Search results for "Time"

showing 10 items of 12336 documents

Assortative mating by size without a size-based preference: the female-sooner norm as a mate-guarding criterion.

2013

7 pages; International audience; The study of size-assortative mating, or homogamy, is of great importance in speciation and sexual selection. However, the proximate mechanisms that lead to such patterns are poorly understood. Homogamy is often thought to come from a directional preference for larger mates. However, many constraints affect mating preferences and understanding the causes of size assortment requires a precise evaluation of the pair formation mechanism. Mate-guarding crustaceans are a model group for the study of homogamy. Males guard females until moult and reproduction. They are also unable to hold a female during their own moult and tend to pair with females closer to moult…

0106 biological sciencestime left to moultamplexusBiology010603 evolutionary biology01 natural sciencessize-assortative matingAmplexus[ SDV.EE.IEO ] Life Sciences [q-bio]/Ecology environment/Symbiosis0501 psychology and cognitive sciences050102 behavioral science & comparative psychologyEcology Evolution Behavior and Systematics[ SDE.BE ] Environmental Sciences/Biodiversity and EcologyMate guarding05 social sciencesAssortative matingstate-dependent preferenceDecision ruleMating preferencesmale mate choicePair formationinferential fallacymale-taller normSexual selectionAnimal Science and ZoologyNorm (social)[SDE.BE]Environmental Sciences/Biodiversity and EcologycrustaceanSocial psychology[SDV.EE.IEO]Life Sciences [q-bio]/Ecology environment/Symbiosis
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Limnology and Aquatic Microbial Ecology of Byers Peninsula: A Main Freshwater Biodiversity Hotspot in Maritime Antarctica

2019

Here we present a comprehensive review of the diversity revealed by research in limnology and microbial ecology conducted in Byers Peninsula (Livingston Island, South Shetland Islands, Antarctica) during the last two decades. The site constitutes one of the largest ice-free areas within the Antarctic Peninsula region. Since it has a high level of environmental protection, it is less human-impacted compared to other sites within the South Shetland archipelago. The main investigations in Byers Peninsula focused on the physical and chemical limnology of the lakes, ponds, rivers, and wetlands, as well as on the structure of their planktonic and benthic microbial communities, and on the function…

0106 biological sciencesvirioplankton010504 meteorology & atmospheric sciencesLimnologyWetlandmaritime antarctica01 natural sciencesPeninsulabyers peninsulalcsh:QH301-705.50105 earth and related environmental sciencesNature and Landscape ConservationprotistsShetlandFunctional ecologygeographygeography.geographical_feature_categoryEcologyEcologybacterioplankton010604 marine biology & hydrobiologyEcological Modelingmicrobial matsPlanktonAgricultural and Biological Sciences (miscellaneous)lcsh:Biology (General)Productivity (ecology)Benthic zonenext-generation sequencingDiversity
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Two-Dimensional Numerical Modelling of a Moored Floating Body under Sloping Seabed Conditions

2020

A coupled floating body-mooring line model is developed by combining a boundary element model for a two-dimensional floating body and a catenary mooring line model. The boundary element model is formulated in the time domain by a continuous Rankine source, and a reflection potential is introduced to account for the wave reflection due to sloping seabed. This newly developed model is validated by comparisons against available data. Then, dynamic response analyses are performed for the moored body in various seabed conditions. Compared with a flat seabed, a sloping seabed causes unsymmetrical mooring line configuration and generates noticeable effects in the motion responses of the floating b…

020101 civil engineeringOcean Engineering02 engineering and technology01 natural sciencesPhysics::Geophysicscoupled modelboundary element method010305 fluids & plasmas0201 civil engineeringlcsh:Oceanographylcsh:VM1-9890103 physical sciencesCatenarylcsh:GC1-1581Time domainMooring lineBoundary element methodSeabedWater Science and TechnologyCivil and Structural EngineeringDegree Rankinesloping seabedLine modellcsh:Naval architecture. Shipbuilding. Marine engineeringlinear potential flowunsymmetrical mooring linesVDP::Teknologi: 500Reflection (physics)GeologyMarine engineeringJournal of Marine Science and Engineering
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Peer-to-peer cooperative GNSS-based localization for stationary reference nodes in wireless sensor networks

