Search results for " approximation"

showing 10 items of 575 documents

Compression Methods for Microclimate Data Based on Linear Approximation of Sensor Data

2019

Edge computing is currently one of the main research topics in the field of Internet of Things. Edge computing requires lightweight and computationally simple algorithms for sensor data analytics. Sensing edge devices are often battery powered and have a wireless connection. In designing edge devices the energy efficiency needs to be taken into account. Pre-processing the data locally in the edge device reduces the amount of data and thus decreases the energy consumption of wireless data transmission. Sensor data compression algorithms presented in this paper are mainly based on data linearity. Microclimate data is near linear in short time window and thus simple linear approximation based …

Edge deviceenergiatehokkuusWireless networkComputer sciencesensoriverkot020206 networking & telecommunications02 engineering and technologyEnergy consumptioninternet of thingscompression algorithmedge computingalgoritmit0202 electrical engineering electronic engineering information engineeringElectronic engineeringesineiden internet020201 artificial intelligence & image processingLinear approximationEdge computingEfficient energy useData compression
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Scattering in Strong Magnetic Fields

1985

Publisher Summary This chapter discusses collision processes in the presence of a strong magnetic field. The chapter deals with the potential scattering in a magnetic field arising in connection with the problem of Bremsstrahlung (“free–free transitions”) of an electron in the field. An expression for the photoionization cross section of a one-electron (hydrogenic) system in a magnetic field is also presented. A different approach is required to the problem of ion–atom collisions in a magnetic field because the collision energy E is generally much greater than hωc. Within the two-state model, not only did the magnetic field modify the bound-state wave functions, but, more importantly, it in…

Elastic scatteringMagnetizationField (physics)ChemistryQuantum electrodynamicsAtomic physicsOptical fieldBorn approximationElectromagnetic radiationExcitationMagnetic field
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Search for Effects Beyond the Born Approximation in Polarization Transfer Observables ine→pElastic Scattering

2011

Intensive theoretical and experimental efforts over the past decade have aimed at explaining the discrepancy between data for the proton electric to magnetic form factor ratio, $$G_{E}/G_{M}$$, obtained separately from cross section and polarization transfer measurements. One possible explanation for this difference is a two-photon-exchange (TPEX) contribution. In an effort to search for effects beyond the one-photon-exchange or Born approximation, we report measurements of polarization transfer observables in the elastic $$H(\vec{e},e'\vec{p})$$ reaction for three different beam energies at a fixed squared momentum transfer $Q^2 = 2.5$ GeV$^2$, spanning a wide range of the virtual photon p…

Elastic scatteringPhysicsParticle physics010308 nuclear & particles physicsHadronMomentum transferGeneral Physics and AstronomyElementary particle01 natural sciencesBaryon0103 physical sciencesMagnetic form factorHigh Energy Physics::ExperimentBorn approximation010306 general physicsNucleonPhysical Review Letters
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Improved fast Gauss transform for meshfree electromagnetic transients simulations

2019

Abstract In this paper improved fast summations are introduced to enhance a meshfree solver for the evolution of the electromagnetic fields over time. The original method discretizes the time-domain Maxwell’s curl equations via Smoothed Particle Hydrodynamics requiring many summations on the first derivatives of the kernel function and field vectors at each time step. The improved fast Gauss transform is properly adopted picking up the computational cost and the memory requirement at an acceptable level preserving the accuracy of the computation. Numerical simulations in two-dimensional domains are discussed giving evidence of improvements in the computation compared to the standard formula…

Electromagnetic fieldCurl (mathematics)Numerical approximation Improve fast Gauss transform Smoothed Particle Hydrodynamics Maxwell’s equationsApplied MathematicsComputation010102 general mathematicsGauss transformTime stepSolver01 natural sciences010101 applied mathematicsSmoothed-particle hydrodynamicsSettore MAT/08 - Analisi NumericaSettore ING-IND/31 - ElettrotecnicaApplied mathematics0101 mathematicsMathematics
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Surface Lattice Resonances in Self-Assembled Arrays of Monodisperse Ag Cuboctahedra

2019

Plasmonic metal nanoparticles arranged in periodic arrays can generate surface lattice plasmon resonances (SLRs) with high Q-factors. These collective resonances are interesting because the associated electromagnetic field is delocalized throughout the plane of the array, enabling applications such as biosensing and nanolasing. In most cases such periodic nanostructures are created via top-down nanofabrication processes. Here we describe a capillary-force-assisted particle assembly method (CAPA) to assemble monodisperse single-crystal colloidal Ag cuboctahedra into nearly defect-free >1 cm2 hexagonal lattices. These arrays are large enough to be measured with conventional ultraviolet-visibl…

Electromagnetic fieldMaterials scienceGeneral EngineeringPhysics::OpticsGeneral Physics and AstronomyNanoparticle02 engineering and technologyDiscrete dipole approximation010402 general chemistry021001 nanoscience & nanotechnology01 natural sciencesMolecular physics0104 chemical sciencesDelocalized electronNanolithographyLattice (order)General Materials Science0210 nano-technologySpectroscopyPlasmonACS Nano
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High-accuracy extrapolated ab initio thermochemistry. III. Additional improvements and overview

