CN102780966B - A kind of speaker system adjustment method - Google Patents

A kind of speaker system adjustment method Download PDF

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CN102780966B
CN102780966B CN201210282101.3A CN201210282101A CN102780966B CN 102780966 B CN102780966 B CN 102780966B CN 201210282101 A CN201210282101 A CN 201210282101A CN 102780966 B CN102780966 B CN 102780966B
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audio amplifier
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CN102780966A (en
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李志雄
邓俊曦
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Guangzhou Leafun Culture Science and Technology Co Ltd
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Abstract

The present invention relates to speaker control technology, specifically a kind of speaker system adjustment method.The method includes speaker system model establishment step, virtual input processing parameter modification step, and virtual output processing parameter amendment step, wherein this speaker system model includes some sound box model.Each sound box model is corresponding with an entity active audio amplifier, and including virtual input processing parameter and virtual output processing parameter, this virtual input processing parameter includes one or more virtual DSP data, and each DSP data include the DSP parameter that multilamellar kind is identical.The most no matter each entity DSP of active audio amplifier comprises how many layers of DSP parameter, and the input processing parameter multilamellar that this technology can realize system level is adjustable, thus simplifies the debugging correct operation of speaker system, improves debugging efficiency, and safeguards system debugging effect.

Description

A kind of speaker system adjustment method
Technical field
The present invention relates to speaker control technology, specifically a kind of speaker system adjustment method.
Background technology
The audio amplifier (also referred to as active audio amplifier) of embedded digital signal processor (DSP) and power amplifier can carry out the operations such as EQ adjustment, time delay, amplitude limit and frequency dividing by digital signal processor to input audio signal, makes audio amplifier reach optimum Working.
As follows to the conventional method of adjustment of the sound system of active audio amplifier composition at present: (1) first adjusts input processing parameter and output processing parameter (the above audio amplifier of two divided-frequency), the such as EQ, time delay, amplitude limit etc. of the digital signal processor of single audio amplifier;(2) effect of sound system is tested, refine test data by rule of thumb and further and the digital signal processor parameter of relevant audio amplifier is adjusted;(3) again the whole structure of sound system is tested, according to test result, again the digital signal processor parameter of active audio amplifier is adjusted.It is to say, for realizing preferably system acoustic effect, need, constantly according to overall acoustic efficiency, repeatedly the parameter of the digital signal processor of each audio amplifier to be adjusted.
The debugging bearing calibration of this sound system (speaker system) there is problems in that
(1) system debug correct operation is loaded down with trivial details, complicated, and workload is big.A lot of owing to affecting the factor of system acoustic effect, adjust which audio amplifier, and adjust which parameter of audio amplifier, there is no a fixed pattern, can only engineering staff can only audio amplifier or region-by-region (audio amplifier in region is also to be adjusted one by one) be adjusted one by one, again each audio amplifier is adjusted further according to test result after adjustment, i.e. needs be repeated continuously the acoustic efficiency of measurement system and adjust each audio amplifier, can be only achieved preferably system sound effect.The original workload that audio amplifier was adjusted one by one is the biggest, and also needs to now to repeat many times that (number of times is unknown, and spent time and required workload are the hugest.For layman, the task that sound system debugging correction has been practically impossible to.
(2) system is even across repeatedly adjusting correction, but still it cannot be guaranteed that can obtain preferably acoustic efficiency.As it has been described above, the factor affecting acoustic efficiency is a lot, many times, for time-consuming, engineering staff the most rule of thumb judges which should adjust which parameter of which audio amplifier.Even if engineering staff's audio amplifier one by one is adjusted, but owing to sound system is a systematic engineering of business, can influence each other between each audio amplifier, and engineering staff is being adjusted each audio amplifier when, it is difficult to prediction and judges the audio amplifier after adjusting, other audio amplifiers can be produced what impact (or what impact other audio amplifiers can produce to this audio amplifier), therefore can only estimate by rule of thumb.Therefore, this debugging bearing calibration, much less ordinary person, even for the personnel through professional training, also cannot ensure that sound can obtain gratifying system sound effect.
Therefore simplify sound system audio amplifier debugging correct operation, improve debugging efficiency, and safeguards system debugging effect is a technical problem urgently to be resolved hurrily.Solve this technical barrier, for the development and application promoting Specialty Hi-Fi technology, there is important function.
Summary of the invention
Present invention solves the technical problem that and be to provide a kind of speaker system adjustment method, to simplify the debugging correct operation of speaker system, improve debugging efficiency, and safeguards system debugging effect.
