IET Microwaves, Antennas & Propagation, ISSN 1751-8725, 9/2016, Volume 10, Issue 12, pp. 1259 - 1267
This study presents design and analysis of a multi-band hybrid Z-shaped cylindrical dielectric resonator antenna (CDRA) with partial ground plane. The proposed...
Research Articles | Q-factor | PERFORMANCE | polarisation | 2 GHz to 8 | Z-shaped CDRA | satellite communication | multiband hybrid Z-shaped cylindrical dielectric resonator antenna | 4 GHz to 4 | FREQUENCY | dielectric resonator antennas | WIDE-BAND | circularly polarised hybrid Z-shaped cylindrical dielectric resonator antenna | 72 GHz | WiMAX | frequency 3 | frequency 2 | WLAN | frequency 1 | microstrip antennas | TELECOMMUNICATIONS | dual C-shaped patch | 08 GHz | 88 GHz | quality factor | bandwidth 7 | ENGINEERING, ELECTRICAL & ELECTRONIC | 24 GHz to 1 | 56 GHz to 2 | field lines | 36 GHz | 08 GHz to 5 | frequency 7 | 5 GHz | TE01 mode | frequency 5 | multifrequency antennas | 35 GHz | 85 GHz to 8 | circular polarisation | axial ratio bandwidth | Wireless communication | Frequency bands | Patch antennas | Cylindrical antennas | Circularity | Radio antennas | Resonators | Antennas
Research Articles | Q-factor | PERFORMANCE | polarisation | 2 GHz to 8 | Z-shaped CDRA | satellite communication | multiband hybrid Z-shaped cylindrical dielectric resonator antenna | 4 GHz to 4 | FREQUENCY | dielectric resonator antennas | WIDE-BAND | circularly polarised hybrid Z-shaped cylindrical dielectric resonator antenna | 72 GHz | WiMAX | frequency 3 | frequency 2 | WLAN | frequency 1 | microstrip antennas | TELECOMMUNICATIONS | dual C-shaped patch | 08 GHz | 88 GHz | quality factor | bandwidth 7 | ENGINEERING, ELECTRICAL & ELECTRONIC | 24 GHz to 1 | 56 GHz to 2 | field lines | 36 GHz | 08 GHz to 5 | frequency 7 | 5 GHz | TE01 mode | frequency 5 | multifrequency antennas | 35 GHz | 85 GHz to 8 | circular polarisation | axial ratio bandwidth | Wireless communication | Frequency bands | Patch antennas | Cylindrical antennas | Circularity | Radio antennas | Resonators | Antennas
Journal Article
IET Microwaves, Antennas & Propagation, ISSN 1751-8725, 2/2015, Volume 9, Issue 3, pp. 206 - 216
A compact ultra-wideband planar monopole antenna with a size of 22 mm by 34 mm is presented to achieve the quintuple-band-notched characteristics. The proposed...