2017

Most localization algorithms in wireless sensor networks rely on a few reference nodes with known locations to estimate the locations of unknown nodes. The locations of reference nodes can be either manually configured or, more practically, obtained by means of some satellite-based positioning system(s). However, satellite-based locations may be inaccurate and imprecise, which results in reduced location accuracy of localization algorithms. This paper proposes a peer-to-peer cooperative GNSS-based localization algorithm for stationary reference nodes to improve their relative location accuracy and precision. The algorithm applies simple statistical methods and GNSS-based information from mu…

020203 distributed computingAccuracy and precisionPositioning systemSIMPLE (military communications protocol)Computer sciencebusiness.industryReal-time computing020206 networking & telecommunications02 engineering and technologyPeer-to-peercomputer.software_genrelocalizationlokalisointiGNSS applicationsalgoritmit0202 electrical engineering electronic engineering information engineeringGlobal Positioning SystemSatellitebusinesscomputerWireless sensor networklangattomat verkot
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Nvidia CUDA parallel processing of large FDTD meshes in a desktop computer

2020

The Finite Difference in Time Domain numerical (FDTD) method is a well know and mature technique in computational electrodynamics. Usually FDTD is used in the analysis of electromagnetic structures, and antennas. However still there is a high computational burden, which is a limitation for use in combination with optimization algorithms. The parallelization of FDTD to calculate in GPU is possible using Matlab and CUDA tools. For instance, the simulation of a planar array, with a three dimensional FDTD mesh 790x276x588, for 6200 time steps, takes one day -elapsed time- using the CPU of an Intel Core i3 at 2.4GHz in a personal computer, 8Gb RAM. This time is reduced 120 times when the calcula…

020203 distributed computingComputer scienceFinite-difference time-domain methodGraphics processing unit02 engineering and technologyComputational scienceCUDAPersonal computer0202 electrical engineering electronic engineering information engineeringComputational electromagnetics020201 artificial intelligence & image processingCentral processing unitTime domainMATLABcomputercomputer.programming_languageProceedings of the 10th Euro-American Conference on Telematics and Information Systems
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WarpDrive: Massively Parallel Hashing on Multi-GPU Nodes

2018

Hash maps are among the most versatile data structures in computer science because of their compact data layout and expected constant time complexity for insertion and querying. However, associated memory access patterns during the probing phase are highly irregular resulting in strongly memory-bound implementations. Massively parallel accelerators such as CUDA-enabled GPUs may overcome this limitation by virtue of their fast video memory featuring almost one TB/s bandwidth in comparison to main memory modules of state-of-the-art CPUs with less than 100 GB/s. Unfortunately, the size of hash maps supported by existing single-GPU hashing implementations is restricted by the limited amount of …

020203 distributed computingComputer scienceHash function0102 computer and information sciences02 engineering and technologyParallel computingData structure01 natural sciencesHash tableElectronic mailMemory management010201 computation theory & mathematicsScalability0202 electrical engineering electronic engineering information engineeringMassively parallelTime complexity2018 IEEE International Parallel and Distributed Processing Symposium (IPDPS)
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Thorough analysis of Raspberry Pi devices in outdoor/indoor communications in terms of QoS

2020

The proliferation of commercial low-cost Small Board Computers (SBC) devices have allowed the deployment of many Wireless Sensor Networks (WSN) focused on different applications, mainly based on monitoring issues. These networks are characterized by a set of these SBCs devices working in a collaborative way where each device is sensing, processing and later sending out the data to the sink. These devices are equipped with power supply, a processing unit and communications capabilities (in particular WiFi), making themselves very interesting to fit in many topologies. However, their performance in terms of communications basically depends on the environment and usually heuristic techniques a…

