985 resultados para ACOUSTICS


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Given the success of patch-based approaches to image denoising,this paper addresses the ill-posed problem of patch size selection.Large patch sizes improve noise robustness in the presence of good matches, but can also lead to artefacts in textured regions due to the rare patch effect; smaller patch sizes reconstruct details more accurately but risk over-fitting to the noise in uniform regions. We propose to jointly optimize each matching patch’s identity and size for gray scale image denoising, and present several implementations.The new approach effectively selects the largest matching areas, subject to the constraints of the available data and noise level, to improve noise robustness. Experiments on standard test images demonstrate our approach’s ability to improve on fixed-size reconstruction, particularly at high noise levels, on smoother image regions.

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In this paper, we present a hybrid mixed cost-function adaptive initialization algorithm for the time domain equalizer in a discrete multitone (DMT)-based asymmetric digital subscriber loop. Using our approach, a higher convergence rate than that of the commonly used least-mean square algorithm is obtained, whilst attaining bit rates close to the optimum maximum shortening SNR and the upper bound SNR. Moreover, our proposed method outperforms the minimum mean-squared error design for a range of TEQ filter lengths.

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Experience continuously imprints on the brain at all stages of life. The traces it leaves behind can produce perceptual learning [1], which drives adaptive behavior to previously encountered stimuli. Recently, it has been shown that even random noise, a type of sound devoid of acoustic structure, can trigger fast and robust perceptual learning after repeated exposure [2]. Here, by combining psychophysics, electroencephalography (EEG), and modeling, we show that the perceptual learning of noise is associated with evoked potentials, without any salient physical discontinuity or obvious acoustic landmark in the sound. Rather, the potentials appeared whenever a memory trace was observed behaviorally. Such memory-evoked potentials were characterized by early latencies and auditory topographies, consistent with a sensory origin. Furthermore, they were generated even on conditions of diverted attention. The EEG waveforms could be modeled as standard evoked responses to auditory events (N1-P2) [3], triggered by idiosyncratic perceptual features acquired through learning. Thus, we argue that the learning of noise is accompanied by the rapid formation of sharp neural selectivity to arbitrary and complex acoustic patterns, within sensory regions. Such a mechanism bridges the gap between the short-term and longer-term plasticity observed in the learning of noise [2, 4-6]. It could also be key to the processing of natural sounds within auditory cortices [7], suggesting that the neural code for sound source identification will be shaped by experience as well as by acoustics.

