IEEE Circuits and Systems Magazine - Q3 2019 - 33

[12] C.-S. Wang, O. H. Stielau, and G. A. Covic, "Design considerations
for a contactless electric vehicle battery charger," IEEE Trans. Ind. Electron., vol. 52, no. 5, pp. 1308-1314, Oct. 2005.
[13] G. A. Covic, J. T. Boys, M. L. G. Kissin, and H. G. Lu, "A three-phase
inductive power transfer system for roadway-powered vehicles," IEEE
Trans. Ind. Electron., vol. 54, no. 6, pp. 3370-3378, Dec. 2007.
[14] J. Sallan, J. L. Villa, A. Llombart, and J. F. Sanz, "Optimal design of
ICPT systems applied to electric vehicle battery charge," IEEE Trans.
Ind. Electron., vol. 56, no. 6, pp. 2140-2149, June 2009.
[15] D. J. Thrimawithana, U. K. Madawala, and M. Neath, "A synchronization technique for bidirectional IPT systems," IEEE Trans. Ind. Electron., vol. 60, no. 1, pp. 301-309, Jan. 2013.
[16] M. Budhia, J. T. Boys, G. A. Covic, and C. Y. Huang, "Development
of a single-sided flux magnetic coupler for electric vehicle IPT charging systems," IEEE Trans. Ind. Electron., vol. 60, no. 1, pp. 318-328, Jan.
2013.
[17] W. Li, H. Zhao, J. Deng, S. Li, and C. C. Mi, "Comparison study on SS
and double-sided LCC compensation topologies for EV/PHEV wireless
chargers," IEEE Trans. Veh. Technol., vol. 65, no. 6, pp. 4429-4439, June
2016.
[18] S. Y. R. Hui and W. W. C. Ho, "A new generation of universal contactless battery charging platform for portable consumer electronic
equipment," IEEE Trans. Power Electron., vol. 20, no. 3, pp. 620-627,
May 2005.
[19] D. v. Wageningen and T. Staring, "The Qi wireless power standard,"
in Proc. Int. Power Electronics and Motion Control Conf., Sept. 2010,
pp. S15-25-S15-32. doi: 10.1109/EPEPEMC.2010.5606673
[20] W. X. Zhong, X. Liu, and S. Y. R. Hui, "A novel single-layer winding
array and receiver coil structure for contactless battery charging systems with free-positioning and localized charging features," IEEE Trans.
Ind. Electron., vol. 58, no. 9, pp. 4136-4144, Sept. 2011. doi: 10.1109/
TIE.2010.2098379
[21] A. Esser and H. C. Skudelny, "A new approach to power supplies
for robots," IEEE Trans. Ind. Appl., vol. 27, no. 5, pp. 872-875, Sept. 1991.
[22] A. Kawamura, K. Ishioka, and J. Hirai, "Wireless transmission of
power and information through one high frequency resonant AC link
inverter for robot manipulator applications," IEEE Trans. Ind. Appl., vol.
32, pp. 503-508, May 1996.
[23] S. Ditze, A. Endruschat, T. Schriefer, A. Rosskopf, and T. Heckel,
"Inductive power transfer system with a rotary transformer for contactless energy transfer on rotating applications," in Proc. 2016 IEEE
Int. Symp. Circuits and Systems (ISCAS), pp. 1622-1625. doi: 10.1109/
ISCAS.2016.7538876
[24] A. W. Kelley and W. R. Owens, "Connectorless power supply for an
aircraft-passenger entertainment system," IEEE Trans. Power Electron.,
vol. 4, pp. 348-354, July 1989.
[25] M. Trautmann et al., "Implementation of simultaneous energy and
data transfer in a contactless connector," in Proc. 2016 IEEE Topical
Conf. Wireless Sensors and Sensor Networks (WiSNet), pp. 101-104. doi:
10.1109/WISNET.2016.7444333
[26] U. K. Madawala, J. Stichbury, and S. Walker, "Contactless power
transfer with two-way communication," in Proc. 30th Annu. Conf. IEEE
Industrial Electronics Society (IECON), 2004, vol. 3, pp. 3071-3075. doi:
10.1109/IECON.2004.1432302
[27] B. J. Heeres, D. W. Novotny, D. M. Divan, and R. D. Lorenz, "Contactless underwater power delivery," in Proc. 25th Annu. IEEE Power Electronics Specialists Conf. (PESC'94), June 1994, vol. 1, pp. 418-423. doi:
10.1109/PESC.1994.349700
[28] T. Kojiya, F. Sato, H. Matsuki, and T. Sato, "Construction of non-contacting power feeding system to underwater vehicle utilizing electro
magnetic induction," in Proc. Europe Oceans, 2005, vol. 1, pp. 709-712.
doi: 10.1109/OCEANSE.2005.1511801
[29] B.-M. Song, R. Kratz, and S. Gurol, "Contactless inductive power
pickup system for maglev applications," in Proc. Conf. Rec. 2002 IEEE
Industry Applications Conf. 37th IAS Annu. Meeting (Cat. No.02CH37344),
vol. 3, pp. 1586-1591. doi: 10.1109/IAS.2002.1043746
[30] J. Junlin, L. Weigang, and W. Haiqun, "Contactless power delivery
system for the underground flat transit of mining," in Proc. 6th Int. Conf.
Electrical Machines and Systems (ICEMS), 2003, vol. 1, pp. 282-284.
[31] H. H. Wu, J. T. Boys, and G. A. Covic, "An AC processing pickup for
IPT systems," IEEE Trans. Power Electron., vol. 25, no. 5, pp. 1275-1284,
May 2010.

