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Published in: Wireless Personal Communications 2/2019

05-04-2019

Principles and Applications of Frequency Splitting in Inductive Communications and Wireless Power Transfer Systems

Authors: Johnson I. Agbinya, Hoang Nguyen

Published in: Wireless Personal Communications | Issue 2/2019

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Abstract

In this paper we establish the general and specific frequency splitting principles in wireless power transfer and inductive near field communication systems. Frequency splitting of inductive frequency response functions is normally a result of degraded performance of wireless power transfer systems. This degradation is due to operating the system at distances shorter than the critical coupling distance. Causes and effects of frequency splitting are studied, modelled and simulated using Matlab in this paper. Hardware evaluation of split frequency phenomenon is evaluated to confirm that coupling coefficients higher than critical coupling coefficient leads to frequency splitting. The split frequencies are used to advantage as sources of multiple frequency transmissions in single-input-multiple output systems thereby leading to improved power and data transfer. An application of frequency splitting in data transfer shows improved system capacity of up to 20% when compared with straightforward resonance approach.

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Literature
1.
go back to reference Sun, Z., & Akyildiz, I. F. (2009). Underground wireless communications using magnetic induction. In Proceedings of IEEE ICC 2009 (pp. 1–5). Sun, Z., & Akyildiz, I. F. (2009). Underground wireless communications using magnetic induction. In Proceedings of IEEE ICC 2009 (pp. 1–5).
2.
go back to reference Sojdehei, J. J., Wrathall, P. N., & Dinn, D. F. (2001). Magneto-inductive (MI) communications. In Proceedings of MTS/IEEE conference and exhibition (OCEANS 2001) (pp. 513–519). Sojdehei, J. J., Wrathall, P. N., & Dinn, D. F. (2001). Magneto-inductive (MI) communications. In Proceedings of MTS/IEEE conference and exhibition (OCEANS 2001) (pp. 513–519).
3.
go back to reference Kopparthi, S. (2003). Remote power delivery and signal amplification for MEMS applications. MSc Thesis, Andhra University, India, Dec 2003. Kopparthi, S. (2003). Remote power delivery and signal amplification for MEMS applications. MSc Thesis, Andhra University, India, Dec 2003.
4.
go back to reference Noguchi, S., Inamori, M., Sanada, Y. (2011). Data transmission for resonant-type wireless power transfer. In 14th International symposium on wireless personal multimedia communications (WPMC’11) (pp. 1–5). Noguchi, S., Inamori, M., Sanada, Y. (2011). Data transmission for resonant-type wireless power transfer. In 14th International symposium on wireless personal multimedia communications (WPMC’11) (pp. 1–5).
5.
go back to reference Inanlou, F., & Ghovanloo, M. (2011). Wideband near-field data transmission using pulse harmonic modulation. IEEE Transactions on Circuits and Systems-I: Regular Papers, 58(1), 186–195.MathSciNetCrossRef Inanlou, F., & Ghovanloo, M. (2011). Wideband near-field data transmission using pulse harmonic modulation. IEEE Transactions on Circuits and Systems-I: Regular Papers, 58(1), 186–195.MathSciNetCrossRef
6.
go back to reference Dionigi, M., & Mongiardo, M. (2012). A novel resonator for simultaneous wireless power tranfer and near field magnetic communications. In IEEE MTT-S, Microwave symposium digest. Dionigi, M., & Mongiardo, M. (2012). A novel resonator for simultaneous wireless power tranfer and near field magnetic communications. In IEEE MTT-S, Microwave symposium digest.
7.
go back to reference Dionigi, M., & Mongiardo, M. (2012). Multi band resonators for wireless power tranfer and near field magnetic communications. In Proceedings of IMWS-IWPT (pp. 61–64). Dionigi, M., & Mongiardo, M. (2012). Multi band resonators for wireless power tranfer and near field magnetic communications. In Proceedings of IMWS-IWPT (pp. 61–64).
9.
go back to reference Thanh, H. D., & Agbinya, J. I. (2012). Effects of second neighbour interaction on frequency splitting in near field inductive communication systems. In Proceedings of IB2COM 2012, November 5–6, Sydney, Australia (pp. 190–195). Thanh, H. D., & Agbinya, J. I. (2012). Effects of second neighbour interaction on frequency splitting in near field inductive communication systems. In Proceedings of IB2COM 2012, November 56, Sydney, Australia (pp. 190–195).
10.
go back to reference Sample, A. P., Meyer, D. A., & Smith, J. R. (2011). Analysis, experimental results, and range adaption of magnetically coupled resonators for wireless power transfer. IEEE Transaction on Industrial Electronics, 58(2), 544–554.CrossRef Sample, A. P., Meyer, D. A., & Smith, J. R. (2011). Analysis, experimental results, and range adaption of magnetically coupled resonators for wireless power transfer. IEEE Transaction on Industrial Electronics, 58(2), 544–554.CrossRef
11.
go back to reference Cannon, B. L., Hoburg, J. F., Stancil, D. D., & Goldstein, S. C. (2009). Magnetic resonant coupling as a potential means for wireless power transfer to multiple receivers. IEEE Transactions on Power Electronics, 24(7), 1819–1825.CrossRef Cannon, B. L., Hoburg, J. F., Stancil, D. D., & Goldstein, S. C. (2009). Magnetic resonant coupling as a potential means for wireless power transfer to multiple receivers. IEEE Transactions on Power Electronics, 24(7), 1819–1825.CrossRef
