Many systems featuring nonlinearities and delay-free loops are of interest in digital audio, particularly in virtual analog and physical modeling applications. Many of these systems can be posed as systems of implicitly related ordinary differential equations. Provided each equation in the network is itself an explicit one, straightforward numerical solvers may be employed to compute the output of such systems without resorting to linearization or matrix inversions for every parameter change. This is a cheap and effective means for synthesizing delay-free, nonlinear systems without resorting to large lookup tables, iterative methods, or the insertion of fictitious delay and is therefor suitable for real-time applications. Several examples a...
A method for solving filter networks made of one-dimensional linear and nonlinear filters is present...
Sounds that come from physical sources are naturally represented by differential equations in time. ...
Sounds that come from physical sources are naturally represented by differential equations in time. ...
Many systems featuring nonlinearities and delay-free loops are of interest in digital audio, particu...
Nonlinear acoustic systems are often described by means of nonlinear maps acting as instantaneous co...
Nonlinear acoustic systems are often described by means of nonlinear maps acting as instantaneous co...
Modal methods are a long-established approach to physical modeling sound synthesis. Projecting the e...
Modal methods are a long-established approach to physical modeling sound synthesis. Projecting the e...
This paper presents a new method for sound synthesis based upon non-linear dynamics. The procedure i...
We present a VLSI approach to the generation of musical sounds. This approach allows the generation...
We present a VLSI approach to the generation of musical sounds. This approach allows the generation...
Many physical models of sustained musical instruments (strings, brass, reeds, flutes and voices) hav...
cote interne IRCAM: Rodet93a/National audienceMany physical models of sustained musical instruments ...
A method for solving filter networks made of one-dimensional linear and nonlinear filters is present...
A method for solving filter networks made of one-dimensional linear and nonlinear filters is present...
A method for solving filter networks made of one-dimensional linear and nonlinear filters is present...
Sounds that come from physical sources are naturally represented by differential equations in time. ...
Sounds that come from physical sources are naturally represented by differential equations in time. ...
Many systems featuring nonlinearities and delay-free loops are of interest in digital audio, particu...
Nonlinear acoustic systems are often described by means of nonlinear maps acting as instantaneous co...
Nonlinear acoustic systems are often described by means of nonlinear maps acting as instantaneous co...
Modal methods are a long-established approach to physical modeling sound synthesis. Projecting the e...
Modal methods are a long-established approach to physical modeling sound synthesis. Projecting the e...
This paper presents a new method for sound synthesis based upon non-linear dynamics. The procedure i...
We present a VLSI approach to the generation of musical sounds. This approach allows the generation...
We present a VLSI approach to the generation of musical sounds. This approach allows the generation...
Many physical models of sustained musical instruments (strings, brass, reeds, flutes and voices) hav...
cote interne IRCAM: Rodet93a/National audienceMany physical models of sustained musical instruments ...
A method for solving filter networks made of one-dimensional linear and nonlinear filters is present...
A method for solving filter networks made of one-dimensional linear and nonlinear filters is present...
A method for solving filter networks made of one-dimensional linear and nonlinear filters is present...
Sounds that come from physical sources are naturally represented by differential equations in time. ...
Sounds that come from physical sources are naturally represented by differential equations in time. ...