Search results for "doppler effect"

showing 10 items of 148 documents

SINR analysis of OFDM systems using a geometry-based underwater acoustic channel model

2015

The Doppler effect is caused by the relative movement between the transmitter (Tx) and the receiver (Rx) and/or the surface motion (waves) in underwater acoustic (UWA) communication systems. The inter-channel interference (ICI) caused by the Doppler effect degrades the performance of orthogonal frequency-division multiplexing (OFDM) systems over UWA channels. This paper is devoted to the ICI plus noise analysis of UWA-OFDM systems over a geometry-based channel model for shallow UWA channels. We carry out the exact calculation of the ICI power, ambient noise power, and required transmit power, as well as their effects on the performance of UWA-OFDM systems. The signal-to-interference ratio (…

Computer scienceOrthogonal frequency-division multiplexingBandwidth (signal processing)Ambient noise levelTransmitterSignal-to-interference-plus-noise ratioGeometryTransmitter power outputInterference (wave propagation)Multiplexingsymbols.namesakeSignal-to-noise ratiosymbolsDoppler effectCommunication channel2015 IEEE 26th Annual International Symposium on Personal, Indoor, and Mobile Radio Communications (PIMRC)
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Modelling of Non-WSSUS Channels with Time-Variant Doppler and Delay Characteristics

2018

This paper deals with the modelling of non-wide-sense stationary uncorrelated scattering (non-WSSUS) channels in which the angles of arrival (AOAs), Doppler frequencies, and propagation delays vary with time. Starting from a geometrical model in which the mobile station (MS) travels along a predefined path with time-variant velocity, it is shown how the parameters of the non-WSSUS model can be computed analytically assuming that the scatterers are fixed. One of the key results of our analysis is that the time-variant Doppler frequencies and the time-variant propagation delays of WSSUS and non-WSSUS channels are connected by a fundamental relationship. Furthermore, the time-variant channel t…

Computer scienceScatteringMathematical analysis020302 automobile design & engineering020206 networking & telecommunications02 engineering and technologyPropagation delayUncorrelatedDelay spreadsymbols.namesake0203 mechanical engineeringMobile stationPath (graph theory)0202 electrical engineering electronic engineering information engineeringsymbolsWidebandDoppler effectComputer Science::Information TheoryCommunication channel2018 IEEE Seventh International Conference on Communications and Electronics (ICCE)
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Spectrogram analysis of multipath fading channels

2015

The analysis of the Doppler power spectral density (PSD) of measured and simulated data is an important topic in the area of mobile radio channel modelling. In this paper, we estimate the Doppler PSD of multipath fading channels by using the concept of the spectrogram. The spectrogram is a spectral representation that gives insight into how the distribution of the spectral density of a signal changes over time. The multipath fading channel is modelled by a sum-of-cisoids (SOC) process. A closed-form solution is presented for the spectrogram and the corresponding time-dependent autocorrelation function (ACF). The closed-form solutions disclose several unwanted effects that come with the limi…

Computer scienceSpeech recognitionAutocorrelationBandwidth (signal processing)Spectral densitysymbols.namesakeComputer Science::SoundsymbolsSpectrogramFadingAlgorithmDoppler effectMultipath propagationComputer Science::Information TheoryCommunication channel2015 IEEE 26th Annual International Symposium on Personal, Indoor, and Mobile Radio Communications (PIMRC)
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A Trajectory-Driven SIMO mm-Wave Channel Model for a Moving Point Scatterer

2021

In this paper, we propose a trajectory-based three-dimensional (3D) non-stationary channel model for a millimeter wave (mm-Wave) single-input multiple-output (SIMO) system. The proposed channel model is designed to capture the mobility of a moving point scatterer in an indoor environment. We derive the expression of the time-variant (TV) channel transfer function (CTF). We study the TV Doppler characteristics of the channel, such as the TV Doppler power spectrum and the TV mean Doppler shift. To validate the proposed channel model, we performed a measurement campaign in an indoor environment using a software defined radar operating at 24 GHz. As a moving object, we consider a single swingin…

