IEEE Microwave Magazine - September/October 2018 - 82
[43] C. R. Valenta and G. D. Durgin, "Rectenna performance under
power-optimized waveform excitation," in Proc. IEEE Int. Conf. Radio Frequency Identification, Orlando, FL, 2013, pp. 237-244.
[44] C. R. Valenta, M. M. Morys, and G. D. Durgin, "Theoretical energy-conversion efficiency for energy-harvesting circuits under
power-optimized waveform excitation," IEEE Trans. Microw. Theory Techn., vol. 63, no. 5, pp. 1758-1767, May 2015.
[45] A. Boaventura, N. B. Carvalho, and A. Georgiadis, "The impact
of multi-sine tone separation on RF-DC efficiency," in Proc. AsiaPacific Microwave Conf., 2014.
[46] N. Pan, A. Soares Boaventura, M. Rajabi, D. Schreurs, N. Borges
Carvalho, and S. Pollin, "Amplitude and frequency analysis of
multi-sine wireless power transfer," in Proc. Integrated Nonlinear
Microwave and Millimetre-Wave Circuits Workshop, 2015, pp. 1-3.
[47] A. Collado and A. Georgiadis, "Optimal waveforms for efficient
wireless power transmission," IEEE Microw. Compon. Lett., vol. 24,
no. 5, pp. 354-356, May 2014.
[48] J. Blanco, F. Bolos, and A. Georgiadis, "Instantaneous power variance and radio frequency to dc conversion efficiency of wireless
power transfer systems," IET Microw. Antennas Propag., vol. 10, no.
10, pp. 1065-1070, July 2016.
[49] A. S. Boaventura and N. B. Carvalho, "Extending reading range
of commercial RFID readers," IEEE Trans. Microwave Theory Techn.,
vol. 61, no. 1, pp. 633-640, Jan. 2013.
[50] G.A. Vera, A. Georgiadis, A. Collado, and S. Via, "Design of a
2.45 GHz rectenna for electromagnetic (EM) energy scavenging,"
in Proc. IEEE Radio and Wireless Symp., 2010.
[51] G. Fukuda, S. Yoshida, Y. Kai, N. Hasegawa, and S. Kawasaki,
"Evaluation on use of modulated signal for microwave power transmission," in Proc. 44th European Microwave Conf., 2014, pp. 425-428.
[52] H. Sakaki et al., "Analysis of rectifier RF-dc power conversion behavior with QPSK and 16 QAM input signals for WiCoPT system,"
in Proc. Asia-Pacific Microwave Conf., Nov. 2014, pp. 603-605.
[53] F. Bolos, J. Blanco, A. Collado, and A. Georgiadis, "RF energy
harvesting from multi-tone and digitally modulated signals,"
IEEE Trans. Microw.Theory Techn., vol. 64, no. 6, pp. 1918-1927,
June 2016.
[54] M. H. Ouda, P. Mitcheson, and B. Clerckx, "Optimal operation of
multi-tone waveforms in low RF-power receivers," IEEE Wireless
Power Transfer Conf., 2018.
[55] A. Dolgov, R. Zane, and Z. Popovic, "Power management system
for online low power RF energy harvesting optimization," IEEE
Trans. Circuits Syst. I, vol. 7, no. 7, pp. 1802-1811, July 2010.
[56] [Online]. Available: http://www.analog.com/en/products/powermanagement/energy-harvesting/ltc3108-1.html#product-overview
[57] S. Boisseau, P. Gasnier, M. Gallardo, and G. Despesse, "Selfstarting power management circuits for piezoelectric and electretbased electrostatic mechanical energy harvesters," J. Phys. Conf.
Ser., p. 012080, 2013. doi: 10.1088/1742-6596/476/1/012080.
[58] M. Dini, A. Romani, M. Filippi, and M. Tartagni, "A nano-current
power management IC for low voltage energy harvesting," IEEE
Trans. Power Electron., vol. 31, no. 6, pp. 4292-4304, 2015.
[59] A. Costanzo, A. Romani, D. Masotti, N. Arbizzani, and V. Rizzoli,
"RF/baseband co-design of switching receivers for multiband microwave energy harvesting," Sens. Actuators A, Phys., vol. 179, pp.
158-168, June 2012.
[60] A. Costanzo et al. "Electromagnetic energy harvesting and wireless power transmission: A unified approach," Proc. IEEE, vol. 102,
no. 11, pp. 1692-1711, Nov. 2014.
[61] B. Clerckx and C. Oestges, MIMO Wireless Networks: Channels,
Techniques and Standards for Multi-Antenna, Multi-User and MultiCell Systems. Oxford, U.K.: Academic, Jan. 2013.
[62] Y. Zeng, B. Clerckx, and R. Zhang, "Communications and signals
design for wireless power transmission," IEEE Trans. Commun.,
vol. 65, no. 5, pp. 2264-2290, May 2017.
