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Modelling, Simulation and Data Analysis in Acoustical Problems



Modelling, Simulation and Data Analysis in Acoustical ProblemsGuarnaccia Claudio
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Autore: Guarnaccia Claudio Visualizza persona
Titolo: Modelling, Simulation and Data Analysis in Acoustical Problems Visualizza cluster
Pubblicazione: Basel, Switzerland, : MDPI - Multidisciplinary Digital Publishing Institute, 2020
Descrizione fisica: 1 online resource (584 p.)
Soggetto topico: Research & information: general
Soggetto non controllato: acoustic echo
acoustic emission
acoustic field
acoustic localization
acoustic propagation
acoustic simulation
acoustic vector sensor (AVS)
acoustical measurements
acoustics
actuators
Adjacent RPs
air flow velocity
Analytical solutions
artificial neural networks
auditory perception
automatic detection/evaluation
balanced armature receiver
beam directivity
Bessel radiation distribution
boundary element method
bowel motility
bowel sound
channel estimation
channel modelling
Channel-Picking
cochlear implant
coding strategy
computational fluid dynamics (CFD)
COSMO
coupled dynamics
crack growth
cross array
cutoff phenomenon
diffraction
direction estimation
Direction of Arrival (DOA)
discrete sampling
dynamic cone penetration test
dynamic tissue property
electrical treeing
EMATs
error analysis
fatigue crack growth
FDTD
fingerprinting acoustic localization
finite element method and Boundary element method
finite element modeling
Fixed-Channel
flow speed
fluid-filled polyethylene (PE) pipeline
focused transducer
fractional order derivative
graphical bilinear method
Helmholtz equation
HIFU
high-voltage insulating systems
historical acoustics
hydro-elastic responses
insertion loss
intelligent service robot
interaction
iterative interpolation
K-Means clustering
Kramers-Kronig relation
KZK equation
l1-regularized RLS
Lamb waves
landmine detection
larynx acoustics
low frequency noise
lumped parameter method
lumped parameter model
minimum variance distortionless response
mode excitation
modelling
mooring chain
mooring line
mooring tension
moving sound source
MRI
multi-frame
multichannel electroglottograph
musical performance
n/a
noise barrier
noise control
noised-induced hearing loss
non-destructive testing
noncontact instrumentation
nonuniform radiation distribution
normal-hearing
OFDM
open-air theatres
p-value
parabolic thickness variation
perforate tube silencer
piano playing
point mass
power-normalized cepstral coefficients
powered surgical instruments
prediction models
pressure loss
Principal Component Analysis (PCA)
prodder
Pyramid Vector Quantization (PVQ)
rail defect detection
Rayleigh integral
rectangular and concentric stiffener patches
regularization factor
resonance frequency
rim radiation
room impulse response
SAFE
seaquake
seismic excitation
seismic survey
sensors
signal self-cancellation
simulation platform
soil depth
solid dielectrics
sparsity
spatial power spectrum
speech enhancement (SE)
speech sparsity
spherically curved uniform radiator
stereo audio coding
structural health monitoring
structural integrity
submerged floating tunnel (SFT)
taper ratio
temperature
thermal damage zone
thick annular circular plate
thickness variation
time-distance curve
time-frequency (TF) mask
total least squares
transcanal endoscopic ear surgery
transmission loss (TL)
Two-stage matching
ultrasonic aspirator
ultrasonic guided waves
ultrasonic lenses
ultrasound hyperthermia
underwater acoustic source
UWA communication
vehicle frequencies
vibrotactile feedback
vocoder simulation
voice generation
wave excitation
wavelets
Westervelt equation
wet natural frequencies
wooden constructions
Zone Plates
Persona (resp. second.): TronchinLamberto
ViscardiMassimo
GuarnacciaClaudio
Sommario/riassunto: Modelling and simulation in acoustics is currently gaining importance. In fact, with the development and improvement of innovative computational techniques and with the growing need for predictive models, an impressive boost has been observed in several research and application areas, such as noise control, indoor acoustics, and industrial applications. This led us to the proposal of a special issue about "Modelling, Simulation and Data Analysis in Acoustical Problems", as we believe in the importance of these topics in modern acoustics' studies. In total, 81 papers were submitted and 33 of them were published, with an acceptance rate of 37.5%. According to the number of papers submitted, it can be affirmed that this is a trending topic in the scientific and academic community and this special issue will try to provide a future reference for the research that will be developed in coming years.
Titolo autorizzato: Modelling, Simulation and Data Analysis in Acoustical Problems  Visualizza cluster
Formato: Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione: Inglese
Record Nr.: 9910557128103321
Lo trovi qui: Univ. Federico II
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