12.
go back to reference Kim, J. W., Son, H.-C., Kim, K.-H., & Park, Y.-J. (2011). Efficiency analysis of magnetic resonance wireless power transfer with intermediate resonant coil. IEEE Antennas and Wireless Propagation Letters, 10, 389–392.CrossRef Kim, J. W., Son, H.-C., Kim, K.-H., & Park, Y.-J. (2011). Efficiency analysis of magnetic resonance wireless power transfer with intermediate resonant coil. IEEE Antennas and Wireless Propagation Letters, 10, 389–392.CrossRef
13.
go back to reference Imura, T., Okabe, H., & Hori, Y. (2009). Basic experimental study on helical antennas of wireless power transfer for electric vehicles by using magnetic resonant couplings. In Proceedings of IEEE vehicle power and propulsion conference, 2009, VPPC’09 (pp. 936–940). Imura, T., Okabe, H., & Hori, Y. (2009). Basic experimental study on helical antennas of wireless power transfer for electric vehicles by using magnetic resonant couplings. In Proceedings of IEEE vehicle power and propulsion conference, 2009, VPPC’09 (pp. 936–940).
15.
go back to reference Ahn, D., & Hong, S. (2013). A study on magnetic field repeaters in wireless power transfer. IEEE Transactions on Industrial Electronics, 60(1), 360–371.CrossRef Ahn, D., & Hong, S. (2013). A study on magnetic field repeaters in wireless power transfer. IEEE Transactions on Industrial Electronics, 60(1), 360–371.CrossRef
16.
go back to reference Nguyen, H., & Agbinya, J. I. (2015). Splitting frequency diversity in wireless power transmission. IEEE Transactions on Power Electronics, 30(11), 6088–6096.CrossRef Nguyen, H., & Agbinya, J. I. (2015). Splitting frequency diversity in wireless power transmission. IEEE Transactions on Power Electronics, 30(11), 6088–6096.CrossRef
17.
go back to reference Thanh, H. D., & Agbinya, J. I. (2016). OFDM scheme for data transmission over inductive channels. Wireless Personal Communications, 88(4), 923–942.CrossRef Thanh, H. D., & Agbinya, J. I. (2016). OFDM scheme for data transmission over inductive channels. Wireless Personal Communications, 88(4), 923–942.CrossRef
18.
go back to reference Nguyen, H., Agbinya, J. I., & Devlin, J. (2015). FPGA-based implementation of multiple modes in near field inductive communication using frequency splitting and MIMO configuration. IEEE Transactions on Circuits and Systems I: Regular Papers, 62, 302–310.CrossRef Nguyen, H., Agbinya, J. I., & Devlin, J. (2015). FPGA-based implementation of multiple modes in near field inductive communication using frequency splitting and MIMO configuration. IEEE Transactions on Circuits and Systems I: Regular Papers, 62, 302–310.CrossRef
19.
go back to reference Mohamed, N. F. A., Agbinya, J. I., & Aboura, K. (2016). Frequency allocation strategy in inductive wide area wireless energy transfer systems. In The 2nd international conference on communication, information technology and robotics, 2–4 June 2016, Dubai, United Arab Emirates. Mohamed, N. F. A., Agbinya, J. I., & Aboura, K. (2016). Frequency allocation strategy in inductive wide area wireless energy transfer systems. In The 2nd international conference on communication, information technology and robotics, 24 June 2016, Dubai, United Arab Emirates.
20.
go back to reference Mohamed, N. F. A., Agbinya, J. I., & Aboura, K. (2016). Multi-spectral, multidimensional wireless power transfer systems. In Symposium on research spotlight in modelling and simulation of physical and biological systems, depending on space, time, retardation, anticipation, at the 36th anniversary meeting of the international institute for advanced studies (IIAS) & 28th international conference on systems research, informatics and cybernetics (Baden-Baden, Germany, from August 1st to August 5th, 2016). Mohamed, N. F. A., Agbinya, J. I., & Aboura, K. (2016). Multi-spectral, multidimensional wireless power transfer systems. In Symposium on research spotlight in modelling and simulation of physical and biological systems, depending on space, time, retardation, anticipation, at the 36th anniversary meeting of the international institute for advanced studies (IIAS) & 28th international conference on systems research, informatics and cybernetics (Baden-Baden, Germany, from August 1st to August 5th, 2016).
21.
go back to reference Agbinya, J. I., & Masihpour, M. (2012). Power equations and capacity performance of magnetic induction communication systems. Wireless Personal Communications Journal, 64(4), 831–845.CrossRef Agbinya, J. I., & Masihpour, M. (2012). Power equations and capacity performance of magnetic induction communication systems. Wireless Personal Communications Journal, 64(4), 831–845.CrossRef
22.
go back to reference Waffenschmidt, E. (2011). Wireless power for mobile devices. In Proceedings IEEE 33rd International Telecommunications Energy Conference (INTELEC), Amsterdam, Netherlands, 9–13 Oct 2011 (pp. 1–9) Waffenschmidt, E. (2011). Wireless power for mobile devices. In Proceedings IEEE 33rd International Telecommunications Energy Conference (INTELEC), Amsterdam, Netherlands, 9–13 Oct 2011 (pp. 1–9)
Metadata
Title
Principles and Applications of Frequency Splitting in Inductive Communications and Wireless Power Transfer Systems
Authors
Johnson I. Agbinya
Hoang Nguyen
Publication date
05-04-2019
Publisher
Springer US
Published in
Wireless Personal Communications / Issue 2/2019
Print ISSN: 0929-6212
Electronic ISSN: 1572-834X
DOI
https://doi.org/10.1007/s11277-019-06313-1

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