Multifunctional Reconfigurable Antennas and Arrays Operating at 60 GHz band
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[1] Duixian Liu,et al. Single-element and phased-array transceiver chipsets for 60-ghz Gb/s communications , 2011, IEEE Communications Magazine.
[2] Akio Tanaka,et al. Wide scanning phased array antenna design in Ka band , 2003 .
[3] V. K. Singh,et al. Ka-band micromachined microstrip patch antenna , 2010 .
[4] Wolfgang Menzel,et al. Millimeter-wave folded reflector antennas with high gain, low loss, and low profile , 2002 .
[5] Kyungwhoon Cheun,et al. Mobile's millimeter-wave makeover , 2014, IEEE Spectrum.
[6] Dale E. Dawson,et al. X-band MMIC switch with 70 dB isolation and 0.5 dB insertion loss , 1995, IEEE 1995 Microwave and Millimeter-Wave. Monolithic Circuits Symposium. Digest of Papers.
[7] Seonho Seok,et al. Millimeter-wave Quarter-Wave Patch Antenna on Benzocyclobutene Polymer , 2008, 2008 38th European Microwave Conference.
[8] D. A. Baker,et al. Application of bond constraint theory to the switchable optical memory material Ge2Sb2Te5. , 2006, Physical review letters.
[9] Theodore S. Rappaport,et al. Millimeter Wave Mobile Communications for 5G Cellular: It Will Work! , 2013, IEEE Access.
[10] A. Panther,et al. A wideband array of stacked patch antennas using embedded air cavities in LTCC , 2005, IEEE Microwave and Wireless Components Letters.
[11] D. Parker,et al. Phased arrays - part 1: theory and architectures , 2002 .
[12] Luis Jofre,et al. A New Class of Antenna Array With a Reconfigurable Element Factor , 2013, IEEE Transactions on Antennas and Propagation.
[13] D. M. Pozar,et al. Microstrip antennas , 1995, Proc. IEEE.
[14] J. Sakai,et al. Effect of pressure on the electric-field-induced resistance switching of VO2 planar-type junctions , 2008 .
[15] John R. Long,et al. A 60GHz-band 2×2 phased-array transmitter in 65nm CMOS , 2010, 2010 IEEE International Solid-State Circuits Conference - (ISSCC).
[16] A. Lamminen,et al. 60-GHz Patch Antennas and Arrays on LTCC With Embedded-Cavity Substrates , 2008, IEEE Transactions on Antennas and Propagation.
[17] Dajana Cassioli,et al. Characterization of path loss and delay spread of 60-GHz UWB channels vs. frequency , 2013, 2013 IEEE International Conference on Communications (ICC).
[18] James Chu. Integrated Microwave Front-Ends with Avionics Applications [Book\/Software Reviews] , 2015, IEEE Microwave Magazine.
[19] Zhi Ning Chen,et al. Gain-Enhanced 60-GHz LTCC Antenna Array With Open Air Cavities , 2011, IEEE Transactions on Antennas and Propagation.
[20] E. Shin,et al. Thermally controlled vanadium dioxide thin film microwave devices , 2013, 2013 IEEE 56th International Midwest Symposium on Circuits and Systems (MWSCAS).
[21] Michael J. Lancaster,et al. Micromachined terahertz Fabry–Perot cavity highly directive antennas , 2015 .
[22] M. Izutsu,et al. Broad-band double-layered coplanar patch antennas with adjustable CPW feeding structure , 2004, IEEE Transactions on Antennas and Propagation.
[23] T. Seki,et al. A 60-GHz multilayer parasitic microstrip array antenna on LTCC substrate for system-on-package , 2005, IEEE Microwave and Wireless Components Letters.
[25] Duixian Liu,et al. A Fully-Integrated 16-Element Phased-Array Receiver in SiGe BiCMOS for 60-GHz Communications , 2010, IEEE Journal of Solid-State Circuits.
[26] Ahmed M. Eltawil,et al. A Beam-Steering Reconfigurable Antenna for WLAN Applications , 2015, IEEE Transactions on Antennas and Propagation.
[27] H. V. Hunerli,et al. Three-Dimensional Microfabricated Broadband Patch Antenna for WiGig Applications , 2014, IEEE Antennas and Wireless Propagation Letters.
[28] Zhouyuan Li,et al. Beam-steering antenna based on parasitic layer , 2012 .
[29] L.L. Mercado,et al. Mechanics-based solutions to RF MEMS switch stiction problem , 2004, IEEE Transactions on Components and Packaging Technologies.
[30] Leo G. Maloratsky. Integrated Microwave Front-Ends with Avionics Applications , 2012 .
[31] Tatsuo Itoh,et al. Overview of quasi-planar transmission lines , 1989 .
[32] K. Maruhashi,et al. A 60-GHz band CMOS phased array transmitter utilizing compact baseband phase shifters , 2009, 2009 IEEE Radio Frequency Integrated Circuits Symposium.
[33] Theodore S. Rappaport,et al. State of the Art in 60-GHz Integrated Circuits and Systems for Wireless Communications , 2011, Proceedings of the IEEE.
[34] Gabriel M. Rebeiz,et al. Microstrip antennas on synthesized low dielectric-constant substrates , 1997 .
