Search results for "BAND"

showing 10 items of 2610 documents

Analysis of different Sleeve Ferrite Cores Performance according to their Dimensions

2019

Sleeve ferrite core is an EMI suppressor widely used to reduce the conductive and radiated electromagnetic noise in cables. The interconnection of different electronic systems through cables is becoming more difficult due to the hard restrictions related to EMC compliance requirements. Thereby, the research of new solutions able to provide a great attenuation ratio in a wide frequency band is a challenge. This contribution focuses on analyzing and comparing the performance of a novel sleeve ferrite solution based on a nanocrystalline (NC) structure with several materials with different compositions. This component is able to provide a high initial permeability value at the same time that ma…

InterconnectionMaterials scienceFrequency bandAcoustics020206 networking & telecommunications02 engineering and technology021001 nanoscience & nanotechnologyFerrite coreEMIvisual_art0202 electrical engineering electronic engineering information engineeringvisual_art.visual_art_mediumFerrite (magnet)Ceramic0210 nano-technologyElectrical impedanceElectrical conductor2019 International Symposium on Electromagnetic Compatibility - EMC EUROPE
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Wannier90 as a community code: new features and applications

2019

Wannier90 is an open-source computer program for calculating maximally-localised Wannier functions (MLWFs) from a set of Bloch states. It is interfaced to many widely used electronic-structure codes thanks to its independence from the basis sets representing these Bloch states. In the past few years the development of Wannier90 has transitioned to a community-driven model; this has resulted in a number of new developments that have been recently released in Wannier90 v3.0. In this article we describe these new functionalities, that include the implementation of new features for wannierisation and disentanglement (symmetry-adapted Wannier functions, selectively-localised Wannier functions, s…

Interface (Java)02 engineering and technologysemiconductors01 natural sciencesGeneral Materials Sciencefieldslocal orbitalCondensed Matter - Materials ScienceUnit testingComputer programBasis (linear algebra)electronstooldynamicsComputational Physics (physics.comp-ph)021001 nanoscience & nanotechnologyCondensed Matter Physicsspin polarizationreal-space methods[PHYS.COND.CM-MS]Physics [physics]/Condensed Matter [cond-mat]/Materials Science [cond-mat.mtrl-sci]0210 nano-technologyPhysics - Computational PhysicspseudopotentialsconstructionMaterials sciencelocal orbitalsFluids & Plasmasreal-space method0204 Condensed Matter PhysicsFOS: Physical sciencesComputational sciencecrystalSet (abstract data type)band structure interpolation0103 physical sciencesddc:530Wannier function010306 general physics0912 Materials Engineeringdensity-functional theoryWannier orbitalWannier function1007 Nanotechnologybusiness.industrywannier orbitalsMaterials Science (cond-mat.mtrl-sci)Usabilitywannier functionsWannier functions; band structure interpolation; local orbitals; real-space methods; electronic structure; Wannier orbitals; density-functional theoryelectronic structureAutomationtotal-energy calculationsbusiness
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Secondary users selection and sparse narrow-band interference mitigation in cognitive radio networks

2018

Spectrum scarcity is a critical problem that may reduce the effectiveness of wireless technologies and services. To address this problem, different spectrum management techniques have been proposed in the literature such as overlay cognitive radio (CR) where the unlicensed users can share the same spectrum with the licensed users. The main challenges in overlay CR networks are the identification and detection of the Primary User (PU) signals in a multi-source narrow-band interference (NBI) scenario. Therefore, in this paper, we investigate the performance of an orthogonal frequency division multiplexing (OFDM) overlay CR network with Secondary Users (SUs) and subcarriers selection schemes. …

Interference mitigationComputer Networks and Communicationsbusiness.industryComputer scienceOrthogonal frequency-division multiplexing020206 networking & telecommunications020302 automobile design & engineering02 engineering and technologyCompressive sensingNarrow-band interferenceCognitive networkInterference (wave propagation)Spectrum management[INFO.INFO-NI]Computer Science [cs]/Networking and Internet Architecture [cs.NI]Cognitive radio0203 mechanical engineeringChannel state information0202 electrical engineering electronic engineering information engineeringElectronic engineeringWirelessbusinessCognitive networkSparsityOFDMComputer Communications
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Performance Enhancement of Multimedia Broadcast Multicast Service (MBMS) with Receive Diversity

2007

The aim of this paper is to evaluate the effect of receive diversity on multimedia broadcast multicast service (MBMS) performance in wideband code division multiple access (WCDMA) networks. In addition to time diversity provided by long interleaving and receive diversity provided by multiple receive antennas, 3GPP release 6 specifications for MBMS introduce two macro diversity schemes: soft and selective combining. Diversity techniques are introduced in order to improve the MBMS performance. Improvements help especially the cell edge MBMS users who suffer most from the fading channel conditions. As receive diversity is one of the most efficient diversity techniques this paper examines the s…

Interleavingbusiness.industryCode division multiple accessComputer scienceFadingEnhanced Data Rates for GSM EvolutionRadio resource managementWidebandbusinessMultimedia Broadcast Multicast ServiceTime diversityComputer networkCooperative diversitySixth International Conference on Networking (ICN'07)
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De Bakou à Bruxelles. L’Internationale communiste face au monde colonial (1920-1940)

