Search results for " processing"

showing 10 items of 7549 documents

Performance of a new real time digital pulse processing system for X-ray and gamma ray semiconductor detectors

2014

New generation spectroscopy systems have advanced towards digital pulse processing (DPP) approaches. DPP systems, based on direct digitizing and processing of detector signals, have recently been favoured over analog pulse processing electronics, ensuring better performance. In this work, we present the performance of a new real time DPP system for X-ray and gamma ray semiconductor detectors. The system is based on a commercial digitizer equipped with a custom DPP firmware, developed by our group, for on-line pulse shape and height analysis. X-ray and gamma ray spectra measurements with cadmium telluride (CdTe) and germanium (Ge) detectors, coupled to resistive feedback preamplifiers, will …

Digital Pulse Processing Semiconductor detectors X-ray and gamma ray spectroscopySettore FIS/01 - Fisica SperimentaleSettore FIS/07 - Fisica Applicata(Beni Culturali Ambientali Biol.e Medicin)
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Capturing and Indexing Rehearsals: The Design and Usage of a Digital Archive of Performing Arts

2015

International audience; Preserving the cultural heritage of the performing arts raises difficult and sensitive issues, as each performance is unique by nature and the juxtaposition between the performers and the audience cannot be easily recorded. In this paper, we report on an experimental research project to preserve another aspect of the performing arts—the history of their rehearsals. We have specifically designed non-intrusive video recording and on-site documentation techniques to make this process transparent to the creative crew, and have developed a complete workflow to publish the recorded video data and their corresponding meta-data online as Open Data using state-of-the-art audi…

Digital archivingComputer science[ INFO.INFO-WB ] Computer Science [cs]/Web02 engineering and technology[ INFO.INFO-CV ] Computer Science [cs]/Computer Vision and Pattern Recognition [cs.CV]computer.software_genre[SHS.MUSEO]Humanities and Social Sciences/Cultural heritage and museologyvideo processingWorld Wide WebDocumentationopera11. Sustainability0202 electrical engineering electronic engineering information engineeringAudio signal processing[ INFO.INFO-MM ] Computer Science [cs]/Multimedia [cs.MM]HypervideoMultimediahypervideo[INFO.INFO-WB]Computer Science [cs]/Web[INFO.INFO-MM]Computer Science [cs]/Multimedia [cs.MM][INFO.INFO-CV]Computer Science [cs]/Computer Vision and Pattern Recognition [cs.CV]020207 software engineering[ MATH.MATH-NA ] Mathematics [math]/Numerical Analysis [math.NA]Video processingLinked dataperforming artsaudio processingCultural heritageWorkflowtheaterLinked Data[ SHS.MUSEO ] Humanities and Social Sciences/Cultural heritage and museology020201 artificial intelligence & image processingPerforming artscomputer[MATH.MATH-NA]Mathematics [math]/Numerical Analysis [math.NA]
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Well-posed nonlinear problems in integrated circuits modeling

1991

In this paper we study the problem (E) + (BC) + (IC) (see below) which represents a model for integrated circuits. We assume that the distributed parametersr(x) andc(x) are nonconstant, dielectric leakages depend on thex-coordinate as well as the voltage level, while the interconnecting multiport is nonlinear and possibly multivalued.

Digital electronicsWell-posed problembusiness.industryNon lineariteApplied MathematicsElectrical engineeringNon linear modelDielectricIntegrated circuitlaw.inventionNonlinear systemlawSignal ProcessingElectronic engineeringbusinessMathematicsVoltageCircuits Systems and Signal Processing
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Object tracking in medical imaging using a 2D active mesh system

2003

International audience; Abstract: This article proposes a technique for tracking moving organs in medical imaging. It can be split into two stages. We first initialize a 2D-triangular mesh on the first image of the sequence. We distinguish different objects of interest by grouping together the triangles that make them up. Afterwards, we deform this mesh on the successive images in order to track each identified object. The tracking stage uses optical flow by adding a node relaxation step to avoid mesh deteriorations. The mesh deformations analysis provides access to motion information along the sequence. This technique is applied to a cine-MRI sequences of the heart and allows the analysis …

Digital image correlation[ INFO.INFO-IM ] Computer Science [cs]/Medical Imagingbusiness.industryComputer scienceOptical flow[INFO.INFO-IM] Computer Science [cs]/Medical ImagingComputingMethodologies_IMAGEPROCESSINGANDCOMPUTERVISION02 engineering and technologyTracking (particle physics)Object detection030218 nuclear medicine & medical imaging03 medical and health sciences0302 clinical medicineMesh generationVideo tracking0202 electrical engineering electronic engineering information engineeringMedical imaging[INFO.INFO-IM]Computer Science [cs]/Medical Imaging020201 artificial intelligence & image processingComputer visionNoise (video)Artificial intelligencebusinessComputingMethodologies_COMPUTERGRAPHICS
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An Enhanced Detector of Blurred and Noisy Edges

2007

Detecting edges in digital images is a tricky operation in image processing since images may contain areas with different degrees of noise, blurring and sharpness. Such operation represents an important step of the whole process of similarity shape analysis and retrieval.