Computer sciencebusiness.industryAcoustics020208 electrical & electronic engineeringPendulumSpectral density020206 networking & telecommunications02 engineering and technologylaw.inventionsymbols.namesakeSoftwarelawExtremely high frequency0202 electrical engineering electronic engineering information engineeringsymbolsTrajectoryRadarbusinessDoppler effectComputer Science::Information TheoryCommunication channel2021 15th European Conference on Antennas and Propagation (EuCAP)
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Estimation of the Velocity of a Walking Person in Indoor Environments from mmWave Signals

2018

The present work is motivated by the growing interest in using millimeter-wave (mmWave) bands in future wireless indoor communications. For a variety of wireless indoor applications, such as remote medical care, healthcare services, and human-machine interaction, it is of crucial importance to estimate the velocity of walking persons in indoor environments with high precision. In this paper, we present a novel procedure for estimating the velocity of a walking person in indoor environments by using mmWave signals. The indoor environment is considered to be equipped with a distributed $2\times 2$ multiple-input multiple-output (MIMO) system operating in the 60 GHz band. The proposed approach…

Computer sciencebusiness.industryMIMOReal-time computing020207 software engineering02 engineering and technologyTime–frequency analysissymbols.namesake0202 electrical engineering electronic engineering information engineeringsymbolsWirelessSpectrogram020201 artificial intelligence & image processingbusinessDoppler effect2018 IEEE Globecom Workshops (GC Wkshps)
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Mobile phone based laser speckle contrast imager for assessment of skin blood flow

2014

Assessment of skin blood flow is of interest for evaluation of skin viability as well as for reflection of the overall condition of the circulatory system. Laser Doppler perfusion imaging (LDPI) and laser speckle contrast imaging (LASCI) are optical techniques used for assessment of skin perfusion. However, these systems are still too expensive and bulky to be widely available. Implementation of such techniques as connection kits for mobile phones have a potential for primary diagnostics. In this work we demonstrate simple and low cost LASCI connection kit for mobile phone and its comparison to laser Doppler perfusion imager. Post-occlusive hyperemia and local thermal hyperemia tests are us…

Computer sciencebusiness.industrymedia_common.quotation_subjectBlood flowLaser Doppler velocimetryLaserlaw.inventionsymbols.namesakeSpeckle patternlawMobile phonesymbolsContrast (vision)Computer visionArtificial intelligencebusinessPerfusionDoppler effectmedia_commonSPIE Proceedings
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MOJAVE: Monitoring of Jets in Active Galactic Nuclei with VLBA Experiments. VI. Kinematics Analysis of a Complete Sample of Blazar Jets

2009

We discuss the jet kinematics of a complete flux-density-limited sample of 135 radio-loud active galactic nuclei (AGN) resulting from a 13 year program to investigate the structure and evolution of parsec-scale jet phenomena. Our analysis is based on new 2 cm Very Long Baseline Array (VLBA) images obtained between 2002 and 2007, but includes our previously published observations made at the same wavelength, and is supplemented by VLBA archive data. In all, we have used 2424 images spanning the years 1994-2007 to study and determine the motions of 526 separate jet features in 127 jets. The data quality and temporal coverage (a median of 15 epochs per source) of this complete AGN jet sample r…

Cosmology and Nongalactic Astrophysics (astro-ph.CO)Active galactic nucleusLorentz transformationAstrophysics::High Energy Astrophysical PhenomenaPopulationFOS: Physical sciencesAstrophysicsKinematicsAstrophysics::Cosmology and Extragalactic Astrophysics01 natural sciencessymbols.namesake0103 physical scienceseducationBlazar010303 astronomy & astrophysicsVery Long Baseline ArrayPhysicseducation.field_of_study010308 nuclear & particles physicsAstronomy and AstrophysicsWavelength13. Climate actionSpace and Planetary SciencesymbolsDoppler effectAstrophysics - Cosmology and Nongalactic Astrophysics
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Non-Contact Measurement of River Surface Velocity and Discharge Estimation with a Low-Cost Doppler Radar Sensor