DESIGN | microstrip feedline | SINGLE | 69 GHz | ultra wideband antennas | 2 GHz to 7 | 7 GHz | wireless local area networks | truncated-smoothed ground plane | 1 GHz | spread spectrum communication | worldwide interoperability | 1 GHz to 8 | ELEMENTS | 24 GHz to 10 | Mickey-mouse shaped radiating element | FEED LINE | SLOT | half-one-wavelength M-shaped resonators | UWB ANTENNA | 16 GHz to 3 | monopole antennas | microwave resonators | quintuple-band-notched function | RESONATORS | 0 GHz to 6 | time-domain analysis | frequency 3 | frequency 2 | frequency-domain analysis | TELECOMMUNICATIONS | X-band satellite communication | ENGINEERING, ELECTRICAL & ELECTRONIC | 74 GHz | 61 GHz | frequency 8 | frequency 7 | 8 GHz | frequency 5 | compact ultrawideband planar monopole antenna | microstrip lines | 35 GHz to 2 | MONOPOLE ANTENNA | planar antennas | Ground plane | Wireless communication | Microwave antennas | Communication systems | Simulation | Ultrawideband | X-band | Antennas
DESIGN | microstrip feedline | SINGLE | 69 GHz | ultra wideband antennas | 2 GHz to 7 | 7 GHz | wireless local area networks | truncated-smoothed ground plane | 1 GHz | spread spectrum communication | worldwide interoperability | 1 GHz to 8 | ELEMENTS | 24 GHz to 10 | Mickey-mouse shaped radiating element | FEED LINE | SLOT | half-one-wavelength M-shaped resonators | UWB ANTENNA | 16 GHz to 3 | monopole antennas | microwave resonators | quintuple-band-notched function | RESONATORS | 0 GHz to 6 | time-domain analysis | frequency 3 | frequency 2 | frequency-domain analysis | TELECOMMUNICATIONS | X-band satellite communication | ENGINEERING, ELECTRICAL & ELECTRONIC | 74 GHz | 61 GHz | frequency 8 | frequency 7 | 8 GHz | frequency 5 | compact ultrawideband planar monopole antenna | microstrip lines | 35 GHz to 2 | MONOPOLE ANTENNA | planar antennas | Ground plane | Wireless communication | Microwave antennas | Communication systems | Simulation | Ultrawideband | X-band | Antennas
Journal Article
IET Microwaves, Antennas & Propagation, ISSN 1751-8725, 10/2019, Volume 13, Issue 13, pp. 2396 - 2404
A harmonically driven bio-radar based on the technique of a multiport interferometer (six-port) technique is proposed and studied in order to improve the...
Research Article | SYSTEM | radar detection | DESIGN | vital signs monitoring | harmonic multiport interferometer radar architecture | intermodulation | six-port radar architecture | frequency 12 | radar detections | pneumodynamics | patient monitoring | HEARTBEAT | radar applications | radar signal processing | radiowave interferometers | biomedical measurement | six-port radar platform | concurrent cardiopulmonary detection | IMPLEMENTATION | frequency 24 | TELECOMMUNICATIONS | medical signal detection | cardiology | heart-beat detection | six-port discriminator | ENGINEERING, ELECTRICAL & ELECTRONIC | medical signal processing | breathing harmonics | 0 GHz | 6-PORT
Research Article | SYSTEM | radar detection | DESIGN | vital signs monitoring | harmonic multiport interferometer radar architecture | intermodulation | six-port radar architecture | frequency 12 | radar detections | pneumodynamics | patient monitoring | HEARTBEAT | radar applications | radar signal processing | radiowave interferometers | biomedical measurement | six-port radar platform | concurrent cardiopulmonary detection | IMPLEMENTATION | frequency 24 | TELECOMMUNICATIONS | medical signal detection | cardiology | heart-beat detection | six-port discriminator | ENGINEERING, ELECTRICAL & ELECTRONIC | medical signal processing | breathing harmonics | 0 GHz | 6-PORT
Journal Article
APPLIED COMPUTATIONAL ELECTROMAGNETICS SOCIETY JOURNAL, ISSN 1054-4887, 05/2019, Volume 34, Issue 5, pp. 676 - 683
The discovery of Graphene has created new applications for the next generation electronics due to its electrical characteristic. A compact patch antenna with...
antenna | patch | FILMS | 24 GHz | array | TELECOMMUNICATIONS | graphene | ENGINEERING, ELECTRICAL & ELECTRONIC
antenna | patch | FILMS | 24 GHz | array | TELECOMMUNICATIONS | graphene | ENGINEERING, ELECTRICAL & ELECTRONIC
Journal Article
IEEE Transactions on Antennas and Propagation, ISSN 0018-926X, 02/2011, Volume 59, Issue 2, pp. 460 - 466
This paper presents a new design to realize a compact Rotman lens-fed antenna array. The lens-fed antenna has the form of two layers, which is a new approach...