THIRD QUARTER 2019

[32] D. Robertson, A. Chu, A. Sabitov, and G. A. Covic, "High power IPT
stage lighting controller," in Proc. 2011 IEEE Int. Symp. Industrial Electronics, pp. 1974-1979. doi: 10.1109/ISIE.2011.5984461
[33] H. H. Wu, M. Z. Feng, J. T. Boys, and G. A. Covic, "A wireless multidrop IPT security camera system," in Proc. 2009 4th IEEE Conf. Industrial
Electronics and Applications, pp. 70-75. doi: 10.1109/ICIEA.2009.5138172
[34] V. J. Brusamarello, Y. B. Blauth, R. de Azambuja, I. Muller, and F. R.
de Sousa, "Power transfer with an inductive link and wireless tuning,"
IEEE Trans. Instrum. Meas., vol. 62, no. 5, pp. 924-931, May 2013.
[35] R. Tseng, B. von Novak, S. Shevde, and K. A. Grajski, "Introduction to the alliance for wireless power loosely-coupled wireless power
transfer system specification version 1.0," in Proc. 2013 IEEE Wireless
Power Transfer (WPT), pp. 79-83. doi: 10.1109/WPT.2013.6556887
[36] S. Asheer, A. Al-Marawani, T. Khattab, and A. Massoud, "Inductive
power transfer with wireless communication system for electric vehicles," in Proc. 2013 7th IEEE GCC Conf. Exhibition (GCC), pp. 517-522. doi:
10.1109/IEEEGCC.2013.6705833
[37] Y. H. Son and B. J. Jang, "Simultaneous data and power transmission in resonant wireless power system," in 2013 Asia-Pacific Microwave
Conf. Proc. (APMC), pp. 1003-1005. doi: 10.1109/APMC.2013.6695004
[38] T. Bieler, M. Perrottet, V. Nguyen, and Y. Perriard, "Contactless
power and information transmission," IEEE Trans. Ind. Appl., pp. 1266-
1272, Sept. 2002.
[39] C. Rathge and D. Kuerschner, "High efficient inductive energy and
data transmission system with special coil geometry," in Proc. Power
Electronics Applications, Sept. 2009, vol. 13, pp. 1-8.
[40] J. Ziller, T. Draeager, and T. Heckel, "Inductive high data rate transmission for bearing systems," in Proc. 2016 IEEE Topical Conf. Wireless
Sensors and Sensor Networks (WiSNet), pp. 97-100. doi: 10.1109/WISNET.2016.7444332
[41] J. Hirai, T. Kim, and A. Kawamura, "Study on intelligent battery
charging using inductive transmission of power and information,"
IEEE Trans. Power Electron., vol. 15, no. 2, pp. 335-345, Mar. 2000. doi:
10.1109/63.838106
[42] E. L. van Boheemen, J. T. Boys, and G. A. Covic, "Dual-tuning IPT
systems for low bandwidth communications," in Proc. 2007 2nd IEEE
Conf. Industrial Electronics and Applications, May 2007, pp. 586-591. doi:
10.1109/ICIEA.2007.4318475
[43] J. Wu, C. Zhao, Z. Lin, J. Du, Y. Hu, and X. He, "Wireless power
and data transfer via a common inductive link using frequency division
multiplexing," IEEE Trans. Ind. Electron., vol. 62, no. 12, pp. 7810-7820,
Dec. 2015.
[44] Y. Sun, P. X. Yan, Z. H. Wang, and Y. Y. Luan, "The parallel transmission of power and data with the shared channel for an inductive
power transfer system," IEEE Trans. Power Electron., vol. 31, no. 8, pp.
5495-5502, Aug. 2016.
[45] M. Trautmann, B. Sanftl, R. Weigel, and A. Koelpin, "Frequency separation stage design for a reliable data link in an IPT system for electric
vehicles," in Proc. IEEE Southern Power Electronics Conf. (SPEC), Dec.
2016, vol. 2, pp. 1-5. doi: 10.1109/SPEC.2016.7846000
[46] B. Sanftl, F. Pflaum, M. Trautmann, R. Weigel, and A. Koelpin, "A
novel approach for reliable communications within inductive power
transfer systems," in Proc. 2016 IEEE Wireless Power Transfer Conf.
(WPTC), pp. 1-4. doi: 10.1109/WPT.2016.7498830
[47] M. Trautmann, M. Ohlendorf, B. Sanftl, R. Weigel, and A. Koelpin,
"Dimensioning and comparison of common compensation topologies
for IPT systems," in Proc. 2017 IEEE Int. Symp. Circuits and Systems (ISCAS). doi: 10.1109/ISCAS.2017.8050511
[48] B. Sanftl, M. Trautmann, M. Kleinhenz, R. Weigel, and A. Koelpin, "Increased data rate using higher-order digital modulation for
simultaneous inductive data and power transfer systems," in Proc.
2017 IEEE Wireless Power Transfer Conf. (WPTC), pp. 1-3. doi: 10.1109/
WPT.2017.7953843
[49] "IEEE standard for telecommunications and information exchange
between systems - LAN/MAN specific requirements - Part 11: Wireless
medium access control (MAC) and physical layer (PHY) specifications:
High speed physical layer in the 5 GHz band," IEEE Std 802.11a, Dec.
1999, pp. 1-102. doi: 10.1109/IEEESTD.1999.90606
[50] A. Fort and W. Eberle, "Synchronization and AGC proposal for IEEE
802.11 a burst OFDM systems," in Proc. IEEE Global Telecommunications
Conf. (GLOBECOM '03), 2003, vol. 3, pp. 1335-1338. doi: 10.1109/GLOCOM.2003.1258455

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