For solving above-mentioned technical problem, the technical solution used in the present invention is:
A kind of speaker system adjustment method, this speaker system includes multiple active audio amplifier, and this speaker system is provided with one or more array group, and each array group includes one or more active audio amplifier, being additionally provided with one or more system group, each system group includes one or more active audio amplifier;Each active audio amplifier includes signal input unit, digital signal processor, multiple power amplifier unit and multiple loudspeaker unit, and each power amplifier unit is connected with the loudspeaker unit matched;
This signal input unit is for receiving the audio signal of the outside input of audio amplifier, and transmits to this digital signal processor;
This digital signal processor is provided with data memory module, and in this data memory module, storage has one group of input processing parameter and corresponding with each power amplifier unit respectively many groups output processing parameters,
This group input processing parameter includes that multiple entity DSP data, each entity DSP packet contain an audio amplifier layer DSP parameter corresponding with the kind of this entity DSP data, and this audio amplifier layer DSP parameter is the DSP parameter arranged for this active audio amplifier;And at least entity DSP data also include an array layer DSP parameter identical with its audio amplifier layer DSP parameter kind and system layer DSP parameter, wherein, this array layer DSP parameter is each audio amplifier member for array group belonging to this active audio amplifier and the DSP parameter that arranges;This system layer DSP parameter is each audio amplifier member for this active audio amplifier said system group and arranges;Often group output processing parameter includes one or more DSP parameter;
This digital signal processor also includes input processing module and multiple output processing module,
This input processing module includes the sound effect processor of multiple series connection, each sound effect processor respectively with each DSP parameter one_to_one corresponding of this group input processing parameter, each sound effect processor is for carrying out corresponding signal processing operations according to corresponding DSP parameter to audio signal;This input processing module also includes signal shunt module, and it for being divided into the multiple-channel output audio signal corresponding with each power amplifier unit by the audio signal after this resume module;
Each output processes the corresponding road output audio signal of mould, each output processing module includes the sound effect processor of multiple series connection, each sound effect processor exports each DSP parameter one_to_one corresponding of processing parameter with a group corresponding to this road output audio signal respectively, and each sound effect processor is for processing a corresponding road output audio signal according to corresponding DSP parameter;
Each power amplifier unit for receiving the corresponding road output audio signal processed through corresponding output processing module, and Jiang Gai mono-tunnel audio signal be amplified processing after transmit to corresponding loudspeaker unit;
This adjustment method comprises the following steps:
Step S10: set up speaker system model, this speaker system model includes multiple sound box model, each sound box model is corresponding with an active audio amplifier in speaker system, each sound box model includes one group of virtual input processing parameter and the virtual output processing parameter of many groups, this group virtual input processing parameter includes multiple virtual DSP data, each virtual DSP data include an audio amplifier layer DSP parameter, an array layer DSP parameter and a system layer DSP parameter, often organize virtual output processing parameter and include multiple DSP parameter;Each virtual DSP data of sound box model respectively with each entity DSP data one_to_one corresponding of active audio amplifier, often organize each DSP parameter one_to_one corresponding of one group of corresponding with active audio amplifier respectively output processing parameter of each DSP parameter of virtual output processing parameter;
Step S20: if selecting to revise virtual input processing parameter, perform step S30;If selecting to revise virtual output processing parameter, perform step S30;
Step S30: if selecting to repair audio amplifier layer DSP parameter, perform step S31;If selecting amendment array layer DSP parameter, perform step S32;
Step S31: the audio amplifier layer DSP parameter that amendment is selected, and amended data are preserved to sound box model corresponding audio amplifier layer DSP parameter belonging to this audio amplifier layer DSP parameter;Perform step S34;
Step S32: the array layer DSP parameter that amendment is selected, if active audio amplifier corresponding to sound box model belonging to this array layer DSP parameter is not belonging to the audio amplifier member of arbitrary array group, if now this array layer DSP parameter can be modified, the most amended data will preserve to this sound box model corresponding array layer DSP parameter, perform step S34;If active audio amplifier corresponding to sound box model belonging to this array layer DSP parameter belongs to the audio amplifier member of a certain array group, then amended data will preserve to the array layer DSP parameter of each sound box model corresponding to this array group respectively, perform step S34;
Step S33: the system layer DSP parameter that amendment is selected, if active audio amplifier corresponding to sound box model belonging to this system layer DSP parameter is not belonging to the audio amplifier member of any system group, if now this system layer DSP parameter can be modified, the most amended data will preserve to this sound box model corresponding system layer DSP parameter, perform step S34;If active audio amplifier corresponding to sound box model belonging to this system layer DSP parameter belongs to the audio amplifier member of a certain system group, then amended data will preserve to the system layer DSP parameter of each sound box model corresponding to this system group respectively, perform step S34;
Step S34: for the sound box model of virtual DSP data generation amendment:
If entity DSP packet corresponding to these virtual DSP data is containing audio amplifier layer DSP parameter, array layer DSP parameter and system layer DSP parameter, then in the corresponding DSP parameter in the DSP parameter synchronization changed in these virtual DSP data to correspondent entity DSP data;
If entity DSP data corresponding to these virtual DSP data only comprise audio amplifier layer DSP parameter, the most each layer DSP parameter superposition calculation of these virtual DSP data is obtained a new DSP parameter, and by the audio amplifier layer DSP parameter of this new DSP parameter synchronization to correspondent entity DSP data;
Perform step S20 or step S50;
Step S40: the DSP parameter of one group of virtual output processing parameter that amendment is selected, and amended data are preserved to sound box model corresponding DSP parameter belonging to this group virtual output processing parameter, simultaneously by the corresponding DSP parameter in this DSP parameter synchronization in this sound box model to corresponding active audio amplifier;Perform step S20 or step S50;
Step S50: terminate.