Antenna measurements | Microstrip antenna arrays | Multilayer | system-in-package | Delay lines | Rotman lens | 24 GHz radar | Arrays | Microstrip | Lenses | DESIGN | TELECOMMUNICATIONS | ENGINEERING, ELECTRICAL & ELECTRONIC | Radar systems | Microwave wiring | Usage | Design and construction | Antenna arrays | Beams (radiation) | Scattering | Dielectrics | Automotive components | Antennas
Antenna measurements | Microstrip antenna arrays | Multilayer | system-in-package | Delay lines | Rotman lens | 24 GHz radar | Arrays | Microstrip | Lenses | DESIGN | TELECOMMUNICATIONS | ENGINEERING, ELECTRICAL & ELECTRONIC | Radar systems | Microwave wiring | Usage | Design and construction | Antenna arrays | Beams (radiation) | Scattering | Dielectrics | Automotive components | Antennas
Journal Article
Wireless Personal Communications, ISSN 0929-6212, 11/2017, Volume 97, Issue 1, pp. 1129 - 1139
A single patch antenna suitable for integration and operation in 24 GHz band for wireless inter vehicular communication is designed and developed. The...
Engineering | 24 GHz | Inter-vehicular communications | Signal,Image and Speech Processing | Microstrip patch | Short range communications | Communications Engineering, Networks | Computer Communication Networks | TELECOMMUNICATIONS | 24 GHz | LINE | Engineering design | Design and construction | Wireless telecommunications equipment | Methods | Antennas (Electronics)
Engineering | 24 GHz | Inter-vehicular communications | Signal,Image and Speech Processing | Microstrip patch | Short range communications | Communications Engineering, Networks | Computer Communication Networks | TELECOMMUNICATIONS | 24 GHz | LINE | Engineering design | Design and construction | Wireless telecommunications equipment | Methods | Antennas (Electronics)
Journal Article
IEEE Journal of Solid-State Circuits, ISSN 0018-9200, 04/2013, Volume 48, Issue 4, pp. 1042 - 1054
A 2.4 GHz TX in 65 nm CMOS defines three channels using three high-Q FBARs and supports OOK, BPSK and MSK. The oscillators have -132 dBc/Hz phase noise at 1...
Multiplexing | multi-channel | MSK | pulse shaping | 24 GHz | RF resonator | body area networks | OOK | Film bulk acoustic resonators | FBAR | Oscillators | BAN | Transmitters | Resonant frequency | Capacitance | BPSK | MEMS | Impedance | resonant buffer | transmitter | 10 dBm | ENGINEERING, ELECTRICAL & ELECTRONIC | TRANSCEIVER
Multiplexing | multi-channel | MSK | pulse shaping | 24 GHz | RF resonator | body area networks | OOK | Film bulk acoustic resonators | FBAR | Oscillators | BAN | Transmitters | Resonant frequency | Capacitance | BPSK | MEMS | Impedance | resonant buffer | transmitter | 10 dBm | ENGINEERING, ELECTRICAL & ELECTRONIC | TRANSCEIVER
Journal Article
Electronics Letters, ISSN 0013-5194, 11/2017, Volume 53, Issue 23, pp. 1546 - 1548
The design of a 24 GHz frequency divider-by-10 for accurate indoor localisation systems is presented. It is proposed to use frequency dividers as active...