[63] B. Clerckx, E. Bayguzina, D. Yates, and P. D. Mitcheson, "Waveform optimization for wireless power transfer with nonlinear energy harvester modeling," IEEE Int. Symp. Wireless Communication
Systems, Brussels, pp. 276-280, Aug. 2015.
82
[64] B. Clerckx and E. Bayguzina, "Waveform design for wireless
power transfer," IEEE Trans Signal Process., vol. 64, no. 23, pp. 6313-
6328, Dec. 2016.
[65] B. Clerckx and E. Bayguzina, "Low-complexity adaptive multisine waveform design for wireless power transfer," IEEE Antennas
Wireless Propag. Lett., vol. 16, pp. 2207-2210, 2017.
[66] Y. Huang and B. Clerckx, "Waveform optimization for large-scale
multi-antenna multi-sine wireless power transfer," in Proc. 17th
IEEE Int. workshop Signal Processing advances Wireless Communications, 2016.
[67] Y. Huang and B. Clerckx, "Large-scale multi-antenna multi-sine
wireless power transfer," IEEE Trans Signal Process., vol. 65, no. 21,
pp. 5812-5827, Nov. 2017.
[68] Z. Popovic, S. Korhummel, S. Dunbar, R. Scheeler, A. Dolgov, R.
Zane, E. Falkenstein, and J. Hagerty, "Scalable RF energy harvesting," IEEE Trans. Microw. Theory Techn., vol. 62, no. 4, pp. 1046-1056,
Apr. 2014.
[69] R. J. Gutmann and J. M. Borrego, "Power combining in an array
of microwave power rectifiers," IEEE Trans. Microw. Theory Techn.,
vol. MTT-27, no. 12, pp. 958-968, Dec. 1979.
[70] N. Shinohara and H. Matsumoto, "Dependence of dc output of a
rectenna array on the method of interconnection of its array elements," Elect. Eng. Jpn., vol. 125, no. 1, pp. 9-17, 1998.
[71] B. Clerckx, "Waveform optimization for SWIPT with nonlinear
energy harvester modeling," in Proc. 20th Int. ITG Workshop Smart
Antennas, Mar. 2016.
[72] B. Clerckx, "Wireless information and power transfer: Nonlinearity, waveform design and rate-energy tradeoff," IEEE Trans.
Signal Process., vol. 66, no. 4, pp. 847-862, Feb. 2018.
[73] M. Varasteh, B. Rassouli, and B. Clerckx, "Wireless information
and power transfer over an AWGN channel: Nonlinearity and
asymmetric Gaussian signaling," in Proc. IEEE Information Theory
Workshop, 2017.
[74] M. Varasteh, B. Rassouli, and B. Clerckx, "On capacity-achieving
distributions for complex AWGN channels under nonlinear power
constraints and their applications to SWIPT," arXiv Preprint, arXiv:1712.01226, 2018.
[75] J. Xu and R. Zhang, "Energy beamforming with one-bit feedback,"
IEEE Trans. Signal Process., vol. 62, no. 20, pp. 5370-5381, Oct. 2014.
[76] Y. Huang and B. Clerckx, "Waveform design for wireless power
transfer with limited feedback," IEEE Trans. Wireless Commun., vol.
17, no. 1, pp. 415-429, Jan. 2018.
[77] J. Kim, B. Clerckx, and P. D. Mitcheson, "Prototyping and experimentation of a closed-loop wireless power transmission with
channel acquisition and waveform optimization," IEEE Wireless
Power Transfer Conf., 2017.
[78] J. Kim, B. Clerckx, and P. D. Mitcheson, "Signal and system design
for wireless power transmission: Prototyping, experimentation
and validation," submitted for publication.
[79] B. Clerckx, R. Zhang, R. Schober, D. W. K. Ng, D. I. Kim, and H. V.
Poor, "Fundamentals of wireless information and power transfer:
From RF energy harvester models to signal and system designs,"
2018, arXiv Preprint, arXiv:1803.07123.
[80] L. R. Varshney, "Transporting information and energy simultaneously," in Proc. Int. Symp. Information Theory, July 2008, pp.
1612-1616.
[81] P. Grover and A. Sahai, "Shannon meets tesla: Wireless information and power transfer," in Proc. Int. Symp. Information Theory,
June 2010, pp. 2363-2367.
[82] R. Zhang and C. K. Ho, "MIMO broadcasting for simultaneous
wireless information and power transfer," IEEE Trans. Wireless
Commun., vol. 12, no. 5, pp. 1989-2001, May 2013.
[83] T. M. Cover and J. A. Thomas, Elements of Information Theory, 2nd
ed. New York: Wiley, 2006.
[84] E. Bayguzina and B. Clerckx, "Modulation design for wireless
information and power transfer with nonlinear energy harvester
modeling," in Proc. 19th IEEE Int. Workshop Signal Processing Advances Wireless Communications, 2018.
September/October 2018
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