Search results for "Uncertainty"

showing 10 items of 1010 documents

Excessive vs. insufficient entry in spatial models: When product design and market size matter

2020

Abstract Under spatial product differentiation and product design, we identify conditions for either excessive or insufficient firm entry. We extend previous settings, based on the Salop circular model, to analyze the combined role of positive demand elasticity and endogenous targeted product design. First, we show that, given the number of firms, the equilibrium level of targeted design is either excessive or insufficient, depending on demand elasticity. Second, with free entry, we show that the degree of targeted product design increases with the relative market size and decreases with demand elasticity. Based on these effects, the interplay between demand elasticity and market size yield…

Price elasticity of demandSociology and Political ScienceProduct designmedia_common.quotation_subject05 social sciencesMarket sizeGeneral Social SciencesProduct differentiationEquilibrium level0502 economics and businessEconometricsmedicineEconomics050206 economic theoryStatistics Probability and UncertaintyFree entrymedicine.symptomElasticity (economics)WelfareGeneral Psychology050205 econometrics media_commonMathematical Social Sciences
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An evaluation of the environmental factors for supply chain strategy decisions using grey systems and composite indicators

2020

[EN] The purpose of this work is to assess the importance of environmental factors in a supply chain with four partners as a preliminary step to select the competitive strategies and objectives. To achieve this purpose, a real case study was carried out in a footwear supply chain, in which two approaches were used: the grey system theory and uncertainty analysis tools for composite indicators. In order to validate both approaches, a seven-phase research methodology was developed and applied to our case study. In addition, the priorization of environmental factors was calculated individually for each partner. The results allow managers to establish the competitive strategy that best suits th…

PrioritizationComputer scienceResearch methodologySupply chainESTADISTICA E INVESTIGACION OPERATIVAEnvironmental uncertainty02 engineering and technology01 natural sciencesCompetitive advantageMatemàtica aplicada0203 mechanical engineeringOrder (exchange)0103 physical sciencesEnvironmental factors010301 acousticsUncertainty analysisApplied MathematicsComposite indicatorSupply chain020303 mechanical engineering & transportsWork (electrical)Risk analysis (engineering)Economia matemàticaModeling and SimulationGrey system theoryORGANIZACION DE EMPRESASComposite indicator
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Stochastic model predicts evolving preferences in the Iowa gambling task

2014

Learning under uncertainty is a common task that people face in their daily life. This process relies on the cognitive ability to adjust behavior to environmental demands. Although the biological underpinnings of those cognitive processes have been extensively studied, there has been little work in formal models seeking to capture the fundamental dynamic of learning under uncertainty. In the present work, we aimed to understand the basic cognitive mechanisms of outcome processing involved in decisions under uncertainty and to evaluate the relevance of previous experiences in enhancing learning processes within such uncertain context. We propose a formal model that emulates the behavior of p…

Process (engineering)Decision MakingIowa Gambling TaskNeuroscience (miscellaneous)Context (language use)Machine learningcomputer.software_genreOutcome (game theory)lcsh:RC321-571Task (project management)Cellular and Molecular NeuroscienceLearningstochasticRelevance (information retrieval)Original Research Articleuncertaintylcsh:Neurosciences. Biological psychiatry. Neuropsychiatrybusiness.industrydynamic landscapeCognitionconceptual networkIowa gambling taskCategorizationCategorizationArtificial intelligencePsychologybusinesscomputerNeuroscienceCognitive psychologyFrontiers in Computational Neuroscience
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Examination of the least-squares method applied to the evaluation of physicochemical parameters with linearized equations

1989

Physicochemical parameters are frequently evaluated by the least-squares method after linearization of the equation which relates the experimental variables to the parameters of interest. When a given set of data is treated to evaluate (n+1) parameters. (n+2) nominally identical linearized equations are possible; each of these leads to different sets of values of the parameters which are also affected by different variances. These differences are also observed when statistical weights are used. Two methods for establishing which one of the (n+2) equations is best for fitting the data, i.e., simulation of experiments and propagation of errors, are discussed, compared and applied to a potenti…

Propagation of uncertaintyChemistryPotentiometric titrationValue (computer science)BiochemistryAnalytical ChemistrySet (abstract data type)Investigation methodsLinearizationStatisticsEnvironmental ChemistryApplied mathematicsSpectroscopyEquilibrium constantAnalytica Chimica Acta
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Approaches to evaluate the virtual instrumentation measurement uncertainties

2002

This paper deals with the metrological characterization of virtual instruments. After a brief description of the features, the components and the working principle of the virtual instruments and the various uncertainty sources are analyzed. Then, two methods to evaluate the uncertainty of the measurement results are presented: a numerical method simulating the physical process of the A/D conversion, and an approximated theoretical method applying the "uncertainty propagation law" of the "guide to the expression of uncertainty in measurement." With both methods, the combined standard uncertainty of the measurement result is obtained, starting from the standard uncertainty generated by each s…