Radar, sonar and navigation | indoor navigation | HARMONIC-GENERATION | interference suppression | voltage 1 V | frequency-modulated continuous wave indoor localisation system | silicon-on-insulator | frequency dividers | harmonic generation | direct reflections | interrogating signal | 7 mW | subharmonic generators | microwave frequency convertors | GLOBAL FOUNDRIES-silicon-on-insulator technology | ENGINEERING, ELECTRICAL & ELECTRONIC | frequency 24 GHz | frequency divider-by-10 | active reflector tag | interference reduction | power 5 | size 45 nm | conversion gain
Radar, sonar and navigation | indoor navigation | HARMONIC-GENERATION | interference suppression | voltage 1 V | frequency-modulated continuous wave indoor localisation system | silicon-on-insulator | frequency dividers | harmonic generation | direct reflections | interrogating signal | 7 mW | subharmonic generators | microwave frequency convertors | GLOBAL FOUNDRIES-silicon-on-insulator technology | ENGINEERING, ELECTRICAL & ELECTRONIC | frequency 24 GHz | frequency divider-by-10 | active reflector tag | interference reduction | power 5 | size 45 nm | conversion gain
Journal Article
Electronics Letters, ISSN 0013-5194, 1/2017, Volume 53, Issue 1, pp. 5 - 6
A new geometry of compact wideband/dual-band circularly polarised dielectric resonator antenna (DRA) is presented. First, a wideband DRA is realised by a...
Antennas and propagation | axial-ratio bandwidth | 18 GHz | 24 GHz | dual-band circularly polarised dielectric resonator antenna | bandwidth 10 | broadband antennas | 18 GHz to 11 | bandwidth 8 | resonators | ENGINEERING, ELECTRICAL & ELECTRONIC | rectangular dielectric resonator | 57 GHz to 12 | dual-band circularly polarised operation | compact wideband circularly polarised dielectric resonator antenna | frequency 6 | 31 GHz to 9 | 66 GHz | multifrequency antennas | floating parasitic strip | compact wideband | Circularity | Bandwidth | Radio antennas | Corners | Dielectrics | Resonators | Wideband | Gain
Antennas and propagation | axial-ratio bandwidth | 18 GHz | 24 GHz | dual-band circularly polarised dielectric resonator antenna | bandwidth 10 | broadband antennas | 18 GHz to 11 | bandwidth 8 | resonators | ENGINEERING, ELECTRICAL & ELECTRONIC | rectangular dielectric resonator | 57 GHz to 12 | dual-band circularly polarised operation | compact wideband circularly polarised dielectric resonator antenna | frequency 6 | 31 GHz to 9 | 66 GHz | multifrequency antennas | floating parasitic strip | compact wideband | Circularity | Bandwidth | Radio antennas | Corners | Dielectrics | Resonators | Wideband | Gain
Journal Article
IEICE TRANSACTIONS ON ELECTRONICS, ISSN 1745-1353, 05/2019, Volume E102C, Issue 5, pp. 416 - 419
This paper reports a 24 GHz ISM band radar module for pedestrian detection in crosswalks. The radar module is composed of an RF transceiver board, a baseband...
radar | ISM band | 24 GHz | ITS | pedestrian | FMCW | ENGINEERING, ELECTRICAL & ELECTRONIC
radar | ISM band | 24 GHz | ITS | pedestrian | FMCW | ENGINEERING, ELECTRICAL & ELECTRONIC
Journal Article
International Journal of Electronics Letters, ISSN 2168-1724, 2018, pp. 1 - 16
Journal Article
IEEE MICROWAVE AND WIRELESS COMPONENTS LETTERS, ISSN 1531-1309, 09/2007, Volume 17, Issue 9, pp. 658 - 660
This letter presents 24 GHz four-way and two-way miniature Wilkinson power dividers (PDs) in a standard CMOS technology. The chip area is significantly reduced...
CMOS | lumped PD | four-way power divider (PD) | 24 GHz | BAND | Wilkinson PD | ENGINEERING, ELECTRICAL & ELECTRONIC | Power dividers | Noise levels | Miniature | Insertion loss | Dividers | Microwaves | Standards
CMOS | lumped PD | four-way power divider (PD) | 24 GHz | BAND | Wilkinson PD | ENGINEERING, ELECTRICAL & ELECTRONIC | Power dividers | Noise levels | Miniature | Insertion loss | Dividers | Microwaves | Standards
Journal Article
IEEE Microwave and Wireless Components Letters, ISSN 1531-1309, 10/2011, Volume 21, Issue 10, pp. 553 - 555
This work demonstrates a fully integrated 24 GHz CMOS receiver targeted for low power and compact wireless sensor nodes utilizing FMCW radar for wireless local...