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Tomando como ponto de partida a relação entre música e matemática, nesta investigação temos como principal objetivo estudar a influência da aprendizagem musical no desempenho matemático. Pretendeu-se ainda observar o efeito de um conjunto de preditores no referido desempenho, mais concretamente do nível socioeconómico, da inteligência e de variáveis cognitivo-motivacionais (motivação, expectativas de autoeficácia e atribuições causais). Numa primeira parte, delineámos as linhas teóricas desta investigação. Começámos por relatar a relação entre música e matemática no âmbito da musicologia histórica, da teoria e análise musicais, da acústica e das tendências na composição musical, evidenciando os mecanismos de ligação entre elementos e conceitos musicais e tópicos e temas matemáticos. Relatámos os benefícios da exposição musical ao nível do desenvolvimento cognitivo e intelectual, destacando o aumento do raciocínio espacial, do desempenho matemático e da inteligência com a aprendizagem musical. De seguida, descrevemos o impacto das aulas de música no aumento do desempenho académico a várias disciplinas, nomeadamente a Matemática, enfatizando a associação da duração da aprendizagem musical com o aumento das capacidades matemáticas; para além do efeito da aprendizagem musical, procurámos ainda explicação de um desempenho académico melhorado com base em variáveis potenciadoras da performance, tais como o nível socioeconómico e a inteligência. Nesta linha de abordagem, explorámos os efeitos de variáveis influentes do desempenho académico fora do contexto musical, reportando-nos ao nível socioeconómico, à inteligência e às dimensões cognitivo-motivacionais (motivação, expectativas de autoeficácia e atribuições causais), destacando o poder preditivo da inteligência, seguido do nível socioeconómico e da motivação. Por fim, referimo-nos à interação entre música e encéfalo por meio das temáticas da plasticidade neural estrutural e funcional, do efeito da aprendizagem e performance musicais, da cognição musical e domínios não musicais, bem como dos fatores genéticos; sublinhamos a possibilidade de ligações entre a cognição musical e os domínios espacial e matemático. Numa segunda parte, apresentamos a investigação que desenvolvemos em contexto escolar com 112 alunos do 7º ano de escolaridade provenientes de 12 escolas do Ensino Básico. Nove são do Ensino Especializado de Música e três são do Ensino Regular. No total, as escolas enquadram-se nas zonas urbanas de Braga, Coimbra e Lisboa. O estudo possui carácter longitudinal e abrange três anos letivos, do 7º ao 9º anos de escolaridade. Após explanação dos objetivos, das hipóteses de investigação, da caracterização da amostra, da descrição dos instrumentos de avaliação e respetiva validação empírica, relatamos os resultados que encontrámos. Estes permitiram, por um lado, validar a hipótese de que os alunos submetidos ao ensino formal de música apresentam um desempenho matemático superior comparativamente aos alunos que não frequentaram este tipo de ensino (H1) e, por outro, sustentar que o número de anos de aprendizagem musical contribui para o aumento do desempenho matemático (H3). Sublinha-se, ainda, que os alunos de instrumento de teclado revelaram desempenho matemático mais elevado em relação aos seus pares que estudaram outros instrumentos. Já no que se refere ao poder preditivo do tipo de ensino (Ensino Especializado de Música vs. Ensino Regular), apurámos que a formação em música prevê melhores desempenhos a matemática; destaca-se que as variáveis em estudo, tais como o nível socioeconómico, a motivação, as expectativas de autoeficácia e a inteligência adicionam capacidade explicativa do desempenho matemático, sendo que a presença da aprendizagem musical perdeu aptidão preditiva apenas na presença da inteligência. Contudo, após controlo estatístico da inteligência, foi possível concluir que a aprendizagem musical mantém o poder preditivo no desempenho matemático (H2). Os resultados permitiram identificar em que tópicos e temas matemáticos relacionados com os elementos e conceitos musicais os alunos com aprendizagem musical apresentam melhores desempenhos, evidenciando-se os tópicos no âmbito da Geometria (H4). Observámos, também, que é possível prever o desempenho matemático a partir do raciocínio espacial dos alunos (H5). Finalmente, referimos as limitações, refletimos sobre as implicações que estes resultados poderão trazer no âmbito do ensino da música em Portugal e apontamos pistas conducentes ao desenvolvimento de investigações futuras.

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Vertical line arrays (VLA) are a widely used apparatus in underwater acoustics with applications in sonar prediction, underwater communications and acoustic tomography, among others. Recent developments in digital electronics and communications allow for off-the-shelf development of VLA systems, with a large number of embedded acoustic and non-acoustic sensors able to fulfill application requirements, as opposed to single or few receiver configurations available until only a few years ago. Very often, the flexibility in water column sampling is achieved by splitting the VLA into modules that can be assembled according to the application. Such systems can be deployed and recovered from small vessels with a shorthanded crew, and make it possible for research labs with reduced budgets and operational means (ships and manpower) to gain control over the whole development process, from data acquisition to post-processing.

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[author abstract] The field of hydrographic surveying is inherently important to achieving a true understanding of the world that underlies the vast bodies of water that cover the earth. In this study I will determine the uncertainties of depth estimates of the seafloor that relate to the survey design and sound velocity. The survey design and collection of sound velocity were all conducted of the coast of Vancouver Island, B.C. near the entrance of the Strait of Juan de Fuca. The assessment will show how the change in sound velocity over time will influence the bathymetric reading, if not corrected for. The differences in bathymetric depth readings will show a correlation to the changes in sound velocity.

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Environmental engineering is a core component of most construction and surveying undergraduate courses. It is generally accepted that students on these courses should have an understanding of thermal comfort, heat transfer, condensation, lighting, noise transmission and acoustics. Experiments are essential in developing students’ awareness and understanding of the underlying physical concepts which drive environmental engineering solutions. Traditionally these experiments have been conducted by students working in small groups in laboratories. However, increasing student numbers and, in particular, the growth in part time study, have placed significant additional demands on limited laboratory resources. The availability of reasonably priced, simple, hand-held equipment has made it possible for students to conduct experiments outside the confines of the laboratory. Furthermore, various professional software packages (some of which are freely available online) enable the resultant data to be further developed and analysed in conjunction with the conventional textbook approach. This paper examines these alternative approaches to the traditional laboratory experiment. An assessment is provided of the types of experiment which are both possible and appropriate, and the efficacy of these approaches is considered.

