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Numerical Investigation Into Sound Synthesis by Physical Modelling

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Release : 2018
Genre : Differential equations, Partial
Kind : eBook
Book Rating : /5 ( reviews)

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Book Synopsis Numerical Investigation Into Sound Synthesis by Physical Modelling by : Lethabo May Borole

Download or read book Numerical Investigation Into Sound Synthesis by Physical Modelling written by Lethabo May Borole. This book was released on 2018. Available in PDF, EPUB and Kindle. Book excerpt:

Numerical Sound Synthesis

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Author :
Release : 2009-09-03
Genre : Computers
Kind : eBook
Book Rating : 029/5 ( reviews)

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Book Synopsis Numerical Sound Synthesis by : Stefan Bilbao

Download or read book Numerical Sound Synthesis written by Stefan Bilbao. This book was released on 2009-09-03. Available in PDF, EPUB and Kindle. Book excerpt: Digital sound synthesis has long been approached using standard digital filtering techniques. Newer synthesis strategies, however, make use of physical descriptions of musical instruments, and allow for much more realistic and complex sound production and thereby synthesis becomes a problem of simulation. This book has a special focus on time domain finite difference methods presented within an audio framework. It covers time series and difference operators, and basic tools for the construction and analysis of finite difference schemes, including frequency-domain and energy-based methods, with special attention paid to problems inherent to sound synthesis. Various basic lumped systems and excitation mechanisms are covered, followed by a look at the 1D wave equation, linear bar and string vibration, acoustic tube modelling, and linear membrane and plate vibration. Various advanced topics, such as the nonlinear vibration of strings and plates, are given an elaborate treatment. Key features: Includes a historical overview of digital sound synthesis techniques, highlighting the links between the various physical modelling methodologies. A pedagogical presentation containing over 150 problems and programming exercises, and numerous figures and diagrams, and code fragments in the MATLAB® programming language helps the reader with limited experience of numerical methods reach an understanding of this subject. Offers a complete treatment of all of the major families of musical instruments, including certain audio effects. Numerical Sound Synthesis is suitable for audio and software engineers, and researchers in digital audio, sound synthesis and more general musical acoustics. Graduate students in electrical engineering, mechanical engineering or computer science, working on the more technical side of digital audio and sound synthesis, will also find this book of interest.

Digital Sound Synthesis by Physical Modeling Using the Functional Transformation Method

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Release : 2012-09-14
Genre : Mathematics
Kind : eBook
Book Rating : 006/5 ( reviews)

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Book Synopsis Digital Sound Synthesis by Physical Modeling Using the Functional Transformation Method by : Lutz Trautmann

Download or read book Digital Sound Synthesis by Physical Modeling Using the Functional Transformation Method written by Lutz Trautmann. This book was released on 2012-09-14. Available in PDF, EPUB and Kindle. Book excerpt: This book considers signal processing and physical modeling meth ods for sound synthesis. Such methods are useful for example in mu sic synthesizers, computer sound cards, and computer games. Physical modeling synthesis has been commercialized for the first time about 10 years ago. Recently, it has been one of the most active research topics in musical acoustics and computer music. The authors of this book, Dr. Lutz Trautmann and Dr. Rudolf Rabenstein, are active researchers and inventors in the field of sound synthesis. Together they have developed a new synthesis technique, called the functional transformation method, which can be used for pro ducing musical sound in real time. Before this book, they have published over 20 papers on the topic in journals and conference proceedings. In this excellent textbook, the results are combined in a single volume. I believe that this will be considered an important step forward for the whole community.

Nonlinear Vibrations of Thin Rectangular Plates

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Release : 2014
Genre :
Kind : eBook
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Book Synopsis Nonlinear Vibrations of Thin Rectangular Plates by : Michele Ducceschi

Download or read book Nonlinear Vibrations of Thin Rectangular Plates written by Michele Ducceschi. This book was released on 2014. Available in PDF, EPUB and Kindle. Book excerpt: Thin plate vibrations display a rich and complex dynamics that ranges from linear to strongly nonlinear regimes when increasing the vibration amplitude with respect to the thickness. This thesis is concerned with the development of a numerical code able to simulate without restrictions this large spectrum of dynamical features, described by the von Kármán equations, in the case of flat, homogeneous plates presenting a rectangular geometry. The main application of such a code is to produce gong-like sounds, in the context of sound synthesis by physical modelling. For that, a modal approach is used, in order to reduce the original Partial Differential Equations to a set of couped Ordinary Differential Equations. An energy-conserving, second-order accurate time integration scheme is developed in order to yield a stability condition. The most appealing features of the modal scheme are its accuracy and the possibility of implementing a rich loss mechanism by selecting an appropriate damping factor for each one of the modes. The sound produced by the numerical code is systematically compared to another numerical technique based on Finite Difference techniques. Fundamental aspects of the physics of nonlinear vibrations are also considered in the course of this work. When a plate vibrates in a weakly nonlinear regime, modal couplings produce amplitude-dependent vibrations, internal resonances, instabilities, jumps and bifurcations. The modal scheme is used to construct and analyse the nonlinear response of the plate in the vicinity of its first eigenfrequencies, both in free and forced-damped vibrations, showing as a result the effect of damping and forcing on the nonlinear normal modes of the underlying Hamiltonian system. When plates vibrate in a strongly nonlinear regime, the most appropriate description of the dynamics is given in terms of the statistical properties of the system, because of the vast number of interacting degrees-of-freedom. Theoretically, this framework is offered by the Wave Turbulence theory. Given the large amount of modes activated in such vibrations, a Finite Difference, energy-conserving code is preferred over the modal scheme. Such a scheme allows to produce a cascade of energy including thousands of modes when the plate is forced sinusoidally around one of its lowest eigenfrequencies. A statistical interpretation of the outcome of the simulation is offered, along with a comparison with experimental data and other numerical results found in the literature. In particular, the effect of the pointwise forcing as well as geometrical imperfections of the plates are analysed.

Digital Sound Synthesis by Physical Modeling Using the Functional Transformation Method

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Author :
Release : 2012-12-06
Genre : Mathematics
Kind : eBook
Book Rating : 494/5 ( reviews)

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Book Synopsis Digital Sound Synthesis by Physical Modeling Using the Functional Transformation Method by : Lutz Trautmann

Download or read book Digital Sound Synthesis by Physical Modeling Using the Functional Transformation Method written by Lutz Trautmann. This book was released on 2012-12-06. Available in PDF, EPUB and Kindle. Book excerpt: This book considers signal processing and physical modeling meth ods for sound synthesis. Such methods are useful for example in mu sic synthesizers, computer sound cards, and computer games. Physical modeling synthesis has been commercialized for the first time about 10 years ago. Recently, it has been one of the most active research topics in musical acoustics and computer music. The authors of this book, Dr. Lutz Trautmann and Dr. Rudolf Rabenstein, are active researchers and inventors in the field of sound synthesis. Together they have developed a new synthesis technique, called the functional transformation method, which can be used for pro ducing musical sound in real time. Before this book, they have published over 20 papers on the topic in journals and conference proceedings. In this excellent textbook, the results are combined in a single volume. I believe that this will be considered an important step forward for the whole community.

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