receiver | Noise | Receivers | Frequency modulated continuous wave (FMCW) | Mixers | Radio frequency | local positioning | Impedance matching | sensor network | low power | 24 GHz CMOS | CMOS integrated circuits | Gain | DIRECT-CONVERSION RECEIVER | ENGINEERING, ELECTRICAL & ELECTRONIC | CMOS | Noise levels | Baluns | Chips | Low noise | Amplifiers | Conversion
receiver | Noise | Receivers | Frequency modulated continuous wave (FMCW) | Mixers | Radio frequency | local positioning | Impedance matching | sensor network | low power | 24 GHz CMOS | CMOS integrated circuits | Gain | DIRECT-CONVERSION RECEIVER | ENGINEERING, ELECTRICAL & ELECTRONIC | CMOS | Noise levels | Baluns | Chips | Low noise | Amplifiers | Conversion
Journal Article
IEEE Journal of Solid-State Circuits, ISSN 0018-9200, 12/2009, Volume 44, Issue 12, pp. 3469 - 3485
Integration of multi-mode multi-band transceivers on a single chip will enable low-cost millimeter-wave systems for next-generation automotive radar sensors....
High power amplifiers | Low-noise amplifiers | Millimeter-wave integrated circuits | Pulse amplifiers | 24 GHz | Millimeter wave radar | 77 GHz | frequency synthesizers | Transceivers | Sensor systems | automotive radar | Automotive engineering | phase locked loops | dual-band | injection-locked oscillators | frequency conversion | Millimeter wave technology | Dual band | 79 GHz | direct-conversion transmitter | BiCMOS integrated circuits | direct-conversion receiver | pulsed radar | pulse generator | Dual-band | Frequency synthesizers | Pulsed radar | Frequency conversion | Pulse generator | Phase locked loops | Automotive radar | Injection-locked oscillators | Direct-conversion receiver | Direct-conversion transmitter | GENERATOR | SILICON | ANTENNAS | ENGINEERING, ELECTRICAL & ELECTRONIC | PHASED-ARRAY TRANSCEIVER | TRANSMITTER | GHZ | 77-GHZ | RECEIVER
High power amplifiers | Low-noise amplifiers | Millimeter-wave integrated circuits | Pulse amplifiers | 24 GHz | Millimeter wave radar | 77 GHz | frequency synthesizers | Transceivers | Sensor systems | automotive radar | Automotive engineering | phase locked loops | dual-band | injection-locked oscillators | frequency conversion | Millimeter wave technology | Dual band | 79 GHz | direct-conversion transmitter | BiCMOS integrated circuits | direct-conversion receiver | pulsed radar | pulse generator | Dual-band | Frequency synthesizers | Pulsed radar | Frequency conversion | Pulse generator | Phase locked loops | Automotive radar | Injection-locked oscillators | Direct-conversion receiver | Direct-conversion transmitter | GENERATOR | SILICON | ANTENNAS | ENGINEERING, ELECTRICAL & ELECTRONIC | PHASED-ARRAY TRANSCEIVER | TRANSMITTER | GHZ | 77-GHZ | RECEIVER
Journal Article
Advanced Electromagnetics, ISSN 2119-0275, 08/2018, Volume 7, Issue 4, pp. 12 - 18
in this work we present a 16x1 array’ elements of a high gain Novel shape designed Dielectric Resonator Antenna (NDRA), having a low dielectric constant value...