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Two novel effective-fourth-order (eighth-order) resonator based MASH (MultistAge noise SHaping) bandpass Σ-Δ modulators are introduced at the behavioural level and subsequently examined by simulations utilising the ALTA SPW environment. The considered bandpass configurations have in their loop filter a cascade of standard second-order resonator structures in order to achieve appropriate noise shaping. The quantisation noise in each stage is suppressed by feeding the error of each section into the input of the following stage. It is demonstrated in this paper that the quadruple effective-first-order cascade configuration has significantly better performance as well as conforming more closely with theory in comparison with the effective-second-order effective-second-order cascade. The superior performance of the former can be attributed to the cumulative effect of the multi-bit outputs as well as the presence of more notch filters.

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O trabalho foi desenvolvido na empresa Masterprojetos – soluções integradas, através da elaboração e desenvolvimento do projeto de estabilidade de um edifício de cinco pisos, em que um deles se encontra enterrado. Este edifício incorpora um bloco de habitação multifamiliar e um bloco de habitação unifamiliar e comércio. Tanto o edifício como a empresa estão localizados no Peso da Régua. O trabalho pode-se dividir em duas partes: Numa primeira parte estão descritas as funções desempenhadas e contextualizada a metodologia de trabalho. Nesta parte está ainda descrita a ferramenta de trabalho Cypecad, a qual não houve oportunidade de aprender a usar durante o meu percurso académico e desenvolveu-se capacidades de maneira autodidata. São ainda referidos alguns softwares disponíveis no mercado, para o mesmo ramo de atividade. Numa segunda parte encontram-se descritos os pressupostos considerados no pré-dimensionamento do edifício assim como os elementos utilizados para a formulação do modelo de cálculo. Estão ainda feitas algumas verificações analíticas para a validação do modelo tido em conta para o dimensionamento. Estabeleceu-se também uma comparação entre as soluções obtidas através do software Cypecad e através do cálculo analítico para uma laje maciça. No final estão descritas as conclusões que foram obtidas, das quais se salientam a atenção que é necessário ter, quando se utiliza softwares de cálculo automático, quanto à introdução de dados e soluções que se obtêm , assim como a poupança de tempo que este tipo de ferramenta proporciona. É de referir também neste ponto as oportunidades que o estágio me proporcionou, como a visita de alguns locais de obras, as atividades de medição e orçamento de obra e acompanhamento de projetos de outras especialidades como redes prediais, térmica, acústica e ITED (infra-estruturas de Telecomunicações em Edifícios).

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Ao longo desta dissertação é apresentada a legislação em vigor em Portugal relacionada com a acústica de edifícios, bem como as normas europeias existentes. Como caso de estudo optou-se por analisar um edifício recuperado no âmbito do programa de reabilitação urbana do Porto, incidindo o estudo experimental na realização de ensaios acústicos, avaliando e validando através dos mesmos as soluções construtivas preconizadas no projeto de execução do edifício. Assim, para cada uma das soluções construtivas, realizaram-se estimativas de acordo com diferentes métodos preconizados nas normas e na bibliografia da especialidade. Efetuou-se também a avaliação acústica do edifício através do método prescrito pelo Laboratório de Engenharia Civil (LNEC), a qual reverteu numa classificação de acordo com os parâmetros considerados, a qual é apresentada no presente trabalho.

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The recent developments on Hidden Markov Models (HMM) based speech synthesis showed that this is a promising technology fully capable of competing with other established techniques. However some issues still lack a solution. Several authors report an over-smoothing phenomenon on both time and frequencies which decreases naturalness and sometimes intelligibility. In this work we present a new vowel intelligibility enhancement algorithm that uses a discrete Kalman filter (DKF) for tracking frame based parameters. The inter-frame correlations are modelled by an autoregressive structure which provides an underlying time frame dependency and can improve time-frequency resolution. The system’s performance has been evaluated using objective and subjective tests and the proposed methodology has led to improved results.

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La version intégrale de cette thèse est disponible uniquement pour consultation individuelle à la Bibliothèque de musique de l’Université de Montréal.