2008

Effects of increased basis-set size as well as a correlated treatment of the diagonal Born-Oppenheimer approximation are studied within the context of the high-accuracy extrapolated ab initio thermochemistry (HEAT) theoretical model chemistry. It is found that the addition of these ostensible improvements does little to increase the overall accuracy of HEAT for the determination of molecular atomization energies. Fortuitous cancellation of high-level effects is shown to give the overall HEAT strategy an accuracy that is, in fact, higher than most of its individual components. In addition, the issue of core-valence electron correlation separation is explored; it is found that approximate add…

Electronic correlationChemistryBorn–Oppenheimer approximationAb initioGeneral Physics and AstronomyThermodynamicsContext (language use)symbols.namesakeChemical thermodynamicsComputational chemistryAb initio quantum chemistry methodsThermochemistrysymbolsPhysical and Theoretical ChemistryThe Journal of Chemical Physics
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First-principles calculations for SrTiO3() surface structure

2002

As a continuation of our recent abinitio calculations of SrTiO 3(1 0 0) surface relaxation for the two different terminations (SrO and TiO2) [Phys. Rev. B 64 (2001) 23417], we analyze here their electronic structures (band structure, density of states, and the electronic density redistribution with emphasis on the covalency effects). We compare results of abinitio Hartree–Fock method with electron correlation corrections and density functional theory with different exchange-correlation functionals, including hybrid (B3PW, B3LYP) exchange techniques. Our results are also compared with previous abinitio plane-wave local density approximation calculations and experiments when availab le. Consi…

Electronic correlationChemistrySurfaces and InterfacesElectronic structureCondensed Matter PhysicsMolecular physicsSurfaces Coatings and FilmsAb initio quantum chemistry methodsComputational chemistryMaterials ChemistryDensity of statesDensity functional theoryLocal-density approximationElectronic band structureElectronic densitySurface Science
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Approximation of Pore Space with Ellipsoids: A Comparison of a Geometrical Method with a Statistical one

2018

We work with tomographic images of pore space in soil. The images have large dimensions and so in order to speed-up biological simulations (as drainage or diffusion process in soil), we want to describe the pore space with a number of geometrical primitives significantly smaller than the number of voxels in pore space. In this paper, we use the curve skeleton of a volume to segment it into some regions. We describe the method to compute the curve skeleton and to segment it with a simple segment approximation. We approximate each obtained region with an ellipsoid. The set of final ellipsoids represents the geometry of pore space and will be used in future simulations. We compare this method …

EllipsoidsGeometry02 engineering and technologyImage segmentation010502 geochemistry & geophysicscomputer.software_genreCurve skeleton01 natural sciencesEllipsoidPhysics::GeophysicsSet (abstract data type)SegmentationDiffusion processVoxelSimple (abstract algebra)0202 electrical engineering electronic engineering information engineering020201 artificial intelligence & image processingSegmentationCluster analysisPore space approximationcomputer0105 earth and related environmental sciencesMathematics2018 14th International Conference on Signal-Image Technology & Internet-Based Systems (SITIS)
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Optimization methods for complex sheet metal stamping computer aided engineering

2010

Nowadays, sheet metal stamping processes design is not a trivial task due to the complex issues to be taken into account (complex shapes forming, conflicting design goals and so on). Therefore, proper design methodologies to reduce times and costs have to be developed mostly based on computer aided procedures. In this paper, a computer aided approach is proposed with the aim to offer a methodology able to solve very complex sheet metal stamping processes, in particular a progressive design approach based on the integration between numerical simulations and optimization methodologies is presented. In particular, Response Surface Method, Moving Least Squares approximation and Pareto optimal s…

EngineeringMathematical optimizationControl and Optimizationbusiness.industrymedia_common.quotation_subjectRestraining forceSheet stampingStampingComputer Graphics and Computer-Aided DesignIndustrial engineeringComputer Science ApplicationsSet (abstract data type)Response surface methodologyMoving least squares approximationControl and Systems EngineeringComputer-aidedQuality (business)Moving least squaresComputer-aided engineeringbusinessEngineering design processDesign methodsSettore ING-IND/16 - Tecnologie E Sistemi Di LavorazioneSoftwaremedia_commonStructural and Multidisciplinary Optimization
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Design of complex sheet metal forming processes: a new computer aided progressive approach

2010

The growing interest in sheet metal stamping processes, particularly in automotive industry, led to three main issues in this field: request of very complex shapes; growing interest in springback control; solution of multi-objective problems. This makes the design of the sheet metal stamping processes very difficult, since the number of both design variables and design objectives are progressively increased; therefore, proper design methodologies to reduce times and costs are highly required. In this paper, an innovative design approach able to manage and optimize complex stamping operations is proposed. In particular, a progressive design approach based on the integration between numerical…

Engineeringbusiness.industryAutomotive industryForming processesSheet metal stampingComputational intelligenceStampingManufacturing engineeringMoving least square approximationDesign objectivevisual_artComputer-aidedvisual_art.visual_art_mediumMulti-objective optimisationGeneral Materials ScienceResponse surface methodologybusinessSheet metalSettore ING-IND/16 - Tecnologie E Sistemi Di Lavorazione
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