Search results for "input"

showing 10 items of 213 documents

Identification of Synaptic Integration Mode in CA3 Pyramidal Neuron Model

2019

International audience; A morphologically realistic and anisotropic model of CA3 pyramidal neuron was developed to determine the synaptic integration modes the neuron is able to perform. Linearity and nonlinearity were identified in different synaptic locations with varying active mechanisms such as the presence of ionic channels in the dendritic arbor and the types of receptors in the synapse. Quantification of synaptic integration was performed using paired-pulse stimulation protocol and subthreshold input/output (sI/O) transformation. Results show that the mode of synaptic integration is location-dependent while the linearity or nonlinearity in the integration is mainly influenced by the…

MorphologyShaftsionic channelsResistancereceptorstwo-layer networksynaptic integration modesimple CA3 pyramidal neuronSynapselinear integrationdendritic arbormedicinesynaptic locationsCA3 pyramidal neuron model[SDV.IB] Life Sciences [q-bio]/BioengineeringNeuronsbiomembrane transportcomputational powerPhysicssubthreshold input-output transformationSynaptic integrationSubthreshold conductionmorphologically realistic modelMode (statistics)Linearitypaired-pulse stimulation protocolactive channelsanisotropic modelNonlinear systemmedicine.anatomical_structurenervous systemsublinear integrationCa3 pyramidal neuronbioelectric phenomena[SDV.IB]Life Sciences [q-bio]/BioengineeringAction potentialsNeuronneurophysiologysupralinear integrationNeuroscienceNeckProtocols2019 9th International IEEE/EMBS Conference on Neural Engineering (NER)
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An integrated architecture for speech-input multi-target machine translation

2007

The aim of this work is to show the ability of finite-state transducers to simultaneously translate speech into multiple languages. Our proposal deals with an extension of stochastic finite-state transducers that can produce more than one output at the same time. These kind of devices offer great versatility for the integration with other finite-state devices such as acoustic models in order to produce a speech translation system. This proposal has been evaluated in a practical situation, and its results have been compared with those obtained using a standard mono-target speech transducer.

Multi targetIntegrated architectureMachine translationComputer Science::SoundComputer scienceSpeech translationSpeech recognitionSpeech inputComputer Science::Computation and Language (Computational Linguistics and Natural Language and Speech Processing)Extension (predicate logic)computer.software_genrecomputerHuman Language Technologies 2007: The Conference of the North American Chapter of the Association for Computational Linguistics; Companion Volume, Short Papers on XX - NAACL '07
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Speech-input multi-target machine translation

2007

In order to simultaneously translate speech into multiple languages an extension of stochastic finite-state transducers is proposed. In this approach the speech translation model consists of a single network where acoustic models (in the input) and the multilingual model (in the output) are embedded. The multi-target model has been evaluated in a practical situation, and the results have been compared with those obtained using several mono-target models. Experimental results show that the multi-target one requires less amount of memory. In addition, a single decoding is enough to get the speech translated into multiple languages.

Multi targetMachine translationComputer Science::SoundComputer scienceSpeech translationSpeech recognitionSpeech inputComputer Science::Computation and Language (Computational Linguistics and Natural Language and Speech Processing)Extension (predicate logic)computer.software_genrecomputerDecoding methodsProceedings of the Second Workshop on Statistical Machine Translation - StatMT '07
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Nitrogen input effectiveness on carbon sequestration in rainfed cropping system

2016

The combined effect of total N and C/N ratio had a large influence on the decomposition rate and consequently on potential soil organic carbon sequestration. The aim of the work was to evaluate Carbon sequestration potentiality under three mineral N fertilization levels in interaction with two cropping systems characterized by addition of N input due to leguminous species in the rotation. The study was carried out in the semiarid Mediterranean environment in a 18years long-term experiment. Is well know that in the semiarid environment the excess of N fertilization reduces biomass yield and the consequent C input. On the contrary, both N and C input determine high difference in C/N input rat…

Nitrogen input carbon sequestration cropping systemSettore AGR/02 - Agronomia E Coltivazioni Erbacee
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Langevin Approach to Understand the Noise of Microwave Transistors

2004

A Langevin approach to understand the noise of microwave devices is presented. The device is represented by its equivalent circuit with the internal noise sources included as stochastic processes. From the circuit network analysis, a stochastic integral equation for the output voltage is derived and from its power spectrum the noise figure as a function of the operating frequency is obtained. The theoretical results have been compared with experimental data obtained by the characterization of an HEMT transistor series (NE20283A, by NEC) from 6 to 18 GHz at a low noise bias point. The reported procedure exhibits good accuracy, within the typical uncertainty range of any experimental determin…

