Search results for "take-all"

showing 3 items of 3 documents

A 4K-Input High-Speed Winner-Take-All (WTA) Circuit with Single-Winner Selection for Change-Driven Vision Sensors

2019

Winner-Take-All (WTA) circuits play an important role in applications where a single element must be selected according to its relevance. They have been successfully applied in neural networks and vision sensors. These applications usually require a large number of inputs for the WTA circuit, especially for vision applications where thousands to millions of pixels may compete to be selected. WTA circuits usually exhibit poor response-time scaling with the number of competitors, and most of the current WTA implementations are designed to work with less than 100 inputs. Another problem related to the large number of inputs is the difficulty to select just one winner, since many competitors ma…

Artificial neural networkComputer sciencebusiness.industryEvent (computing)020208 electrical & electronic engineering02 engineering and technologylcsh:Chemical technologyBiochemistryArticleAtomic and Molecular Physics and OpticsWinner-take-allAnalytical ChemistryCMOSWinner-Take-All (WTA)Selective Change Driven Vision (SCD)0202 electrical engineering electronic engineering information engineeringlcsh:TP1-1185020201 artificial intelligence & image processingElectrical and Electronic EngineeringbusinessInstrumentationSelection (genetic algorithm)Computer hardwareElectronic circuitSensors
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32×32 winner-take-all matrix with single winner selection

2010

A 32 × 32 winner-take-all (WTA) matrix with single winner selection is introduced. A high-resolution gain-boosted regulated-cascode WTA circuit is used in a first competition stage. Because of the large number of competing cells the possibility of a multiple winners situation arises. A single winner is obtained by means of a digital inhibitory circuit following each WTA analogue amplifier. Simulations show that this mixed analogue-digital circuit achieves its objective with a current resolution of approximately 10 nA (0.8% of the maximum input current in the simulated case). A time response of ?s can be achieved.

Digital electronicsEngineeringArtificial neural networkbusiness.industryAmplifierHigh resolutionWinner-take-allMatrix (mathematics)Time responseElectronic engineeringElectrical and Electronic EngineeringbusinessAlgorithmSelection (genetic algorithm)Electronics Letters
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Defense Responses of Fusarium oxysporum to 2,4-Diacetylphloroglucinol, a Broad-Spectrum Antibiotic Produced by Pseudomonas fluorescens

2004

A collection of 76 plant-pathogenic and 41 saprophytic Fusarium oxysporum strains was screened for sensitivity to 2,4-diacetylphloroglucinol (2,4-DAPG), a broad-spectrum antibiotic produced by multiple strains of antagonistic Pseudomonas fluorescens. Approximately 17% of the F. oxysporum strains were relatively tolerant to high 2,4-DAPG concentrations. Tolerance to 2,4-DAPG did not correlate with the geographic origin of the strains, formae speciales, intergenic spacer (IGS) group, or fusaric acid production levels. Biochemical analysis showed that 18 of 20 tolerant F. oxysporum strains were capable of metabolizing 2,4-DAPG. For two tolerant strains, analysis by mass spectrometry indicated…

PhysiologyPhloroglucinolPseudomonas fluorescensPhloroglucinoltomatoPseudomonas fluorescensMicrobiologyresistancestrainschemistry.chemical_compoundFusariumtake-allDrug Resistance BacterialFusarium oxysporum[SDV.BBM] Life Sciences [q-bio]/Biochemistry Molecular Biology[SDV.BBM]Life Sciences [q-bio]/Biochemistry Molecular BiologybiocontrolPhylogenyPlant DiseasesDose-Response Relationship DrugbiologyEPS-2food and beveragesgenetic diversityGeneral MedicineFungi imperfectiPlantspopulationssensitivitybiology.organism_classificationAnti-Bacterial AgentsLaboratorium voor PhytopathologiePRI BiosciencechemistryLaboratory of PhytopathologyPseudomonadales24-DiacetylphloroglucinolDNA Intergenicbiosynthesisabc transportersAgronomy and Crop ScienceFusaric acidPseudomonadaceaeMolecular Plant-Microbe Interactions®
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