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During 1990's the Wavelet Transform emerged as an important signal processing tool with potential applications in time-frequency analysis and non-stationary signal processing.Wavelets have gained popularity in broad range of disciplines like signal/image compression, medical diagnostics, boundary value problems, geophysical signal processing, statistical signal processing,pattern recognition,underwater acoustics etc.In 1993, G. Evangelista introduced the Pitch- synchronous Wavelet Transform, which is particularly suited for pseudo-periodic signal processing.The work presented in this thesis mainly concentrates on two interrelated topics in signal processing,viz. the Wavelet Transform based signal compression and the computation of Discrete Wavelet Transform. A new compression scheme is described in which the Pitch-Synchronous Wavelet Transform technique is combined with the popular linear Predictive Coding method for pseudo-periodic signal processing. Subsequently,A novel Parallel Multiple Subsequence structure is presented for the efficient computation of Wavelet Transform. Case studies also presented to highlight the potential applications.

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New mathematical methods to analytically investigate linear acoustic radiation and scattering from cylindrical bodies and transducer arrays are presented. Three problems of interest involving cylinders in an infinite fluid are studied. In all the three problems, the Helmholtz equation is used to model propagation through the fluid and the beam patterns of arrays of transducers are studied. In the first problem, a method is presented to determine the omni-directional and directional far-field pressures radiated by a cylindrical transducer array in an infinite rigid cylindrical baffle. The solution to the Helmholtz equation and the displacement continuity condition at the interface between the array and the surrounding water are used to determine the pressure. The displacement of the surface of each transducer is in the direction of the normal to the array and is assumed to be uniform. Expressions are derived for the pressure radiated by a sector of the array vibrating in-phase, the entire array vibrating in-phase, and a sector of the array phase-shaded to simulate radiation from a rectangular piston. It is shown that the uniform displacement required for generating a source level of 220 dB ref. μPa @ 1m that is omni directional in the azimuthal plane is in the order of 1 micron for typical arrays. Numerical results are presented to show that there is only a small difference between the on-axis pressures radiated by phased cylindrical arrays and planar arrays. The problem is of interest because cylindrical arrays of projectors are often used to search for underwater objects. In the second problem, the errors, when using data-independent, classical, energy and split beam correlation methods, in finding the direction of arrival (DOA) of a plane acoustic wave, caused by the presence of a solid circular elastic cylindrical stiffener near a linear array of hydrophones, are investigated. Scattering from the effectively infinite cylinder is modeled using the exact axisymmetric equations of motion and the total pressures at the hydrophone locations are computed. The effect of the radius of the cylinder, a, the distance between the cylinder and the array, b, the number of hydrophones in the array, 2H, and the angle of incidence of the wave, α, on the error in finding the DOA are illustrated using numerical results. For an array that is about 30 times the wavelength and for small angles of incidence (α<10), the error in finding the DOA using the energy method is less than that using the split beam correlation method with beam steered to α; and in some cases, the error increases when b increases; and the errors in finding the DOA using the energy method and the split beam correlation method with beam steered to α vary approximately as a7 / 4 . The problem is of interest because elastic stiffeners – in nearly acoustically transparent sonar domes that are used to protect arrays of transducers – scatter waves that are incident on it and cause an error in the estimated direction of arrival of the wave. In the third problem, a high-frequency ray-acoustics method is presented and used to determine the interior pressure field when a plane wave is normally incident on a fluid cylinder embedded in another infinite fluid. The pressure field is determined by using geometrical and physical acoustics. The interior pressure is expressed as the sum of the pressures due to all rays that pass through a point. Numerical results are presented for ka = 20 to 100 where k is the acoustic wavenumber of the exterior fluid and a is the radius of the cylinder. The results are in good agreement with those obtained using field theory. The directional responses, to the plane wave, of sectors of a circular array of uniformly distributed hydrophones in the embedded cylinder are then computed. The sectors are used to simulate linear arrays with uniformly distributed normals by using delays. The directional responses are compared with the output from an array in an infinite homogenous fluid. These outputs are of interest as they are used to determine the direction of arrival of the plane wave. Numerical results are presented for a circular array with 32 hydrophones and 12 hydrophones in each sector. The problem is of interest because arrays of hydrophones are housed inside sonar domes and acoustic plane waves from distant sources are scattered by the dome filled with fresh water and cause deterioration in the performance of the array.