Search results for "spectrogram"

showing 10 items of 34 documents

A Trajectory-Driven 3D Non-Stationary mm-Wave MIMO Channel Model for a Single Moving Point Scatterer

2021

This paper proposes a new non-stationary three-dimensional (3D) channel model for a physical millimeter wave (mm-Wave) multiple-input multiple-output (MIMO) channel. This MIMO channel model is driven by the trajectory of a moving point scatterer, which allows us to investigate the impact of a single moving point scatterer on the propagation characteristics in an indoor environment. Starting from the time-variant (TV) channel transfer function, the temporal behavior of the proposed non-stationary channel model has been analyzed by studying the TV micro-Doppler characteristics and the TV mean Doppler shift. The proposed channel model has been validated by measurements performed in an indoor e…

General Computer ScienceComputer scienceAcousticsMIMOData_CODINGANDINFORMATIONTHEORYMotion capturesymbols.namesakemm-Wave channelsInertial measurement unitGeneral Materials Sciencemean Doppler shiftVDP::Teknologi: 500::Informasjons- og kommunikasjonsteknologi: 550Computer Science::Information Theorymultipath propagationGeneral EngineeringPendulumnon-stationary channelsTK1-9971MIMO channelTrajectorysymbolsSpectrogramElectrical engineering. Electronics. Nuclear engineeringchannel measurementsDoppler effectCommunication channelIEEE Access
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Spectrogram Analysis of Multipath Fading Channels under Variations of the Mobile Speed

2016

When modelling, analysing, and simulating mobile radio channels, it is generally assumed that the speed of the mobile station (MS) is constant. In practice, however, the mobile speed varies with time. Mobile speed variations result in nonwide- sense stationary multipath fading channels, which can be modelled by a sum-of-chirps (SOCh) processes. In this paper, we analyse the local Doppler power spectral density (PSD) of SOCh processes by using the concept of the spectrogram. The spectrogram provides an estimate of the local Doppler PSD and gives insight into how the Doppler PSD changes over time if the MS increases or decreases its speed. A closed-form solution is presented for the spectrogr…

Computer science010401 analytical chemistrySpectral density020206 networking & telecommunications02 engineering and technology01 natural sciences0104 chemical sciencesTime–frequency analysissymbols.namesakeMobile stationComputer Science::Networking and Internet Architecture0202 electrical engineering electronic engineering information engineeringsymbolsElectronic engineeringSpectrogramDoppler effectRandom variableMultipath propagationCommunication channel2016 IEEE 84th Vehicular Technology Conference (VTC-Fall)
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Improved Quadratic Time-frequency Distributions for Detecting Inter-turn Short Circuits of PMSMs in Transient States

2020

This paper aims to improve quadratic time-frequency distributions to adapt condition monitoring of electrical machines in transient states. Short-Time Fourier transform (STFT) has been a baseline signal processing technique for detecting fault characteristic frequencies. However, limits of window sizes due to loss of frequency- or time-resolution, make it hard to capture rapid changes in frequencies. Within this study, Choi-Williams and Wigner-Ville distributions are proposed to effectively detect peaks at characteristic frequencies while still maintaining low computation time. The improved quadratic time-frequency distributions allow for generating spectrograms of a longer lasting data sig…

symbols.namesakeSignal processingFourier transformQuadratic equationComputer scienceShort-time Fourier transformsymbolsCondition monitoringSpectrogramTransient (oscillation)AlgorithmVDP::Teknologi: 500::Elektrotekniske fag: 540Time–frequency analysis
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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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Wi-Sense: a passive human activity recognition system using Wi-Fi and convolutional neural network and its integration in health information systems

2021

AbstractA human activity recognition (HAR) system acts as the backbone of many human-centric applications, such as active assisted living and in-home monitoring for elderly and physically impaired people. Although existing Wi-Fi-based human activity recognition methods report good results, their performance is affected by the changes in the ambient environment. In this work, we present Wi-Sense—a human activity recognition system that uses a convolutional neural network (CNN) to recognize human activities based on the environment-independent fingerprints extracted from the Wi-Fi channel state information (CSI). First, Wi-Sense captures the CSI by using a standard Wi-Fi network interface car…

Computer sciencebusiness.industry010401 analytical chemistry020206 networking & telecommunicationsPattern recognition02 engineering and technology01 natural sciencesConvolutional neural network0104 chemical sciencesActivity recognitionData setNetwork interface controllerChannel state informationVDP::Teknologi: 500::Medisinsk teknologi: 620Principal component analysis0202 electrical engineering electronic engineering information engineeringSpectrogramNoise (video)Artificial intelligenceElectrical and Electronic Engineeringbusiness
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Motorcyclists Safety System to avoid Rear End Collisions based on Acoustic Signatures