DRAs | SRR | Anticollision automotive radar | High gain | LRR | 24 GHz | Anti-collision automotive radar
DRAs | SRR | Anticollision automotive radar | High gain | LRR | 24 GHz | Anti-collision automotive radar
Journal Article
IEEE Microwave and Wireless Components Letters, ISSN 1531-1309, 09/2007, Volume 17, Issue 9, pp. 658 - 660
Journal Article
Lecture Notes in Electrical Engineering, ISSN 1876-1100, 2017, Volume 415, pp. 831 - 837
Conference Proceeding
IEEE Journal of Solid-State Circuits, ISSN 0018-9200, 10/2016, Volume 51, Issue 10, pp. 2420 - 2434
This paper presents two 2-stage inverse class-F power amplifiers (PAs) at 24 GHz and 38 GHz, integrated in 0.13 μm SiGe BiCMOS technology. The PAs are composed...
class- text {F}^{\mathrm {-1}} | 24 GHz | Power system harmonics | 28 GHz | Harmonic analysis | inverse class F | Voltage control | harmonic tuned power amplifier | class-F | 38 GHz | SiGe PA | Microwave circuits | Silicon | Impedance | Power generation | DESIGN | VOLTAGE | OUTPUT | PERFORMANCE | IMPLEMENTATION | BAND | class-F-1 | SOI | ENGINEERING, ELECTRICAL & ELECTRONIC | PAE | GHZ
class- text {F}^{\mathrm {-1}} | 24 GHz | Power system harmonics | 28 GHz | Harmonic analysis | inverse class F | Voltage control | harmonic tuned power amplifier | class-F | 38 GHz | SiGe PA | Microwave circuits | Silicon | Impedance | Power generation | DESIGN | VOLTAGE | OUTPUT | PERFORMANCE | IMPLEMENTATION | BAND | class-F-1 | SOI | ENGINEERING, ELECTRICAL & ELECTRONIC | PAE | GHZ
Journal Article
IET Microwaves, Antennas & Propagation, ISSN 1751-8725, 11/2015, Volume 9, Issue 14, pp. 1581 - 1586
A novel microstrip patch antenna is proposed for automotive application. The antenna design has been investigated through both the parametric study and the...
Research Articles | LOW CROSS-POLARIZATION | electromagnetic wave polarisation | side detection system | shorted parasitic rhombic array antenna | RADAR | radiation performance | microstrip patch antenna | TELECOMMUNICATIONS | PATCH | microstrip antenna arrays | automotive application | ENGINEERING, ELECTRICAL & ELECTRONIC | antenna testing | frequency 24 GHz | cross-polarisation level | reflection coefficient | antenna radiation patterns | microwave antenna arrays | surface current demonstration | rear detection system | gain 5 | 9 dB | Rhombic antennas | Design engineering | Noise levels | Simulation | Reflection coefficient | Gain | Antennas | Antenna arrays
Research Articles | LOW CROSS-POLARIZATION | electromagnetic wave polarisation | side detection system | shorted parasitic rhombic array antenna | RADAR | radiation performance | microstrip patch antenna | TELECOMMUNICATIONS | PATCH | microstrip antenna arrays | automotive application | ENGINEERING, ELECTRICAL & ELECTRONIC | antenna testing | frequency 24 GHz | cross-polarisation level | reflection coefficient | antenna radiation patterns | microwave antenna arrays | surface current demonstration | rear detection system | gain 5 | 9 dB | Rhombic antennas | Design engineering | Noise levels | Simulation | Reflection coefficient | Gain | Antennas | Antenna arrays
Journal Article
International Journal of Information and Communication Technology, ISSN 1466-6642, 2018, Volume 13, Issue 2, pp. 243 - 255
A 24 GHz automotive radar with dual frequency modulated continuous waveform (FMCW) is proposed. By using this modulation waveform, the ghost targets can be...
Multi-target | FMCW | Frequency modulated continuous waveform | 24 GHz | Automotive radar | Transceiver | Integrated circuits | CMOS | Computer simulation | Radar detection | Modulation | MMIC (circuits) | Radar systems | Target detection
Multi-target | FMCW | Frequency modulated continuous waveform | 24 GHz | Automotive radar | Transceiver | Integrated circuits | CMOS | Computer simulation | Radar detection | Modulation | MMIC (circuits) | Radar systems | Target detection
Journal Article
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