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Research Article

High-efficiency and compact metamaterial-inspired 900 MHz rectifier

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Pages 168-181 | Received 12 Jul 2016, Accepted 14 Aug 2016, Published online: 31 Oct 2016

References

  • Ali M, Yang, G, Dougal R. 2005. A new circularly polarized rectenna for wireless power transmission and data communication. IEE Antennas Wirel Propag Lett. 4:205–208.
  • Baek S, Lim S. 2009. Miniaturised zeroth-order antenna on spiral slotted ground plane. Electron Lett. 45:1012–1014.
  • Caloz C, Itoh T. 2004. Transmission line approach of left-handed (LH) materials and microstrip implementation of an artificial LH transmission line. IEEE Trans Antennas Propag. 52:1159–1166.
  • Caloz C, Itoh T. 2005. Electromagnetic metamaterials: transmission line theory and microwave applications. Hoboken (NJ): Wiley.
  • Dehbashi R, Forooraghi K, Atlasbaf Z. 2006. Dual-fed antenna for wireless power transmission and data communication. 2006 IEEE AP-S International Symposium; Albuquerque (NM); 2201–2204.
  • Dupuy A, Leong KM, Itoh T. 2005. Class-F power amplifier using a multi-frequency composite right/left-handed transmission line harmonic tuner. IEEE MTT-S International Microwave Symposium Digest; Long Beach (CA); p. 2023–2026.
  • Http://www.avagotech.com/docs/AV02-1320EN. 2015. Avago technology, HSMS-2820 surface Mount RF Schottky Barrier Diodes.
  • Http://www.powercastco.com. 2015. Wireless Power Solutions-Powercast Corp. Available from: http://www.powercastco.com/test566alpha/wp-content/uploads/2009/03/p1110-datasheet-rev-b.pdf
  • Jang T, Choi J, Lim S. 2011. Compact coplanar waveguide (CPW)-fed zeroth-order resonant antennas with extended bandwidth and high efficiency on vialess single layer. IEEE Trans Antennas Propag. 59:363–372.
  • Lai A, Itoh T, Caloz C. 2004. Composite right/left-handed transmission line metamaterials. IEEE Microwave Mag. 5:34–50.
  • Lim S, Caloz C, Itoh T. 2004. Electronically scanned composite right/left handed microstrip leaky-wave antenna. IEEE Micro Wirel Compon Lett. 14:277–279.
  • Lim S, Caloz C, Itoh T. 2005. Metamaterial-based electronically controlled transmission-line structure as a novel leaky-wave antenna with tunable radiation angle and beamwidth. IEEE Trans Micro Theory Tech. 53:161–173.
  • Lin I, DeVincentis M, Caloz C. 2004. Arbitrary dual-band components using composite right/left-handed transmission lines. IEEE Trans Micro Theory Tech. 52:1142–1149.
  • Liu C, Menzel W. 2008. Broadband via-free microstrip balun using metamaterial transmission lines, IEEE Micro Wirel Compon Lett. 18:437–439.
  • Marian V, Allard B, Vollaire C. 2012. Strategy for microwave energy harvesting from ambient field or a feeding source. IEEE Trans Power Electron. 27:4481–4491.
  • Ni J, Vendik I, Kholodnyak D. 2003. A compact bandpass filter based on right- and left-handed transmission line sections. IEEE Micro Wirel Compon Lett. 23:279–281.
  • Ning Z, Ziolkowski WR, Xin H. 2011. Electrically small GPS L1 rectennas. IEEE Antennas Wirel Propag Lett. 10:935–938.
  • Niotaki K, Kim S, Jeong S, Collado A, Georgiadis A, Tentzeris MM. 2013. A compact dual-band rectenna using slot-loaded dual band folded dipole antenna. IEEE Antennas and Wirel Propag Lett. 12:1634–1637.
  • Olgun U, Chen C-C, Volakis JJ. 2011. Investigation of rectenna array configurations for enhanced RF power harvesting. IEEE Antennas Wirel Propag Lett. 10:262–265.
  • Park J, Han S, Itoh T. 2004. A rectenna design with harmonic-rejecting circular-sector antenna. IEEE Antennas Wirel Propag Lett. 3:52–54.
  • Pozar DM. 2012. Microwave engineering. 4th ed. Hoboken (NJ): Wiley.
  • Ren YJ, Chang K. 2006. Bow-tie retrodirective rectenna. Electron Lett. 42:191–192.
  • Roberg M, Falkenstein E, Popovic Z. 2012. High-efficiency harmonically-terminated rectifier for wireless powering applications. 2012 IEEE MTT-S International Microwave Symposium; Montreal (QC).
  • Roberg M, Reveyrand T, Ramos I, Falkenstein EA, Popović Z. 2012. High-efficiency harmonically terminated diode and transistor rectifiers. IEEE Trans Microwave Theory Tech. 60:4043–4052.
  • Shinohara N, Miyata Y, Mitani T, Niwa N, Takagi K, Hamamoto K, Ujigawa S, Ao J-P, Ohno Y. 2008. New application of microwave power transmission for wireless power distribution system in buildings. 2008 Asia Pacific Microwave Conference (APMC); Hong Kong and Macau, China.
  • Smith DR, Padilla WJ, Vier DC, Nemat-Nasser SC, Schultz S. 2000. Composite medium with simultaneously negative permeability and permittivity. Phy Rev Lett. 84:4184–4187.
  • Suh Y, Chang K. 2002. A high-efficiency dual-frequency rectenna for 2.45-and 5.8-GHz wireless power transmission. IEEE Trans Micro Theory Tech. 50:1784–1789.
  • Sun H, Zhong Z, Guo Y. 2013. An adaptive reconfigurable rectifier for wireless power transmission. IEEE Micro Wireless Components Lett. 23:492–494.
  • Sun T, Xie X, Li G. 2012. Rectigulator: a hybrid of rectifiers and regulators for miniature wirelessly powered bio-microsystems. Electron Lett. 48:1181–1182.
  • Takhedmit H, Merabet B, Cirio L, Allard B, Costa F, Vollaire C, Picon O. 2010. A 2.45-GHz low cost and efficient rectenna. Proceedings of the 4th European Conference on Antennas and Propagation (EuCAP); Barcelona, Spain.
  • Tu H, Hsu SH. 2007. Compact 5.8-GHz rectenna using stepped-impedance dipole antenna. IEEE Antennas Wirel Propag Lett. 6:282–284.
  • Veselago VG. 1968. The electrodynamics of substances with simultaneously negative values of ϵ and μ. Soviet Phy Uspekhi. 10:509–514.
  • Yang X, Jiang C, Elsherbeni AZ. 2013. A novel compact printed rectenna for data communication systems. IEEE Trans Antennas Propag. 61:2532–2539.
  • Yoo TW, Chang K. 1992. Theoretical and experimental development of 10 and 35 GHz rectennas. IEEE Trans Micro Theory Tech. 40:1259–1266.
  • Zbitou J, Latrach M, Toutain S. 2006. Hybrid rectenna and monolithic integrated zero-bias microwave rectifier. IEEE Trans Micro Theory Tech. 54:147–152.

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