Search results for "Data flow diagram"

showing 6 items of 16 documents

The Argo YBJ daq system and the GRID based data transfer

2008

The Argo-YBJ experiment has now reached itsfinal design configuration. The detector system consists of a fullcoverage array (about 5800 square meters) of Resistive PlateChambers (RPCs). The throughput depends on the trigger rateand threshold. The DAQ system must be able to sustain a max-imum transfer rate of the order of 15 MB/s and a high peakdata flow. Data are read out using a typical front-end acquisitionchain built around a custom bus. Specialized electronics have beendesigned and dedicated software has been written to perform thistask. Data are sent to the online farm through a switch exploitinga gigabit ethernet protocol. A solution to transfer data from theYBJ laboratory to the labo…

Nuclear and High Energy PhysicsEngineeringbusiness.industryGigabit Ethernetcomputer.software_genreGridData flow diagramData acquisitionNuclear Energy and EngineeringGrid computingNuclear electronicsData acquisition data mover GRID RPCElectrical and Electronic EngineeringbusinessThroughput (business)computerComputer hardwareData transmission
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EUDAQ $-$ A Data Acquisition Software Framework for Common Beam Telescopes

2019

EUDAQ is a generic data acquisition software developed for use in conjunction with common beam telescopes at charged particle beam lines. Providing high-precision reference tracks for performance studies of new sensors, beam telescopes are essential for the research and development towards future detectors for high-energy physics. As beam time is a highly limited resource, EUDAQ has been designed with reliability and ease-of-use in mind. It enables flexible integration of different independent devices under test via their specific data acquisition systems into a top-level framework. EUDAQ controls all components globally, handles the data flow centrally and synchronises and records the data…

Physics - Instrumentation and DetectorsDetector control systems (detector and experiment monitoring and slow-control systems architecture hardware algorithms databases)data acquisitionData management01 natural sciences7. Clean energyHigh Energy Physics - Experiment030218 nuclear medicine & medical imagingHigh Energy Physics - Experiment (hep-ex)0302 clinical medicineData acquisitionbeam [charged particle]Particle tracking detectors[PHYS.HEXP]Physics [physics]/High Energy Physics - Experiment [hep-ex]hardwareDetectors and Experimental Techniquesphysics.ins-detInstrumentationMathematical PhysicsData processingData stream miningPhysicsDetectorInstrumentation and Detectors (physics.ins-det)control systemCharged particle beamdatabases)Particle Physics - ExperimentComputer hardwareperformancearchitectureData acquisition system for beam tests [5]FOS: Physical sciencesalgorithmsprogramming03 medical and health sciencesCalorimeterscharged particle: beam0103 physical sciencesddc:530ddc:610[PHYS.PHYS.PHYS-INS-DET]Physics [physics]/Physics [physics]/Instrumentation and Detectors [physics.ins-det]hep-ex010308 nuclear & particles physicsbusiness.industryDetector control systems (detector and experiment monitoring and slow-control systemsData acquisition conceptsData flow diagramdata managementbusinessBeam (structure)
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Speeding-Up Differential Motion Detection Algorithms Using a Change-Driven Data Flow Processing Strategy

2007

A constraint of real-time implementation of differential motion detection algorithms is the large amount of data to be processed. Full image processing is usually the classical approach for these algorithms: spatial and temporal derivatives are calculated for all pixels in the image despite the fact that the majority of image pixels may not have changed from one frame to the next. By contrast, the data flow model works in a totally different way as instructions are only fired when the data needed for these instructions are available. Here we present a method to speed-up low level motion detection algorithms. This method is based on pixel change instead of full image processing and good spee…

PixelComputer sciencebusiness.industryComputingMethodologies_IMAGEPROCESSINGANDCOMPUTERVISIONImage processingMotion detectionData flow diagramMotion fieldComputer Science::Computer Vision and Pattern RecognitionMotion estimationDigital image processingComputer visionArtificial intelligencebusinessAlgorithmFeature detection (computer vision)
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Skeletons for parallel image processing: an overview of the SKiPPER project

2002

International audience; This paper is a general overview of the SKIPPER project, run at Blaise Pascal University between 1996 and 2002. The main goal of the SKIPPER project was to demonstrate the appli- cability of skeleton-based parallel programming techniques to the fast prototyping of reactive vision applications. This project has produced several versions of a full-fledged integrated pa- rallel programming environment (PPE). These PPEs have been used to implement realistic vi- sion applications, such as road following or vehicle tracking for assisted driving, on embedded parallel platforms embarked on semi-autonomous vehicles. All versions of SKIPPER share a common front-end and reperto…

Vehicle tracking system[ INFO.INFO-TS ] Computer Science [cs]/Signal and Image ProcessingComputer Networks and CommunicationsComputer science02 engineering and technology[ SPI.SIGNAL ] Engineering Sciences [physics]/Signal and Image processingcomputer.software_genreTheoretical Computer ScienceSoftware portability[INFO.INFO-TS]Computer Science [cs]/Signal and Image ProcessingArtificial Intelligence0202 electrical engineering electronic engineering information engineeringcomputer.programming_language020203 distributed computingbusiness.industryProgramming language020207 software engineeringPascal (programming language)Computer Graphics and Computer-Aided DesignSkeleton (computer programming)Parallel image processingData flow diagramHardware and ArchitectureSoftware engineeringbusinesscomputer[SPI.SIGNAL]Engineering Sciences [physics]/Signal and Image processingSoftware
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Improving graphical information system model use with elision and connecting lines

2004

Graphical information system (IS) models are used to specify and design IS from several perspectives. Due to the growing size and complexity of modern information systems, critical design information is often distributed via multiple diagrams. This slows search performance and results in reading errors that later cause omissions and inconsistencies in the final designs. We study the impact of large screens and the two promising visual integration techniques of elision and connecting lines that can decrease the designers' cognitive efforts to read diagrams. We conduct a laboratory experiment using 84 computer science students to investigate the impact of these techniques on the accuracy of t…

Visual searchHorizontal and verticalRecallbusiness.industryComputer scienceSpatial abilitymedia_common.quotation_subjectCognitionSpatial visualization abilityHuman-Computer InteractionData flow diagramInformation visualizationHuman–computer interactionReading (process)Information systemCritical designbusinessmedia_commonInteractions
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Comparison between a detailed and a simplified integrated model for the assessment of urban drainage environmental impact on an ephemeral river

2008

The benefit of integrated analysis has been demonstrated in technical literature and it is also required by the EU Water Framework Directive 60/2000, which proposes a water-quality-orientated view of the whole urban drainage system and oversees new ways of assessing its performance. Integrated models, such as any complex modelling approach, often have prohibitive data availability requirements that reduce their applicability. Moreover, widely different approaches can be applied, ranging from simple conceptual models to complex physically based ones. In the present paper, two approaches have been compared using data from an experimental catchment in Bologna ( Italy), which consists of a part…

integrated urban drainage modellinggeographygeography.geographical_feature_categoryEphemeral keyGeography Planning and DevelopmentDrainage basinEnvironmental engineeringwater qualityCivil engineeringData flow diagramephemeral riverWater Framework Directiveurban drainageDrainage system (geomorphology)SewerageEnvironmental scienceEnvironmental impact assessmentDrainageWater Science and TechnologyUrban Water Journal
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