2020

International audience

Internationale communistecongrès de BakouWilly Münzenbergcongrès de Bandeongcongrès de Bruxelles[SHS.HIST] Humanities and Social Sciences/HistoryKominternoppression coloniale[SHS.HIST]Humanities and Social Sciences/HistoryantifascismeimpérialismeComputingMilieux_MISCELLANEOUS
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For a “Living (Lab)” Approach to Smart Cities

2016

Thanks to the diffusion of information and communication technologies, and despite the huge margins of improvement of the operating conditions of the Web, sharing an idea can be today the starting point for the birth of either a start-up or a community of interests, able to achieve a variety of goals without the intervention of any public institution. In relation to such a ferment of successful micro-level initiatives, Territorial Living Labs are here interpreted as place-based ecosystems of co-creation of goods, services as well as new organizational and social models of smart urban life. From this interpretation, the necessity strongly emerges of a coherent and viable reference framework …

Intervention (law)Knowledge managementAction (philosophy)Living labbusiness.industrySmart cityAbandonment (legal)Urban Geography Urbanism Urban Economics and Management Planning Research Planning TheoryPublic institutionBusinessSettore ICAR/21 - UrbanisticaSpatial planningVariety (cybernetics)
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Inverse Scattering Solutions with Applications to Electromagnetic Signal Processing

2009

When a signal is recorded that has been physically generated by some scattering process (the interaction of electromagnetic, acoustic or elastic waves with inhomogeneous materials, for example), the ‘standard model’ for the signal (i.e. information content convolved with a characteristic Impulse Response Function) is usually based on a single scattering approximation. An additive noise term is introduced into the model to take into account a range of non-deterministic factors including multiple scattering that, along with electronic noise and other background noise sources, is assumed to be relatively weak. Thus, the standard model is based on a ‘weak field condition’ and the inverse scatte…

Inverse ScatteringMultiple ScatteringElectromagnetismSide-band SignalsAutocorrelationDigital Signal ProcessingSignal Processing
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Lecture Notes in Real-Time Intelligent Systems

2018

Intelligent computing refers greatly to artificial intelligence with the aim at making computer to act as a human. This newly developed area of real-time intelligent computing integrates the aspect of dynamic environments with the human intelligence. This book presents a comprehensive practical and easy to read account which describes current state-of-the art in designing and implementing real-time intelligent computing to robotics, alert systems, IoT, remote access control, multi-agent systems, networking, mobile smart systems, crowd sourcing, broadband systems, cloud computing, streaming data and many other applications areas. The solutions discussed in this book will encourage the resear…

IoTMultimediaComputer scienceRemote Access ControlIntelligent decision support systemStreaming DataCloud Computingcomputer.software_genreIntelligent SystemsMulti-agent SystemsNetworkingMobile Smart SystemsCrowdsourcingcomputerBroadband Systems
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Wavelet-like bases for thin-wire integral equations in electromagnetics

2005

AbstractIn this paper, wavelets are used in solving, by the method of moments, a modified version of the thin-wire electric field integral equation, in frequency domain. The time domain electromagnetic quantities, are obtained by using the inverse discrete fast Fourier transform. The retarded scalar electric and vector magnetic potentials are employed in order to obtain the integral formulation. The discretized model generated by applying the direct method of moments via point-matching procedure, results in a linear system with a dense matrix which have to be solved for each frequency of the Fourier spectrum of the time domain impressed source. Therefore, orthogonal wavelet-like basis trans…

Iterative methodThin-wire integral equations in electromagneticsApplied MathematicsFast Fourier transformMathematical analysisMethod of momentsWavelet transformPreconditioningElectric-field integral equationIntegral equationComputational MathematicsSettore MAT/08 - Analisi NumericaSettore ING-IND/31 - ElettrotecnicaWaveletM-band wavelet transformFrequency domainMethod of momentThin-wire integral equations in electromagneticMathematicsSparse matrix
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Tunneling junctions of the heavy-fermion superconductor UPd2Al3

1998

Abstract Tunneling spectroscopy on planar Giaever-type junctions is a powerful tool for the investigation of the superconducting state of metals. Since it is possible to prepare high-quality epitaxial thin films of the heavy-fermion compound UPd 2 Al 3 , this method can be used to examine the energy gap of this presumably unconventional superconductor. We prepared cross-junctions consisting of a UPd 2 Al 3 base electrode and a metal counter electrode (Au, Al or Ag). These small area contacts without artificial barriers have only low junction resistances and suffer from irreproducibility. On the other hand, on some of those junctions we observed BCS-like tunneling conductivity. In order to i…

Josephson effectAuxiliary electrodeTunnel effectMaterials scienceCondensed matter physicsBand gapSupercurrentHeavy fermion superconductorCondensed Matter PhysicsUnconventional superconductorQuantum tunnellingElectronic Optical and Magnetic MaterialsJournal of Magnetism and Magnetic Materials
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