Noise temperatureCondensed Matter - Materials ScienceStatistical Mechanics (cond-mat.stat-mech)General MathematicsGeneral Physics and AstronomyMaterials Science (cond-mat.mtrl-sci)FOS: Physical sciencesY-factorNoise figureNoise (electronics)symbols.namesakeNoise generatorGaussian noiseElectronic engineeringsymbolsEconometricsEffective input noise temperatureFlicker noiseCondensed Matter - Statistical MechanicsMathematics
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Three Different Methods for Determining the Microwave Noise Parameters of HEMT's at Decreasing Temperatures

1998

The noise characteristics of any transistor are usually represented by means of four parameters which are frequency-, bias- and temperature-dependent, similarly to the scattering parameters. The noise parameters are determined by a standard indirect procedure based on multiple noise figure measurements and appropriate data processing techniques requiring a complex instrumentation set-up and skilled operators. As an alterative way, we have shown that the noise parameters of packaged HEAMT's can be computed with very good accuracy from the analysis of a noisy circuit model derived from the scattering parameters plus a single noise figure measurement. A third way exists for the determination o…

Noise temperatureEngineeringNoiseNoise generatorNoise measurementbusiness.industryNoise spectral densityAcousticsElectronic engineeringEffective input noise temperaturebusinessNoise figureNoise floor28th European Microwave Conference, 1998
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ACCURATE MEASUREMENTS OF OPTIMUM NOISE PARAMETERS OF MICROWAVE TRANSISTORS

1986

A method for measuring losses of the tuner network used as noise source admittance transformer in transistor noise parameter test-set is presented. Since the method is based on noise figure measurements, tuner losses can be determined on-line while performing measurements for determining transistor noise parameters. As experimental verifications the optimum noise parameters of a GaAs FET in the 4 - 12 GHz frequency range, measured through a computer-assisted measuring system, are reported.

Noise temperatureEngineeringNoise-figure meterbusiness.industryAcousticsY-factorCondensed Matter::Mesoscopic Systems and Quantum Hall EffectNoise figureLow-noise amplifierNoise generatorHardware_INTEGRATEDCIRCUITSElectronic engineeringEffective input noise temperatureFlicker noisebusiness
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Noise parameters of HEMTs: analysis of their properties from a circuit model approach

1996

Noise parameters of high electron mobility transistors (HEMT) at microwave frequencies are a subject of active research since the knowledge of their performance is of key importance for the use of these devices for designing low‐noise amplifiers. Employs a simple noise model to derive the analytical expressions for the device noise parameters F0, Γ0 and N in terms of the electrical elements associated with the basic equivalent circuit of an HEMT. Analyses such expressions to establish some fundamental relationships, as well as the expected noise performance of the device when the parasitic elements representing package effects are included.

Noise temperatureEngineeringbusiness.industryApplied MathematicsElectrical engineeringShot noiseY-factorComputer Science ApplicationsNoiseComputational Theory and MathematicsNoise generatorElectronic engineeringEquivalent circuitEffective input noise temperatureFlicker noiseElectrical and Electronic EngineeringbusinessElectricity; Mathematics; Models; Noise; TheoryCOMPEL - The international journal for computation and mathematics in electrical and electronic engineering
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On the determination of device noise and gain parameters

1979

The least-squares fitting of measured noise figures and gains versus input termination admittance is an established procedure to determine linear two-port noise and gain parameters. Unfortunately, the method is liable to the serious inconvenience of yielding often erroneous results or even results without physical meaning. Some criteria are suggested which allow the carrying out of measurements in such a manner as to safely avoid the above drawbacks.

Noise temperatureEngineeringbusiness.industryNoise spectral densityY-factorNoise floorNoiseBurst noiseNoise generatorControl theoryElectronic engineeringEffective input noise temperatureElectrical and Electronic EngineeringbusinessProceedings of the IEEE
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Stochastic response of linear and non-linear systems to α-stable Lévy white noises

2005

Abstract The stochastic response of linear and non-linear systems to external α -stable Levy white noises is investigated. In the literature, a differential equation in the characteristic function (CF) of the response has been recently derived for scalar systems only, within the theory of the so-called fractional Einstein–Smoluchowsky equations (FESEs). Herein, it is shown that the same equation may be built by rules of stochastic differential calculus, previously applied by one of the authors to systems driven by arbitrary delta-correlated processes. In this context, a straightforward formulation for multi-degree-of-freedom (MDOF) systems is also developed. Approximate CF solutions to the …

Non-Gaussian inputDifferential equationMechanical EngineeringCharacteristic equationAerospace EngineeringOcean EngineeringStatistical and Nonlinear PhysicsDifferential calculusWhite noiseCondensed Matter PhysicsMethod of mean weighted residualsNonlinear systemStochastic differential equationExact solutions in general relativityNuclear Energy and EngineeringCalculusApplied mathematicsα-stable Lévy white noiseStochastic differential calculusCivil and Structural EngineeringMathematics
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