2020

River discharge is an important variable to measure in order to predict droughts and flood occurrences. Once the cross-sectional geometry of the river is known, discharge can be inferred from water level and surface flow velocity measurements. Since river discharges are of particular interest during extreme weather events, when river sites cannot be safely accessed, noncontact sensing technologies are particularly appealing. To this purpose, this work proposes a prototype of a low-cost continuous wave (CW) Doppler radar sensor, which is able to monitor the surface flow velocity of rivers. The prototype is tested at two gauged sites in central Italy, along the Tiber River. The surface flow v…

Doppler radar0211 other engineering and technologiesRiver hydraulic02 engineering and technologydischarge estimationsurface velocity radars (SVRs)law.inventionsymbols.namesakelow-cost Doppler radar sensorlawElectrical and Electronic EngineeringRadar021101 geological & geomatics engineeringRemote sensingDischargeriver hydraulicsDoppler centroid estimationlow-cost Doppler radar sensorsDoppler centroid estimation.Discharge estimation; Doppler centroid estimation; low-cost Doppler radar sensors; river hydraulics; surface velocity radars (SVRs)Discharge estimationWater levelFlow velocitySurface wavesymbolsGeneral Earth and Planetary SciencesContinuous waveEnvironmental scienceDoppler effectsurface velocity radar
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Intraoperative microvascular Doppler monitoring of blood flow within a spinal dural arteriovenous fistula: a precious surgical tool. Case report.

2001

The authors describe a case of spinal arteriovenous fistula (AVF) treated by a microvauscular Doppler–assisted surgical interruption of the arterialized vein. Microvascular Doppler monitoring represents a valid, widely available, non-invasive tool that enables identification, through flow spectrum analysis, of components of this type of vascular malformation. In this case because the location of the fistula was identified prior to opening the dura only minimally invasive surgery was required. Direct recordings of the arterialized draining vein and the nidus of the fistula demonstrated a pathological spectrum caused by the arterial supply and the disturbed venous outflow in which a high-resi…

Dural arterovenous fistula; Spine; Ultrasonography; Intraoperative monitoringmedicine.medical_specialtyMedullary cavityFistulaArteriovenous fistulaDoppler measurementsintraoperative doppler spinal dAVFsymbols.namesakeMonitoring IntraoperativeMedicineHumansVeinIntraoperative monitoringUltrasonographyCentral Nervous System Vascular MalformationsDural arterovenous fistulabusiness.industrySettore MED/27 - NeurochirurgiaVascular malformationUltrasonography DopplerGeneral MedicineBlood flowMiddle Agedmedicine.diseaseSpineSurgerymedicine.anatomical_structureRegional Blood FlowsymbolsSurgeryFemaleNeurology (clinical)RadiologybusinessDoppler effectdural arteriovenous fistula spine ultrasonography intraoperative monitoring
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Very narrow-bandwidth tunable infrared difference frequency generation with injection-locked dye lasers

1989

Two flashlamp pumped dye lasers of very high spectral quality are mixed in a LiIO3 crystal to generate a tunable infrared beam through the difference frequency mixing. Thanks to the injection-locking process of the pulsed dye lasers leading to a linewidth of 6 MHz with peak powers of about 10 kW, we obtain an IR beam tunable from 3.5 to 5.9 μm with a peak power of 40 W and a linewidth of 9 MHz. As an application we present a spectrum of N2O obtained by differential absorption near 1880 cm−1. The lines of thisQ-branch are Doppler limited at the working pressure (102 Pa).

Dye laserMaterials sciencePhysics and Astronomy (miscellaneous)Infraredbusiness.industryGeneral EngineeringGeneral Physics and AstronomyNonlinear opticsLithium iodateLaserlaw.inventionInjection lockingsymbols.namesakechemistry.chemical_compoundLaser linewidthchemistrylawsymbolsOptoelectronicsbusinessDoppler effectApplied Physics B Photophysics and Laser Chemistry
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