2017

International audience; In many Asian countries, motorcyclists have a higher fatality rate as compared to other vehicles. Among many other factors, rear end collisions are also contributing for these fatalities. Collision detection systems can be useful to minimize these accidents. However, the designing of efficient and cost effective collision detection system for motorcyclist is still a major challenge. In this paper, an acoustic information based, cost effective and efficient collision detection system is proposed for motorcycle applications. The proposed technique uses the Short time Fourier Transform (STFT) to extract the features from the audio signal and Principal component analysis…

[ INFO ] Computer Science [cs]acoustic signal[SPI.OPTI] Engineering Sciences [physics]/Optics / Photonic[SPI] Engineering Sciences [physics]motorcycle accidentsMalaysia[INFO] Computer Science [cs][SPI]Engineering Sciences [physics]collision detection systemsspectrogram[SPI.OPTI]Engineering Sciences [physics]/Optics / Photonic[ SPI ] Engineering Sciences [physics][INFO]Computer Science [cs]Ridersmotorcyclists safety[ SPI.OPTI ] Engineering Sciences [physics]/Optics / Photonic
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A non-stationary relay-based 3D MIMO channel model with time-variant path gains for human activity recognition in indoor environments

2021

AbstractExtensive research showed that the physiological response of human tissue to exposure to low-frequency electromagnetic fields is the induction of an electric current in the body segments. As a result, each segment of the human body behaves as a relay, which retransmits the radio-frequency (RF) signal. To investigate the impact of this phenomenon on the Doppler characteristics of the received RF signal, we introduce a new three-dimensional (3D) non-stationary channel model to describe the propagation phenomenon taking place in an indoor environment. Here, the indoor space is equipped with a multiple-input multiple-output (MIMO) system. A single person is moving in the indoor space an…

0209 industrial biotechnologyComputer scienceMIMO020206 networking & telecommunications02 engineering and technologySignalVDP::Matematikk og Naturvitenskap: 400::Informasjons- og kommunikasjonsvitenskap: 420Power (physics)law.inventionsymbols.namesake020901 industrial engineering & automationRelaylawPath (graph theory)0202 electrical engineering electronic engineering information engineeringsymbolsElectronic engineeringSpectrogramRadio frequencyElectrical and Electronic EngineeringDoppler effect
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Modelling, Analysis, and Simulation of the Micro-Doppler Effect in Wideband Indoor Channels with Confirmation Through Pendulum Experiments

2020

This paper is about designing a 3D no n-stationary wideband indoor channel model for radio-frequency sensing. The proposed channel model allows for simulating the time-variant (TV) characteristics of the received signal of indoor channel in the presence of a moving object. The moving object is modelled by a point scatterer which travels along a trajectory. The trajectory is described by the object&rsquo

Computer scienceAcousticsdoppler frequency02 engineering and technologylcsh:Chemical technologyBiochemistryArticleAnalytical Chemistry0203 mechanical engineeringInertial measurement unitspectrogramindoor channels0202 electrical engineering electronic engineering information engineeringlcsh:TP1-1185micro-doppler effectElectrical and Electronic EngineeringWidebandVDP::Teknologi: 500::Informasjons- og kommunikasjonsteknologi: 550Instrumentationchannel state informationComputer Science::Information Theory3d no n-stationary channels020301 aerospace & aeronauticswi-fi 802.11nPendulum020206 networking & telecommunicationsAtomic and Molecular Physics and Opticsinertial measurement unitsChannel state informationcsiTrajectoryCommunication channelSensors
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Analysis of Activity States of Local Neuronal Microcircuits in Mouse Brain

2018

Time series of neuronal activity corresponding to different activity states in mouse brain are analyzed in the time domain and the time-frequency domain. The signals are associated with either a slow wave brain state or a persistent brain state. For both states, characteristic spectral features are identified and a simple detector is proposed that is able to identify the brain state with low latency and high accuracy. In practice, being able to monitor the brain state online and in real time is crucial for improved in vivoexperiments and, ultimately, for a causal understanding of brain dynamics.

0301 basic medicine03 medical and health sciences030104 developmental biologyQuantitative Biology::Neurons and CognitionComputer sciencePremovement neuronal activitySpectrogramTime domainNeuroscience2018 26th European Signal Processing Conference (EUSIPCO)
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The influence of the propagation path length on the results of the time–frequency analysis of the acoustic emission generated by partial discharges i…

2006

The paper presents the measurement results of the acoustic emission (AE) signals generated by partial discharges (PDs) at various thickness of the oil insulation layer. For the AE signals registered the time - frequency analysis was carried out based on the use of the short-time Fourier transform (STFT). Two- and three-dimensional spectrograms of the power spectrum density and the amplitude spectrum were determined. The evaluation of the influence of the propagation path length of the AE signal on the results of the time - frequency analysis was performed through the analysis of the spectrograms determined.

Frequency analysisMaterials scienceAcousticsShort-time Fourier transformGeneral Physics and AstronomySpectral densityTime–frequency analysislaw.inventionComputer Science::Hardware Architecturesymbols.namesakeFourier transformAcoustic emissionPath lengthComputer Science::SoundlawsymbolsSpectrogramJournal de Physique IV (Proceedings)
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