)
verfasst von
Hany A. Atallah
Mahmoud Mohamed Ahmed El Negm Yousef
Adel B. Abdel-Rahman
Publikationsdatum
07.03.2021
Verlag
Springer US
Erschienen in
Wireless Personal Communications / Ausgabe 3/2021
Print ISSN: 0929-6212
Elektronische ISSN: 1572-834X
DOI
https://doi.org/10.1007/s11277-021-08319-0

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