TALK KEYWORD INDEX
      This page contains an index consisting of author-provided keywords.
| ( | |
| (SIW) | |
| 2 | |
| 2-D periodic structures | |
| 2D printing | |
| 3 | |
| 3D conductive silver ink | |
| 3D printing | |
| 3D-printed antennas | |
| 3D-printed-antennas | |
| 3D-printing | |
| 5 | |
| 5G | |
| 5G communication | |
| 5G Mobile Phone | |
| 6 | |
| 60-GHz radiative near-field region communication | |
| 6G | |
| 6G networks | |
| A | |
| ablation | |
| absorber arrays | |
| Academic Keynote | |
| Accademic Keynote | |
| adaptive phase alignment | |
| adaptive response | |
| ADAS systems | |
| additive manufacturing | |
| Aerospace | |
| Aimplifier | |
| alumina | |
| Aluminium Nitride | |
| analytical regularization | |
| Anisotropic polarizer | |
| ANNs | |
| Anomalous refraction | |
| antenna | |
| antenna array | |
| antenna measurements | |
| antenna reconfigurability | |
| antenna-feed chains | |
| antennas | |
| Antipodal Vivaldi antenna | |
| Array Antenna | |
| Array signal processing | |
| Array Simulations | |
| Artificial magnetic conductor | |
| artificial magnetic conductor (AMC) | |
| atmospheric propagation | |
| Attenuation | |
| Automotive | |
| Automotive Radar | |
| autophagy | |
| B | |
| Backhaul | |
| backhauling | |
| Backhauling systems | |
| Backscatter | |
| Backscatter communication | |
| backscattering | |
| bandpass elliptic filter | |
| bandpass filter | |
| battery | |
| beam management | |
| beam steering | |
| beam-waveguide (BWG) | |
| Beam_steering_antennas | |
| behavioral modeling | |
| BEOL | |
| Bessel beam | |
| bi-polar scanning | |
| bias tee | |
| bias-invariant | |
| BiCMOS | |
| BiCMOS integrated circuits | |
| Bio-inspired antenna | |
| biomedical | |
| biopsy samples | |
| birdcage resonator | |
| Blood | |
| Bowtie Antenna | |
| broadband | |
| Broadband Matching | |
| Broadband Power Amplifier | |
| broadband THz detectors | |
| C | |
| C-shaped resonators | |
| Calibrated waveguide mode excitation | |
| Calibration | |
| Calibration Process | |
| cancer therapy | |
| cascode | |
| Characteristic Mode Analysis | |
| chipless RFID | |
| chipless-RFID | |
| Chirp spread spectrum (CSS) | |
| circular polarization | |
| CMOS | |
| compact filter | |
| compact range | |
| complementary split ring resonator | |
| Complementary split ring resonator (CSRR) | |
| Complex Dielectric Permittivity Measurements | |
| complex natural oscillations | |
| complex resonant frequency | |
| Compound reconfigurable antenna | |
| computational electromagnetics | |
| Conductive filament | |
| continuous flow | |
| Continuous transverse stub antenna | |
| control | |
| convolutional neural networks | |
| corrugated parallel-plate waveguide technology | |
| corrugated waveguide | |
| corrugations | |
| coupler | |
| CPS | |
| cross-coupled | |
| cross-coupled pair | |
| CST Microwave studio | |
| CTS antenna array | |
| cubesat | |
| current distribution | |
| Cyclic Olefin Copolymer | |
| Cylindrical bending | |
| D | |
| DC power consumption | |
| deep space antenna (DSA) | |
| design | |
| Design of Interstage Equalizers | |
| Detection concertation | |
| dichroic mirror | |
| dielectric characterization | |
| Dielectric leaky-wave antennas | |
| dielectric measurements | |
| dielectric properties | |
| Dielectric resonator antennas | |
| dielectric waveguides | |
| Dielectrics | |
| diffraction | |
| dimensioning | |
| dispersion analysis | |
| dispersive analyses | |
| Divider | |
| Doctoral School | |
| Doherty | |
| Dolph-Tschebyscheff distribution | |
| Double Matching Problems | |
| dual integral equations | |
| Dual-band | |
| dual-band antenna | |
| Duplexer | |
| E | |
| E-band | |
| Earth-space communications | |
| Echo generators | |
| Efficiency | |
| electric field confinement | |
| electrical properties | |
| Electrifi | |
| Electromagnetic bandgap structures | |
| electromagnetic fields exposure | |
| electromagnetic inverse scattering | |
| electromagnetic modeling | |
| electromagnetic shielding | |
| electromagnetics | |
| EM problems | |
| EM Skins (EMSs) | |
| engineering | |
| Engineering Design | |
| engineering electromagnetics | |
| environmental monitoring | |
| Ethanol | |
| ex-vivo | |
| experimental setup | |
| exposure assessment | |
| F | |
| FDSOI | |
| Field Effect Transistor (FET) | |
| field probes | |
| Field’s metal | |
