Patent classifications
G10H2210/155
Techniques for controlling the expressive behavior of virtual instruments and related systems and methods
Techniques for automatically controlling the expressive behavior of a virtual musical instrument by analyzing an audio recording of a live musician are provided. In some embodiments, an audio recording may be analyzed at various points along the timeline of the recording to derive corresponding values of a parameter that is in some way representative of the musical expression of the live musician. Values of control parameters that control one or more aspects of the audio playback of a virtual instrument may then be generated based on the determined values of the expression parameter. Values of control parameters may be provided to a sample library to control how a digital score selects and/or plays back samples from the library, and/or values of the control parameters may be stored with the digital score for subsequent playback.
METHOD AND DEVICE FOR DETERMINING MIXING PARAMETERS BASED ON DECOMPOSED AUDIO DATA
The present invention provides a method for processing audio data, comprising the steps of providing a first audio track of mixed input data, said mixed input data representing an audio signal containing a plurality of different timbres, decomposing the mixed input data to obtain decomposed data representing an audio signal containing at least one, but not all, of the plurality of different timbres, providing a second audio track, analyzing audio data, including at least the decomposed data, to determine at least one mixing parameter, and generating an output track based on the at least one mixing parameter, said output track comprising first output data obtained from the first audio track and second output data obtained from the second audio track.
METHOD AND DEVICE FOR PROCESSING, PLAYING AND/OR VISUALIZING AUDIO DATA, PREFERABLY BASED ON AI, IN PARTICULAR DECOMPOSING AND RECOMBINING OF AUDIO DATA IN REAL-TIME
The present invention relates to a method for processing and playing audio data comprising the steps of receiving mixed input data and playing recombined output data. Furthermore, the invention relates to a device for processing and playing audio data, preferably DJ equipment, comprising an audio input unit for receiving a mixed input signal, a recombination unit and a playing unit for playing recombined output data. In addition, the present invention relates to a method and a device for representing audio data, i.e. on a display.
INFORMATION PROCESSING METHOD AND INFORMATION PROCESSING SYSTEM
An information processing system includes at least one memory storing a program and at least one processor. The at least one processor implements the program to input a piece of sound source data representative of a sound source, a piece of style data representative of a performance style, and synthesis data representative of sounding conditions into a synthesis model generated by machine learning, and to generate, using the synthesis model, feature data representative of acoustic features of a target sound of the sound source to be generated in the performance style and according to the sounding conditions, and to generate an audio signal corresponding to the target sound using the generated feature data.
Apparatus and methods for generating music
A guitar pedalboard for creating a loop includes a touch screen display for displaying a plurality of tracks of a loop. The touch screen display can be used to adjust a parameter of each track, and the loop. A plurality of footswitches corresponding to the plurality of tracks can be used to independently record and play each track of the loop.
TRANSITION FUNCTIONS OF DECOMPOSED SIGNALS
A device for processing audio signals, including: first and second input units providing first and second input signals of first and second audio tracks, a decomposition unit to decompose the first input audio signal to obtain a plurality of decomposed signals, a playback unit configured to start playback of a first output signal obtained from recombining at least a first decomposed signal at a first volume level with a second decomposed signal at a second volume level, such that the first output signal substantially equals the first input signal, and a transition unit for performing a transition between playback of the first output signal and playback of a second output signal obtained from the second input signal. The transition unit has a volume control section adapted for reducing the first and second volume levels according to first and second transition functions.
INFORMATION PROCESSING METHOD, INFORMATION PROCESSING DEVICE AND A NON-TRANSITORY STORAGE MEDIUM
An information processing method implemented by a computer, the information processing method including, generating pedal data representing an operation period of a pedal that extends sound production by key depression, from playing data representing a playing content.
Pedalboard for housing musical effect components
The disclosed embodiments relate to a pedalboard configured to house a musical effect component. A musical effect component housing may be configured to house a musical effect component and be disposed in a cavity of the pedalboard without the use of an adhesive fastener. The musical effect component housing may include a first plate, a second plate, and standoffs connecting the first plate and the second plate. A musical effect component may be disposed between the first plate and second plate to secure the musical effect component. The first plate may include an aperture formed within the first plate configured to dispose a portion of a musical effect component and a rail formed on both a first end and a second end of the first plate configured to engage the musical effect component housing with the pedalboard.
SETTING DEVICE, OPERATING ELEMENT AND SETTING METHOD
A setting device includes an operating element and a light-emitting device. The operating element is used for specifying a setting value of a first parameter by moving the operating element within a first region. The light-emitting device includes a second region that is disposed inside the first region. The second region includes a light-emitting area that changes according to the setting value. The operating element covers part of the second region. The operating element is an operating element for specifying a setting value of a first parameter related to sound by moving the operating element relative to a housing. The operating element includes a first portion and a second portion. The first portion blocks light. The second portion transmits light from a first surface of the operating element to a second surface facing the first surface.
Musical instrument special effects device
A musical instrument special effects device, comprising a special effects unit connected by wire between the musical instrument and an output device, where the unit is operatively arranged to selectively produce at least one of a plurality of preprogrammed special audio effects; and a controller is operatively arranged to wirelessly control the special effects unit.