Digital imageComputer sciencebusiness.industryDetectorComputingMethodologies_IMAGEPROCESSINGANDCOMPUTERVISIONSmoothing filterComputer visionImage processingArtificial intelligencebusinessShape analysis (digital geometry)
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RADIUS - rapid particle analysis of digital images by ultra-high-resolution scanning of thin sections

2005

RADIUS is a newly developed particle-size measurement technique, based on evaluation of digital images of thin sections. Analyses are performed with sub-millimetre sample resolution and are thus designed to work on a single lamina of laminated sediments. The method covers grain sizes from medium silt to coarse sand. The application contains pattern-recognition modules that allow the detection of typical particle distributions of loess, organic detritus, turbidites and tephra layers. Cutting and hiding effects of particles on thin sections are corrected by empirical correction matrices. The calculated analysis results are compared with manually counted and measured samples to calibrate the a…

Digital imageThin sectionStratigraphyLoessDigital image processingParticleMineralogyGeologyRadiusParticle sizeSiltGeologySedimentology
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Efficiency of a digital particle image velocimetry (DPIV) method for monitoring the surface velocity of hyper-concentrated flows

2018

Digital particle image velocimetry records high resolution images and allows the identification of the position of points in different time instants. This paper explores the efficiency of the digital image-technique for remote monitoring of surface velocity and discharge measurement in hyper-concentrated flow by the way of laboratory experiment. One of the challenges in the application of the image-technique is the evaluation of the error in estimating surface velocity. The error quantification is complex because it depends on many factors characterizing either the experimental conditions or/and the processing algorithm. In the present work, attention is devoted to the estimation error due …

Digital particle image techniqueScale (ratio)Acoustics0208 environmental biotechnologyFlow (psychology)Surface velocityImage processing02 engineering and technologyInflow01 natural sciences010305 fluids & plasmasExperimentPosition (vector)Digital particle image technique surface velocity remote monitoring experiments0103 physical sciencesMATLABcomputer.programming_languagelcsh:QE1-996.5experiments020801 environmental engineeringlcsh:GeologyRemote monitoringParticle image velocimetryFlow velocityGeneral Earth and Planetary Sciencescomputer
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Digital Techniques for High-Rate High-Resolution Radiation Measurements

2014

Digital pulse processing (DPP) techniques are increasingly used in the development of modern spectroscopic systems. DPP systems, based on direct digitizing and processing of detector signals (preamplifier output signals), ensure higher flexibility, stability, lower dead time, higher throughput and better energy resolution than traditional pulse processing systems. In this work, we present our progress in the development of DPP systems for high-rate high-resolution radiation measurements. An innovative digital system, able to perform multi-parameter analysis (input counting rate, pulse height, pulse shape, event arrival time, etc.) even at high photon counting rates is presented. Experimenta…

Digital pulse processingSettore FIS/01 - Fisica SperimentaleSettore FIS/07 - Fisica Applicata(Beni Culturali Ambientali Biol.e Medicin)
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Digital filtering and analysis for a semiconductor X-ray detector data acquisition

2007

Abstract Pile-up distortion is a major drawback in X-ray spectroscopy at high count rate. Pulse width narrowing with shaping techniques can lead to the reduction of the pile-up distortion, but a low shaping time reduces the noise filtration and leads to a poor energy resolution. Thus, only a best compromise solution between the pile-up and the noise requirements is achievable. The hardware manipulation needed to adjust the parameters of the traditional electronic shaping amplifiers makes it uneasy to tests various settings in different conditions. Digital techniques can help to overcome such difficulties. A digital signal processing and analysis system for X-ray spectroscopy is described in…

Digital shapingPhysicsSemiconductor detectorNuclear and High Energy PhysicsAnalogue electronicsNoise (signal processing)Preamplifierbusiness.industrySignalData acquisitionDistortionX-ray spectroscopyElectronic engineeringbusinessInstrumentationEnergy (signal processing)Digital signal processingPile-upNuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment
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Implementation of pattern recognition algorithm based on RBF neural network

2002

In this paper, we present implementations of a pattern recognition algorithm which uses a RBF (Radial Basis Function) neural network. Our aim is to elaborate a quite efficient system which realizes real time faces tracking and identity verification in natural video sequences. Hardware implementations have been realized on an embedded system developed by our laboratory. This system is based on a DSP (Digital Signal Processor) TMS320C6x. The optimization of implementations allow us to obtain a processing speed of 4.8 images (240x320 pixels) per second with a correct rate of 95% of faces tracking and identity verification.

Digital signal processorArtificial neural networkPixelComputer sciencebusiness.industryPattern recognitionPattern recognition (psychology)Identity (object-oriented programming)Radial basis functionComputer visionArtificial intelligencebusinessAlgorithmImplementationDigital signal processingSPIE Proceedings
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