Abstract:
An acoustic processing system for audio signal processing includes a first apparatus including a first memory that stores a first parameter for the audio signal processing and a user interface that receives an operation for changing the first parameter, a second apparatus including a second memory that stores a second parameter synchronized with the first parameter and a first CPU that performs system control, and a third apparatus including a second CPU that performs the audio signal processing. The first CPU sends, to the third apparatus, control information for controlling the audio signal processing based on the second parameter, and the second CPU receives the control information, and performs the audio signal processing based on the control information.
Abstract:
When controlling values of a plurality of parameters in a predetermined device according to an operation by a user, values of parameters to be controlled are displayed in an array along an item axis on a parameter editing screen, an operation by the user to the parameter editing screen is detected, and when an operation to trace the screen in a direction of the item axis from a certain position is detected, a sequential control is performed, sequentially according to progress of the operation, to temporarily change to a specific value a value of each parameter corresponding to a position in the item axis direction where the trace operation is being performed.
Abstract:
Sound device receives a first sound signal from a first sound processor, generates a second sound signal based on the first sound signal, and transmits the second sound signal to a second sound processor. The second sound processor performs signal processing to the second sound signal to generate a third sound signal. The sound device receives the third sound signal from the second sound processor, checks a state of the second sound processor based on a signal received from the second sound processor, transmits a fourth sound signal based on the third sound signal to the first sound processor when determining that the state of the second sound processor is normal, and generates a fifth sound signal based on the first sound signal or the second sound signal to transmit it to the first sound processor when determining that the state of the second sound processor is abnormal.
Abstract:
A library stores a plurality of presets, each of the preset being a parameter set including a plurality of parameters defining operation of a channel. When an operation to open the library is performed in a setting screen of a processing block of a selected channel, a library screen of the certain processing block is opened. A list of the plurality of presets and a block recall button are displayed on the library screen. When a user selects one preset from the list and operates the block recall button, only a parameter sub-set of the certain processing block is recalled from among the selected preset.
Abstract:
A fader level set for a fader of a channel is displayed at a channel level display section in a channel screen by, for example, a length of a bar, and a channel level indicating level of output from the channel is overlay-displayed by an indicator on the channel level display section at a position corresponding to the level to be displayed. It is thereby possible to compare the fader level set for the fader of the channel and the channel level indicating level of output from the channel by checking the channel level display section in the channel screen.
Abstract:
An audio signal processing method for a mixing apparatus including a plurality of channels, the audio signal processing method includes selecting at least a first channel among the plurality of channels, inputting an audio signal of the selected first channel, specifying setting data to be set to the mixing apparatus, based on time-series sound volume data for the first channel, or data on a second channel different from the first channel, among the plurality of channels, and outputting the specified setting data.
Abstract:
An equalizer setting device includes a category information acquisition unit configured to acquire category information indicating a category set for a signal processing channel; and a unit configured to display, on a display unit, at least one of a display element indicating a frequency range corresponding to the category set for the signal processing channel or a display element indicating a distinctive frequency band corresponding to the category.
Abstract:
A mixer includes a plurality of channel strips to which are variably allocated respective objects of operation, and a memory of the mixer stores layer data comprising information that, for each of the channel strips, designates a channel or a channel group as an object of operation of the channel strip, or designates the channel strip as a deploying channel strip for individually deploying thereto any one of the channels belonging to a given group. When objects of operation are to be allocated to the individual channel strips, no channel or group is allocated to each deploying channel strip, and a setting is made to the effect that the channel strip is to be used for a channel deploying purpose. In response to a deploying instruction of a given group, individual channels belonging to the given group are deployed to the deploying channel strips.
Abstract:
A mixer includes a plurality of channel modules, and audio signals having processed in the individual channel modules are output from a main output. A temporary channel module is created and made usable in response to a preview start instruction for previewing a desired one of the channel modules as a preview-object channel module. The same audio signal as input to the preview-object channel module is input to the temporary channel module. The temporary channel module performs signal processing on the input audio signal independently of the preview-object channel module, and the audio signal having been subjected to the signal processing is output to a monitor output. Thus, a user is allowed to change a signal processing parameter value to be applied to an audio signal and preview the changed result, without influencing the main output.
Abstract:
A first mode (one-knob off mode) and a second mode (one-knob on mode) are provided as modes for setting parameters. In the first mode, individual elements corresponding to respective parameters of a parameter set are displayed in an operable state, allowing setting of individual parameters. In the second mode, the individual elements are displayed in a non-operable state, and one-element is displayed in an operable state, and a plurality of parameters of the parameter set are controlled by operating the one-element. At the time of switching from the first mode to the second mode, the parameter set is initialized.