| filtenna | |
| filters | |
| flat antenna under test | |
| FLEXCOM | |
| flexible | |
| Flexible antennas | |
| Flexible Electronic | |
| flexible interconnects | |
| flexible microstrip line | |
| Foster Functions | |
| Frequency reconfigurable | |
| Frequency Selective Surface | |
| frequency selective surface (FSS) | |
| frequency selective surfaces | |
| Frequency Shielding | |
| Frequency-and temperature-dependent | |
| fused deposition modelling | |
| fused filament fabrication (FFF) | |
| G | |
| Gain-Bandwidth Limitation | |
| Galerkin method | |
| gallium nitride (GaN) | |
| GaN | |
| GaN HEMT | |
| GaN HEMT technology | |
| GaN Transistor | |
| GaN-on-Si | |
| GaNonSiC | |
| gap waveguide technology | |
| gaps | |
| gas sensor | |
| generalized boundary conditions | |
| Generalized Dynamic Bayesian Networks | |
| Geo-database | |
| glide symmetrical holes | |
| glide symmetry | |
| graphene | |
| ground station | |
| H | |
| harmonic suppression | |
| health Sector | |
| heating methods | |
| HEFPA | |
| hexagram | |
| High data rate communications | |
| high gain | |
| High gain antenna structures | |
| high-electron-mobility transistor (HEMT) | |
| Hilbert Transformation | |
| homogenization | |
| Human body | |
| human body exposure | |
| humidity | |
| I | |
| III-V | |
| image reconstruction | |
| Immittance Realizability Conditions | |
| impedance active | |
| impedance load | |
| In-lab testing | |
| Industrial Keynote | |
| ink-jet printing | |
| intelligent antennas | |
| Internet of Things(IoT) | |
| IoHT | |
| IoT | |
| IoT Applications | |
| irreducible Brillouin zone | |
| J | |
| jammer detection | |
| Joint Communication and Sensing | |
| K | |
| K band | |
| K-band | |
| K/Ka-Band | |
| Ka-band | |
| keysight | |
| L | |
| laser powder-bed fusion | |
| Launchers | |
| Leaky-wave antennas | |
| learning methods | |
| Lens antenna | |
| LEO | |
| Limited-diffractive | |
| liquid crystal | |
| liquid crystals | |
| LNA | |
| Localized waves | |
| long objects | |
| Lorentzian fitting | |
| low noise amplifier | |
| Low Noise Amplifier (LNA) | |
| low sidelobe level | |
| LTCC | |
| Luneburg lens | |
| M | |
| machines | |
| magnetic resonance imaging | |
| magneto-electric (ME) dipole | |
| matching | |
| material characterization | |
| measurement | |
| Mechanical beam steering | |
| menadione | |
| Meshing | |
| Meta-heuristics | |
| metal surface | |
| metalens | |
| Metamaterial | |
| metamaterials | |
| metasurface | |
| metasurfaces | |
| Method of Analytical Regularization | |
| Method of Auxiliary Sources | |
| MICRO-STRIP | |
| microstrip | |
| microstrip loop antenna | |
| microstrip resonator | |
| microstrip technology | |
| microwave | |
| microwave and millimeter-waves | |
| Microwave circuits | |
| microwave components | |
| microwave filters | |
| microwave frequency | |
| microwave heating | |
| microwave needle | |
| microwave processing | |
| microwave sensors | |
| Middleware | |
| Millimeter wave radar | |
| millimeter-wave | |
| Millimeter-wave antenna | |
| millimeter-wave frequency | |
| millimeterwave | |
| milling | |
| mimo | |
| MIMO antennas | |
| MIMO beamforming | |
| mini-satellites | |
| miniaturization | |
| Minimum Functions | |
| mm-wave Spectrum | |
| MMIC | |
| MMICs | |
| MMS2022 | |
| mmW | |
| mmwave | |
| mmWave antennas | |
| Mobile Communications | |
| Modes | |
| Modulated Scattering Technique(MST) | |
| monolithic microwave integrated circuit (MMIC) | |
| Monopulse tracking system | |
| multiband | |
| multifinger layout | |
| multilayer | |
| Multimodal waveguides | |
| multiple bands | |
| multiple cascaded resonators | |
| MUSIC | |
| N | |
| near-field/far-field transformation | |
| Negative impedance | |
| network analyzer | |
| Network Planning | |
| Neural networks algorithm | |
| NGSO constellations | |
| Non-Foster | |
| non-redundant representations of electromagnetic fields | |
| nonlinear modeling | |
| Notched band | |
| numerical dosimetry | |
| O | |
| OAM multiplexing | |
| oblique incidence | |
| obstacles avoidance | |
| off-body wireless power | |
| on-body communication | |
| onchip | |
| ontology | |
| Open-Ended Coaxial Probe | |
| Opening | |
| optimization | |
| P | |
| PA | |
| package | |
| passive components | |
| passive tag | |
| patch antenna | |
| pattern diversity | |
| Payloads | |