[35] Kalyanmoy Deb,et al. A fast and elitist multiobjective genetic algorithm: NSGA-II , 2002, IEEE Trans. Evol. Comput..
[36] D. Parker,et al. Phased arrays-part II: implementations, applications, and future trends , 2002 .
[37] C. Peng,et al. Experimental and theoretical investigations of laser-induced crystallization and amorphization in phase-change optical recording media , 1997 .
[38] Xiaonan Chen,et al. Voltage-Triggered Ultrafast Phase Transition in Vanadium Dioxide Switches , 2013, IEEE Electron Device Letters.
[39] M. A. Towfiq,et al. Broadband high-gain 60 GHz antenna array , 2016, 2016 IEEE International Symposium on Antennas and Propagation (APSURSI).
[40] Y. Murakami,et al. High power DPDT antenna switch MMIC for digital cellular systems , 1995, GaAs IC Symposium IEEE Gallium Arsenide Integrated Circuit Symposium 17th Annual Technical Digest 1995.
[41] Ban-Leong Ooi,et al. Novel design of broad-band stacked patch antenna , 2002 .
[42] G. Stefanovich,et al. Vanadium Dioxide: Metal-Insulator Transition, Electrical Switching and Oscillations. A Review of State of the Art and Recent Progress , 2015, 1601.06246.
[43] Sungyoul Choi,et al. $\hbox{VO}_{2}$ Thin-Film Varistor Based on Metal-Insulator Transition , 2010, IEEE Electron Device Letters.
[44] Roger F. Harrington,et al. Reactively controlled directive arrays , 1978 .
[45] Yong-xin Guo,et al. Wideband High-Gain 60-GHz LTCC L-Probe Patch Antenna Array With a Soft Surface , 2013, IEEE Transactions on Antennas and Propagation.
[46] Peter F. M. Smulders,et al. On the Design of Low-Cost 60-GHz Radios for Multigigabit-per-Second Transmission over Short Distances [Topics in Radio Communications] , 2007, IEEE Communications Magazine.
[47] L. Jofre,et al. Three dimensional microfabricated broadband patch and multifunction reconfigurable antennae for 60 GHz applications , 2015, 2015 9th European Conference on Antennas and Propagation (EuCAP).
[48] R.W. Heath,et al. 60 GHz wireless communications: emerging requirements and design recommendations , 2007, IEEE Vehicular Technology Magazine.
[49] I. J. Bahl,et al. Microstrip Antennas , 1980 .
[50] Christopher J. Hansen,et al. WiGiG: Multi-gigabit wireless communications in the 60 GHz band , 2011, IEEE Wireless Communications.
[51] Sai Shankar Nandagopalan,et al. WiGig and IEEE 802.11ad - For multi-gigabyte-per-second WPAN and WLAN , 2012, ArXiv.
[52] Xiao Ding,et al. Research on a Millimeter-Wave Phased Array With Wide-Angle Scanning Performance , 2013, IEEE Transactions on Antennas and Propagation.
[53] Yahya Rahmat-Samii,et al. Using Thick Substrates and Capacitive Probe Compensation to Enhance the Bandwidth of Traditional CP Patch Antennas , 2014, IEEE Transactions on Antennas and Propagation.
[54] John R. Long,et al. A 60-GHz Band 2$\,\times\,$2 Phased-Array Transmitter in 65-nm CMOS , 2010, IEEE Journal of Solid-State Circuits.
[55] D. Liu,et al. Antenna-in-Package in LTCC for 60-GHz Radio , 2007, 2007 International workshop on Antenna Technology: Small and Smart Antennas Metamaterials and Applications.
[56] I. Koh,et al. Package-level integrated antennas based on LTCC technology , 2006, IEEE Transactions on Antennas and Propagation.
[57] K. Nakayama,et al. Submicron Nonvolatile Memory Cell Based on Reversible Phase Transition in Chalcogenide Glasses , 2000 .
[58] S. Lai,et al. OUM - A 180 nm nonvolatile memory cell element technology for stand alone and embedded applications , 2001, International Electron Devices Meeting. Technical Digest (Cat. No.01CH37224).
[59] Robert J. Mailloux,et al. Phased Array Antenna Handbook , 1993 .
[60] Jeffrey F. DeNatale,et al. Millimeter‐wave dielectric properties of epitaxial vanadium dioxide thin films , 1991 .
[61] Jeffrey G. Andrews,et al. What Will 5G Be? , 2014, IEEE Journal on Selected Areas in Communications.
[62] Rumi Chunara,et al. Phased array systems in silicon , 2004, IEEE Communications Magazine.
[63] L. Jofre,et al. A Parasitic Layer-Based Reconfigurable Antenna Design by Multi-Objective Optimization , 2012, IEEE Transactions on Antennas and Propagation.
[64] R. Garg,et al. Microstrip Antenna Design Handbook , 2000 .
[65] M. Kaynak,et al. BEOL embedded RF-MEMS switch for mm-wave applications , 2009, 2009 IEEE International Electron Devices Meeting (IEDM).
[66] S. Kamihashi,et al. W-band SPST transistor switches , 1996, IEEE Microwave and Guided Wave Letters.
[67] Tae-Yeoul Yun,et al. A 10- to 21-GHz, low-cost, multifrequency, and full-duplex phased-array antenna system , 2002 .