Compared with prior art, provide the benefit that:
The sound effect of whole sound system is if desired optimized by prior art, need each audio amplifier is adjusted the most repeatedly correction, but also belonging to this audio amplifier, how the acoustics of array group and whole sound system can change after the unpredictable indivedual audio amplifier of adjustment, add difficulty and the complexity of system debug correction, therefore to debug not only difficulty bigger for the sound system of prior art, very professional sound technique personnel are needed to operate, and the workload debugged is very big, and debugging effect also cannot ensure.
Speaker system adjustment method based on this technology, engineers and technicians can give up the traditional method accurately adjusting each audio amplifier, then by the basis of each audio amplifier of basic correction, in units of group, the audio amplifier member to each array group unifies debugging correction, the acoustics (transmission frequency characteristic) making each array group and whole sound system reaches the use requirement of system, optimize the overall acoustic efficiency of sound system to greatest extent, but the difficulty of sound system debugging and workload are greatly reduced.
This technology thinks deeply the debugging correction work of whole audio amplifier from the angle that system uses, both the self-characteristic of audio amplifier had been taken into full account, take into full account again between each audio amplifier of same array group, interactional factor between each array group of same system, by single audio amplifier DSP parameter adjustment, the parameter adjustment of array group DSP and system group DSP parameter adjustment, from audio amplifier itself, the DSP parameter of each audio amplifier is adjusted by two aspects of speaker array group (also add system layer in some technical scheme of this technology), this adjustment seems the most accurate, it is not that each audio amplifier can be debugged to optimum state, but but can obtain optimal system sound effect this just sound system actually used required.
Sum it up, this technology is possible not only to simplify the difficulty of sound system debugging correction, reduces workload, but also the system sound effect making us more being satisfied with can be obtained.
Accompanying drawing explanation
The structural representation of the active audio amplifier of Fig. 1 embodiment;
The digital signal processor architecture schematic diagram of the active audio amplifier of Fig. 2 embodiment;
The principle schematic of the digital signal processor of the active audio amplifier of Fig. 3 embodiment;
Fig. 4 is the flow chart of the speaker system adjustment method of embodiment.
Detailed description of the invention
Below in conjunction with the accompanying drawings embodiments of the invention are further described.
The speaker system of the speaker system adjustment method of the present embodiment includes multiple active audio amplifier, this speaker system is provided with one or more array group, each array group includes one or more active audio amplifier, is additionally provided with one or more system group, and each system group includes one or more active audio amplifier.The present embodiment uses active audio amplifier as described below.
As shown in Figure 1, this active audio amplifier includes signal input unit 11, digital signal processor 12, multiple power amplifier unit 13 and multiple loudspeaker unit 14, each power amplifier unit 13 is connected with the loudspeaker unit 14 matched, and loudspeaker unit 14 can be made up of one or more speakers.This signal input unit 11 is for receiving the audio signal of the outside input of audio amplifier, and transmits to this digital signal processor 12.As shown in Figure 2, this digital signal processor 12 is provided with data memory module 124, in this data memory module 124, storage has one group of input processing parameter and corresponding with each power amplifier unit 13 respectively many groups output processing parameters, and often group output processing parameter includes one or more DSP parameter.
This group input processing parameter includes multiple entity DSP data, and the kind of entity DSP data does not limit, and input processing parameter can comprise the entity DSP data of multiple identical type, it is also possible to comprise different multiple entity DSP data.