Propagation of uncertaintyComputer simulationVirtual instrumentationEstimation theoryComputer scienceNumerical analysisProcess (computing)Control engineeringMetrologyMeasurement uncertaintySensitivity analysisElectrical and Electronic EngineeringInstrumentationUncertainty analysisIMTC 2001. Proceedings of the 18th IEEE Instrumentation and Measurement Technology Conference. Rediscovering Measurement in the Age of Informatics (Cat. No.01CH 37188)
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Measurement uncertainty estimation of a virtual instrument

2002

The law of uncertainty propagation is applied to a PC-based virtual instrument. According to the "guide to the expression of uncertainty in measurement", the measuring model and the various sources of uncertainty have been taken into account. The expressions of the combined output uncertainty in various basic digital signal processing blocks, are obtained starting from each input sample absolute accuracy, without taking into account the parameters which regard the overall behavior of an acquisition board, such as the effective number of bits. In order to verify this procedure, the results obtained by means of the theoretical analysis, are compared with the ones obtained from numerical simul…

Propagation of uncertaintyData acquisitionVirtual instrumentationComputer simulationbusiness.industryComputer scienceMeasurement uncertaintySensitivity analysisbusinessDigital signal processingUncertainty analysisSimulationProceedings of the 17th IEEE Instrumentation and Measurement Technology Conference [Cat. No. 00CH37066]
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Assessment of virtual instruments measurement uncertainty

2001

Abstract In this paper, two methods to evaluate the measurement uncertainty of a virtual instrument are presented: a numerical method simulating the physical process of the A/D conversion, and an approximated theoretical method applying the “uncertainty propagation law” of the “guide to the expression of uncertainty in measurement”. After a brief description of the features, the constitution and the working principle of the virtual instruments, the various uncertainty sources, are analyzed. With both methods, the combined standard uncertainty of the measurement result is obtained, starting from the standard uncertainty generated by each single source and without taking into account the para…

Propagation of uncertaintyEffective number of bitsComputer simulationHardware and ArchitectureComputer scienceNumerical analysisFlickerMeasurement uncertaintySensitivity analysisLawSoftwareSimulationUncertainty analysisComputer Standards & Interfaces
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Propagation of errors due to incorrect positions of sources and detectors in wave-field tomography

2004

Tomographic data processed by 2D inversion programs can produce fairly large distortions due to incorrect source and/or detector positions. This problem is very serious in high-frequency electromagnetic tomography (GPR), due to the dimensions of the transmitter and receiver antennae. The errors can even be larger when coupled antennae are used (receiver and transmitter inside the same box) whose positions are not clearly known. Similar errors can be involved in seismic tomography, for instance when the mechanical connection between transducers and sample is defective. In this paper the problem has been studied using synthetic data which were calculated for different acquisition geometries. …

Propagation of uncertaintyGeophysicsSeismic tomographyAcousticsIsotropyTransmitterDetectorTomography.Inverse problemGeologySynthetic dataNear Surface Geophysics
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Data Treatment and Error Analysis in Kinetics

2000

Methods of data treatment in kinetics are reviewed from a practical viewpoint. The equations to describe the kinetics of chemical reactions and the methodology to obtain the models are presented. Moreover, the integration methods that are needed for the simulation of complex reactions are explained, from the simple first-order reaction to the complex general mechanism. However, it is essential to know the main sources of error in data treatment in order to reduce their effects on the results. Stress is put on the analysis of the errors due to the simplification of complex models. The different factors that influence the kinetics of the reaction are reviewed. How to take advantage of the kin…

Propagation of uncertaintyMultivariate statisticsError analysisSimple (abstract algebra)Computer scienceKineticsStatisticsUnivariateExperimental dataApplied mathematicsData treatment
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Near-Real-Time Estimation of Water Vapor Column From MSG-SEVIRI Thermal Infrared Bands: Implications for Land Surface Temperature Retrieval

2015

The Meteosat Second Generation-Spinning Enhanced Visible and Infrared Imager (MSG-SEVIRI) instrument provides observations of half the globe every 15 min, at low spatial resolution. These data are an invaluable tool to observe daily to yearly cycle of land surface temperature (LST), as well as for various early warning systems. However, advanced algorithms for LST estimation requires a previous estimation of the water vapor (WV) column above the observed pixel, for which no instantaneous retrieval methods are yet available, and therefore hinders their implementation in a near-real-time processing chain for MSG-SEVIRI data. This work analyzes three different formulations for such WV retrieva…

Propagation of uncertaintyPixelMeteorologyBrightness temperatureGeneral Earth and Planetary SciencesEnvironmental scienceAlgorithm designAtmospheric modelElectrical and Electronic EngineeringImage resolutionWater vaporRemote sensingData modelingIEEE Transactions on Geoscience and Remote Sensing
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