020203 distributed computingHeuristic (computer science)Computer scienceQuality of serviceReal-time computing02 engineering and technologyNetwork topology0202 electrical engineering electronic engineering information engineering020201 artificial intelligence & image processingRay tracing (graphics)Wireless sensor networkThroughput (business)Multipath propagationJitterProceedings of the 10th Euro-American Conference on Telematics and Information Systems
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On the Use of a GPU-Accelerated Mobile Device Processor for Sound Source Localization

2017

Abstract The growing interest to incorporate new features into mobile devices has increased the number of signal processing applications running over processors designed for mobile computing. A challenging signal processing field is acoustic source localization, which is attractive for applications such as automatic camera steering systems, human-machine interfaces, video gaming or audio surveillance. In this context, the emergence of systems-on-chip (SoC) that contain a small graphics accelerator (or GPU), contributes a notable increment of the computational capacity while partially retaining the appealing low-power consumption of embedded systems. This is the case, for example, of the Sam…

020203 distributed computingSignal processingbusiness.industryComputer scienceReal-time computingMobile computing020206 networking & telecommunicationsContext (language use)02 engineering and technologyAcoustic source localizationcomputer.software_genreField (computer science)Power (physics)0202 electrical engineering electronic engineering information engineeringGeneral Earth and Planetary SciencesbusinessAudio signal processingMobile devicecomputerComputer hardwareGeneral Environmental ScienceProcedia Computer Science
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5G IoT system for real-time psycho-acoustic soundscape monitoring in smart cities

2020

In Next-Generation Technologies, the monitoring of environmental noise nuisance in the Smart City should be as efficient as possible. 5G IoT systems offer a great opportunity to offload the node calculation, as they provide a number of new concepts for dynamic computing that previous technologies did not offer. In this case, a complete 5G IoT system for psycho-acoustic monitoring has been implemented using different options to offload the calculation of the parameters to different parts of the system. This offloading has been implemented by directly computing the metrics in the node (as a Raspberry Pi), and in a ESP32 device (FiPy) and by sampling the audio and sending it to the EDGE in the…

020203 distributed computingSoundscapeComputer sciencebusiness.industryNode (networking)Real-time computingSampling (statistics)02 engineering and technologySmart city0202 electrical engineering electronic engineering information engineering020201 artificial intelligence & image processingEnhanced Data Rates for GSM EvolutionEnvironmental noiseInternet of Thingsbusiness5GProceedings of the 10th Euro-American Conference on Telematics and Information Systems
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A validity and reliability study of Conditional Entropy Measures of Pulse Rate Variability

2019

In this work, we present the feasibility to use a simpler methodological approach for the assessment of the short-term complexity of Heart Rate Variability (HRV). Specifically, we propose to exploit Pulse Rate Variability (PRV) recorded through photoplethysmography in place of HRV measured from the ECG, and to compute complexity via a linear Gaussian approximation in place of the standard model-free methods (e.g., nearest neighbor entropy estimates) usually applied to HRV. Linear PRV-based and model-free HRV-based complexity measures were compared via statistical tests, correlation analysis and Bland-Altman plots, demonstrating an overall good agreement. These results support the applicabil…

020205 medical informaticsComputer scienceEntropy0206 medical engineeringValidity02 engineering and technologySettore ING-INF/01 - ElettronicaElectrocardiographyPulse Rate Variability (PRV)Heart RatePhotoplethysmogram0202 electrical engineering electronic engineering information engineeringHumansEntropy (information theory)Heart rate variabilityEntropy (energy dispersal)Time seriesPhotoplethysmographyEntropy (arrow of time)Statistical hypothesis testingConditional entropyEntropy (statistical thermodynamics)Reproducibility of ResultsHeart Rate Variability (HRV)020601 biomedical engineeringSettore ING-INF/06 - Bioingegneria Elettronica E InformaticacomplexityAlgorithmEntropy (order and disorder)2019 41st Annual International Conference of the IEEE Engineering in Medicine and Biology Society (EMBC)
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