| PCB Antenna | |
| PCB technology | |
| peer review | |
| PEN | |
| periodic structure | |
| periodic structures | |
| phased array | |
| phased_arrays | |
| Philosophy | |
| photolithography | |
| Photonic Beamforming | |
| Photonic Integrated Circuit (PIC) | |
| Piezoelectric Sensors | |
| PIFA | |
| PIFA antenna | |
| Pillbox | |
| pilot plant | |
| plane wave expansion | |
| polymers | |
| position-assisted communications | |
| Positive Real Functions | |
| Power Amplifier | |
| Power Amplifier (PA) | |
| power amplifiers | |
| Probabilistic power-based model | |
| propagation constant | |
| Q | |
| quadrature | |
| quality factor | |
| R | |
| Radar | |
| Radar polarimetry | |
| radar sensor | |
| Radar signal processing | |
| Radars | |
| radial line slot antenna | |
| Radio Frequency Identification (RFID) | |
| radio frequency integrated circuits (RFIC) | |
| radiofrequency electromagnetic fields | |
| ratrace | |
| RCS measurements | |
| RCS reduction | |
| Real Frequency Line Segment Technique | |
| Real Frequency Techniques | |
| reconfigurability | |
| Reconfigurable antenna | |
| Reconfigurable Intelligent Surfaces (RISs) | |
| reflectarray antennas | |
| reflectarrays | |
| reflection coefficient | |
| reflective surface | |
| Regional Cadaster | |
| resonance modes | |
| resonant frequency | |
| reverberating chamber | |
| RF | |
| RF exposure | |
| RF Human Exposure | |
| RFID | |
| RFID network planning | |
| RFID tag antenna | |
| RFID-UHF | |
| rhomboid magneto-electric (ME)dipole | |
| S | |
| S-parameters | |
| S-shaped cavities | |
| safety | |
| SARS-Covid | |
| SatCom | |
| Satcom systems | |
| Satellite communication | |
| satellite downlink | |
| Scattering | |
| scattering and diffraction | |
| scattering parameter measurements | |
| Schottky Diode (SD) | |
| Scoping review | |
| SEE | |
| Sensor | |
| ship navigation | |
| shunt-connected series feeding network | |
| SiC | |
| SICL | |
| side frame | |
| SiGe | |
| SiGe BiCMOS | |
| Silicon Nitride | |
| Single Matching Problems | |
| single wire transmission lines | |
| singular functions | |
| sinuous antenna | |
| SIW | |
| SIW transmission line | |
| slit | |
| slot array | |
| slot openings | |
| slowwave | |
| Smart | |
| smart antennas | |
| Smart EM Environment (SEME) | |
| smart environment | |
| Smart Houses | |
| smartphone antenna | |
| smartwatch antenna | |
| solid-state | |
| source degeneration | |
| Space | |
| Specific absorption rate | |
| specific absorption rate (SAR) | |
| spectroscopy | |
| Spectrum sensing | |
| Spherical resonators | |
| spurline | |
| stacked | |
| stacked cells | |
| stochastic dosimetry | |
| stub loaded multi-mode resonators | |
| sub-6GHz band | |
| sub-TeraHz | |
| substrate integrated waveguide | |
| Substrates | |
| Superdirectivity | |
| Superstrate antennas | |
| supervised descent method | |
| surface impedance measurement | |
| surface waves | |
| SVD | |
| SVO | |
| Synthetic Aperture Radar | |
| Synthetic Aperture Radar (SAR) | |
| T | |
| technical paper | |
| temperature | |
| temperature distribution | |
| terahertz | |
| terahertz communications | |
| terahertz technology | |
| Textile antenna | |
| textile antennas | |
| thermal ablation | |
| Thin-Film Bulk Acoustic-wave Resonator | |
| TLM method | |
| Total delectric constant | |
| Total loss factor | |
| transmitarray | |
| trapezoidal corrugations | |
| trends | |
| True Time Delay (TTD) | |
| tunable antennas | |
| Tutorial | |
| types | |
| U | |
| UHF RFID | |
| UHF RFID tag | |
| Uniform theory of diffraction | |
| Urban mObility | |
| UWB | |
| V | |
| V-band | |
| V2X | |
| Vacuum breakdown - multipactor | |
| varactor | |
| Varactor diode | |
| Variable gain amplifier | |
| vehicular antenna | |
| virtual transmission line model (VTLM) | |
| Volume fraction ratio | |
| vortex mode | |
| W | |
| W-band | |
| wakefield | |
| waveguides | |
| wearable | |
| wearable antenna | |
| wearable antennas | |
| wearable device | |
| wearables | |
| Welcom | |
| Wi-Fi 6 applications | |
| wide stopband | |
| wideband | |
| wideband antenna | |
| Wideband measurements | |
| Wiener-Hopf technique | |
| WIGIG application | |
| Wilkinson | |
| wire erosion | |
| Wireless Body Area Network (WBAN) | |
| wireless sensors | |
| WLAN | |
| workshop | |
| WPT | |
| wrist model | |
| X | |
| X-band | |
| Z | |
| ZigBee | |