Search results for "Directivity"

showing 9 items of 9 documents

Modalità orientata sul partecipante in siciliano contemporaneo: i dati dell'Atlante linguistico della Sicilia (ALS)

2021

Il contributo descrive lo spazio semantico-funzionale codificato dalle costruzioni del siciliano contemporaneo che coinvolgono aviri a, putiri, sapiri e vuliri: (a) aviri a (avere da/dovere) + infinito; (b) putiri/sapiri (potere/sapere) + infinito; (c) vuliri (volere) + infinito; (d) vuliri + participio passato. In particolare, si farà riferimento a due domini funzionali intimamente connessi: la modalità orientata sul partecipante e la direttività. Il corpus di analisi è costituito dagli etnotesti e dalle produzioni a codice bloccato siciliano della sezione sociovariazionale dell’Atlante Linguistico della Sicilia (ALS), nonché dalle risposte ai quesiti traduttivi (italiano/siciliano, sicili…

DirectivitySettore L-FIL-LET/12 - Linguistica ItalianaParticipant-oriented ModalitySicilianModalitySettore L-LIN/01 - Glottologia E Linguistica
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Optical Plasmonic Yagi-Uda Nano-Antennas Array for Energy Harvesting Applications

2020

Optical nanoantennas have been of great interest recently due to their ability to support a highly efficient, localized surface plasmon resonance and produce significantly enhanced and highly confined electromagnetic fields. The Yagi-Uda nanoantenna, an optical analogue of the well-established radiofrequency Yagi-Uda antenna, stands out by its efficient unidirectional light emission and enhancement. In this paper, the design of an optical plasmonic Yagi-Uda nanoantenna for energy harvesting application is proposed. The enhancement of the directivity is reached by means of an organization in array. The simulation results, carried out by 3D code CST Studio, show that the proposed nanoantenna …

Electromagnetic fieldPhysicsbusiness.industry020206 networking & telecommunicationsOptical polarization02 engineering and technology021001 nanoscience & nanotechnologyarray energy harvesting optical nanoantennas plasmonic Yagi-UdaDirectivity0202 electrical engineering electronic engineering information engineeringOptoelectronicsLight emissionAntenna (radio)Surface plasmon resonance0210 nano-technologybusinessEnergy harvestingPlasmon2020 IEEE International Conference on Environment and Electrical Engineering and 2020 IEEE Industrial and Commercial Power Systems Europe (EEEIC / I&CPS Europe)
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A low-cost compact uniplanar Quasi–Yagi printed antenna

2008

A low cost directive uniplanar broadband printed Quasi–Yagi antenna design is presented. As a particular realization, some prototypes have been designed to operate in the 2.45 GHz band. They have been then modeled, fabricated onto standard printed circuit dielectric substrate and tested successfully. For the design and the modeling processes, we have make use of FDTD based in-house developed algorithms. The obtained bandwidth is, for all the considered cases, better than 15%. The main radiation characteristics are 2–5.5 dBi gain, depending on the number of director elements, and better than 25 dB front-to-back ratio. Overall antenna size was, in any case lesser than 1 λ × 0.5 λ. © 2008 Wile…

Engineeringbusiness.industryAntenna designBandwidth (signal processing)Electrical engineeringFinite-difference time-domain methodDielectric substrateCondensed Matter PhysicsDirectivityAtomic and Molecular Physics and OpticsElectronic Optical and Magnetic MaterialsPrinted circuit boardBroadbandElectrical and Electronic EngineeringbusinessMicrowaveMicrowave and Optical Technology Letters
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Design of Yagi-like printed antennas for WLAN applications

2007

A directive broadband printed Yagi-like antenna design is presented. We have focused on the 2.45 GHz WLAN band, at which some designs have been carried out. For the design and the modelling processes, we made use of FDTD based in-house developed algorithms. Some selected prototypes have then been fabricated onto a low-cost printed circuit board dielectric substrate and tested successfully. Bandwidths higher than 10% and moderate to high (>7 dBi) gains can be obtained this way. © 2007 Wiley Periodicals, Inc. Microwave Opt Technol Lett 49: 2174–2178, 2007; Published online in Wiley InterScience (www.interscience.wiley.com). DOI 10.1002/mop.22655

Engineeringbusiness.industryAntenna designFinite-difference time-domain methodElectrical engineeringDielectric substrateCondensed Matter PhysicsDirectivityAtomic and Molecular Physics and OpticsElectronic Optical and Magnetic MaterialsPrinted circuit boardBroadbandElectronic engineeringElectrical and Electronic EngineeringbusinessMicrowaveMicrowave and Optical Technology Letters
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High-velocity Impact Location on Aircraft panels Using Macro-fiber Composite piezoelectric Rosettes

