Abstract:
Methods for using at least one musical instrument mute for electronic modification of sound emitted from a musical instrument. A mute body is positionable within a bell or horn of the musical instrument, and the body has a proximal end portion and is configured to at least partially occlude the bell or horn. A microphone is positioned at the proximal end portion of the mute body and is configured to transduce a sound produced by the musical instrument. A speaker is positioned in the mute body as well. A microcontroller is configured to receive a signal from the microphone and to electronically modify the sound of the instrument when emitted through the speaker. Some mutes also provide a communication transceiver, sensors, and input devices to remotely control and manipulate sound produced by the mute.
Abstract:
In one example, a device for creating an event-driven audio file may comprise a processor and an audio engine to, when executed by the processor, receive a configuration file designating a number of device-external data feeds and create an event-driven audio file based on the configuration file. In an example, a method of creating event-driven audio may comprise creating, with a processor, a configuration file, the configuration file comprising links defining device-external data feeds and with an audio engine, parsing the configuration file, and, based on the data defined in the configuration file, creating an event-driven audio file.
Abstract:
A musical instrument mute, a mute body, a microphone, a speaker, and a microcontroller for electronic modification of sound emitted from a musical instrument. A mute body is positionable within a bell or horn of the musical instrument, and the body has a proximal end portion and is configured to at least partially occlude the bell or horn. A microphone is positioned at the proximal end portion of the mute body and is configured to transduce a sound produced by the musical instrument. A speaker is positioned in the mute body as well. A microcontroller is configured to receive a signal from the microphone and to electronically modify the sound of the instrument when emitted through the speaker. Some mutes also provide a communication transceiver, sensors, and input devices to control and manipulate sound produced by the mute.
Abstract:
A multimedia apparatus, a music composing method thereof, and a song correcting method thereof are provided. A music composing method includes setting a type of musical instrument digital interface (MIDI) data according to a user's input, sensing a user interaction, analyzing the sensed user interaction and determining a beat and a pitch of the user interaction, and generating MIDI data using the set type of MIDI data and the determined beat and pitch.
Abstract:
Example methods and systems for determining media files based on activity levels are described. An example method includes receiving information indicative of a first speed of the computing device, and receiving information indicative of a geography of a location of the computing device. The method further includes determining, from a plurality of media files tagged with respective tempo identifiers, a first media file based on the geography of the location of the computing device and also having a tempo that substantially matches to the first speed of the computing device. The method includes providing an indication of the first media file to a media player, and based on a change in the first speed of the computing device to a second speed, determining from the plurality of media files tagged with respective tempo identifiers, a second media file having a tempo that substantially matches to the second speed.
Abstract:
Sensor data generated by one or more sensors associated with a digital content playback device can be used to identify that a modification to a current audio content item being supplied to a user by the digital content playback device is indicated. The current audio content item can be modified accordingly. Methods, systems, articles of manufacture and the like are also described.
Abstract:
A user may freely generate a vehicle driving sound using a mounted mobile terminal so as to generate various types of driving sounds through a speaker. A vehicle includes a setting unit configured to set response characteristics of a vehicle driving sound for at least one of a plurality of pieces of vehicle state information and set a section-specific volume of the vehicle driving sound for at least one of a plurality of set response characteristics including revolutions per minute (RPM) and a controller configured to control an output of the vehicle driving sound generated according to a setting of the setting unit and control sound transfer characteristics unique to the vehicle to be reflected when the vehicle driving sound is generated and output.
Abstract:
An electronic device executing a music playing application is provided. The electronic device includes a communication module configured to receive control information from a second electronic device connected through a wireless communication when the music playing application is executed, a processor configured to process the received control information to be applied to music data requested to be reproduced according to the execution of the music playing application, and an audio module configured to output the music data processed by the processor.
Abstract:
Devices, systems, and methods that make music in response to be contacted by a stream of liquid are disclosed. A music making device may include a sensor to detect when a stream of liquid is substantially in contact with the sensor. The sensor may produce an indicator signal at or around the time the liquid substantially contacts the sensor. A circuit may generate an electrical pulse in response to detecting the indicator signal. The electrical pulse may be coupled to a speaker which converts the electrical pulse into sound.
Abstract:
A method for composing a musical is carried out by identifying spectral data characterizing a selected chemical composition, said spectral data representing a plurality of transmittance peaks for the selected chemical composition in a spectral range (e.g., a wave number range), including identifying the spectral range and transmittance values and positions of a sequence of transmittance peaks within the spectral range; assigning a melody duration to the identified spectral range; generating a sequence of musical tones by assigning the identified transmittance values to musical tones to the sequence of transmittance peaks; and assigning a duration to each musical tone. A computer-readable medium includes code for carrying out the method on a general-purpose computer.