2010

In this article, an approach based on an array of macro-fiber composite (MFC) transducers arranged as rosettes is proposed for high-velocity impact location on isotropic and composite aircraft panels. Each rosette, using the directivity behavior of three MFC sensors, provides the direction of an incoming wave generated by the impact source as a principal strain angle. A minimum of two rosettes is sufficient to determine the impact location by intersecting the wave directions. The piezoelectric rosette approach is easier to implement than the well-known time-of-flight-based triangulation of acoustic emissions because it does not require knowledge of the wave speed in the material. Hence, th…

Engineeringbusiness.industryMechanical EngineeringAcousticsIsotropyTriangulation (social science)impact location structural health monitoring macro-fiber composite transducers acoustic emissions.DirectivityPiezoelectricitylaw.inventionOpticsAcoustic emissionlawNondestructive testingLight-gas gunGeneral Materials ScienceStructural health monitoringbusinessAstrophysics::Galaxy Astrophysics
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Efficient unidirectional polarization-controlled excitation of surface plasmon polaritons

2014

Efficient excitation of surface plasmon polaritons (SPPs) remains one of the most challenging issues in areas of plasmonics related to information communication technologies. In particular, combining high SPP excitation efficiency and acceptance of any polarization of incident light appeared to be impossible to attain due to the polarized nature of SPPs. Here we demonstrate plasmonic couplers that represent arrays of gap SPP resonators producing upon reflection two orthogonal phase gradients in respective linear polarizations of incident radiation. These couplers are thereby capable of efficiently converting incident radiation with arbitrary polarization into SPPs that propagate in orthogon…

Materials sciencebusiness.industryOptical communicationNanophotonicsNonlinear opticsPhysics::OpticsPolarization (waves)DirectivitySurface plasmon polaritonAtomic and Molecular Physics and OpticsElectronic Optical and Magnetic MaterialsWavelengthOpticsOptoelectronicsbusinessPlasmon
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Improving the vertical radiation pattern issued from multiple nano-groove scattering centers acting as an antenna for future integrated optics Fourie…

2019

The stationary wave integrated Fourier transform spectrometer (SWIFTS) is based on the sampling of a stationary wave using nano-scattering centers on the surface of a channel waveguide. Single nano-scale scattering centers above the waveguide surface will radiate the sampled signal with wide angular distribution, which is not compatible with the buried detection area of infrared (IR) detectors, resulting in crosstalk between pixels. An implementation of multiple diffraction nano-grooves (antenna) for each sampling center is proposed as an alternative solution to improve directivity towards the detector pixel by narrowing the scattering angle of the extracted light. Its efficiency is demonst…

Materials sciencebusiness.industryScatteringDetectorPhysics::Optics02 engineering and technologyFresnel equations021001 nanoscience & nanotechnology01 natural sciencesDirectivityAtomic and Molecular Physics and OpticsFourier transform spectroscopyRadiation pattern010309 opticsOptics0103 physical sciencesRadiative transfer[SPI.OPTI]Engineering Sciences [physics]/Optics / PhotonicReflection coefficient0210 nano-technologybusinessComputingMilieux_MISCELLANEOUS
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Microphones’ Directivity for the Localization of Sound Sources

2011

In a recent paper [P. Rizzo, G. Bordoni, A. Marzani, and J. Vipperman, "Localization of Sound Sources by Means of Unidirectional Microphones, Meas. Sci. Tech., 20, 055202 (12pp), 2009] the proof-of-concept of an approach for the localization of acoustic sources was presented. The method relies on the use of unidirectional microphones and amplitude-based signals' features to extract information about the direction of the incoming sound. By intersecting the directions identified by a pair of microphones, the position of the emitting source can be identified. In this paper we expand the work presented previously by assessing the effectiveness of the approach for the localization of an acoustic…

Sound localizationunidirectional microphonesound source localization; unidirectional microphones; polar directivity pattern; feature extraction; timedelay estimate.timedelay estimate.Anechoic chamberComputer scienceAcousticsfeature extractionFeature extractionDetectorpolar directivity patternAcoustic source localizationDirectivityExpression (mathematics)sound source localizationPosition (vector)
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Trade-off Performance of Optical Nanoantennas for Solar Energy Harvesting Applications

2019

In this paper, the optimum behaviour of optical nanoantennas, in terms of impedance, directivity, available power, and field enhancement, at a resonance frequency of about 350 THz, will be shown. Optimum configurations are obtained by varying nanoantennas geometry in order to maximize the available power, enhancing the electric field in gap proximity and so the absorptivity. Moreover, the simulation results for aluminum nanoantennas on a three-layers substrate, will be reported, and a trade-off performance comparison among different antennas will be discussed. This study can guide both the engineering and the fabrication of plasmonic nanoantennas.

energy harvestingNanoantennaMaterials scienceFabricationField (physics)Terahertz radiation02 engineering and technology01 natural sciencesDirectivitySettore ING-INF/01 - Elettronicalaw.invention010309 opticslawElectric field0103 physical sciencesopticalDipole antennaElectrical impedancePlasmonplasmonicbusiness.industryBowtie021001 nanoscience & nanotechnologyOptoelectronics0210 nano-technologybusinessdipole
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