Each entity DSP packet contains an audio amplifier layer DSP parameter corresponding with the kind of this entity DSP data, this audio amplifier layer DSP parameter is the DSP parameter arranged for this active audio amplifier, and at least entity DSP data also include an array layer DSP parameter identical with its audio amplifier layer DSP parameter kind and system layer DSP parameter.This array layer DSP parameter is each audio amplifier member for array group belonging to this active audio amplifier and the DSP parameter that arranges, and this system layer DSP parameter is each audio amplifier member for this active audio amplifier said system group and arranges.
For sound box model, audio amplifier layer DSP parameter is the DSP parameter arranged for single sound box model, array layer DSP parameter is then the DSP parameter arranged for each sound box model associated with same array group, system layer DSP parameter is then the DSP parameter arranged for each sound box model associated with same system group, the DSP parameter that each sound box model i.e. associated with same system group is shared.The kind of each (each layer) DSP parameter that entity DSP packet contains is identical, assume that entity EQ packet is containing audio amplifier layer EQ parameter and array layer EQ parameter, so the DSP parameter kind of this audio amplifier layer EQ parameter and this array layer EQ parameter is all EQ parameter, the corresponding sound effect processor of each EQ parameter.
As in figure 2 it is shown, this digital signal processor 12 also includes input processing module 121(121) and multiple output processing module 123(123).This input processing module 121 includes the sound effect processor of multiple series connection, each sound effect processor respectively with each DSP parameter one_to_one corresponding of this group input processing parameter, each sound effect processor is for carrying out corresponding signal processing operations according to corresponding DSP parameter to audio signal;This input processing module 121 also includes signal shunt module 122(122), it is for being divided into the multiple-channel output audio signal corresponding with each power amplifier unit 13 by the audio signal after this module (i.e. input processing module 121) processes.
Each output processes the corresponding road output audio signal of mould, each output processing module 123 includes the sound effect processor of multiple series connection, each sound effect processor exports each DSP parameter one_to_one corresponding of processing parameter with a group corresponding to this road output audio signal respectively, and each sound effect processor is for processing a corresponding road output audio signal according to corresponding DSP parameter.
Each power amplifier unit 13 for receiving the corresponding road output audio signal processed through corresponding output processing module 123, and Jiang Gai mono-tunnel audio signal be amplified processing after transmit to corresponding loudspeaker unit 14.
In this technique, one DSP parameter is not meant to this DSP parameter only one of which numerical value, one DSP parameter is also likely to be and is made up of multiple (one group the most groups) numerical value, digital signal processor 12 performs corresponding signal processing (audio effect processing) operation according to a DSP parameter, to change the transmission frequency characteristic of audio amplifier.The most here " a DSP parameter ", it can be appreciated that be the one or more data required for certain signal processing operations, such as muting parameter and gain parameter have only to data, and EQ parameter then needs one group of data.In digital signal processor 12, a corresponding sound effect processor of DSP parameter.
Each sound effect processor of input processing module 121 is series connection, and series connection (execution) order of each sound effect processor can be determined by any-mode, it is also possible to is determined by some way.Wherein, the audio signal handled by sound effect processor made number one is directly from signal input unit 11;The follow-up audio signal handled by each sound effect processor processes through previous sound effect processor;Come a last sound effect processor and also need to the audio signal transmission after being processed to signal shunt module 122, signal shunt module 122 this audio signal is divided into the multiple-channel output audio signal corresponding with each power amplifier unit 13.
In this technique, for adjust single active audio amplifier DSP parameter (can be any type of DSP parameter) be referred to as audio amplifier layer DSP parameter, the i.e. data of this audio amplifier layer DSP parameter be this active audio amplifier exclusive, with other audio amplifiers share.This active audio amplifier can be adjusted by the audio amplifier layer DSP parameter of amendment active audio amplifier.
And the DSP parameter (being probably any type of DSP parameter) being used for adjusting the audio amplifier member characteristics of array group is referred to as array layer DSP parameter simultaneously, each audio amplifier member of the most same array group shares the data of this array layer DSP parameter.In array group, certain array layer DSP parameter of some audio amplifier member is modified, and the corresponding array layer DSP parameter of remaining audio amplifier member in the most same array group can be also identical numerical value by synchronous vacations.The characteristic of each active audio amplifier belonging to same array group can be adjusted, it is achieved the synchronization control of multiple audio amplifiers by the array layer DSP parameter of amendment active audio amplifier simultaneously.
Audio amplifier layer DSP parameter is relative concept with array layer DSP parameter, in the prior art, only has audio amplifier layer DSP parameter, therefore when system compensation, can only be adjusted by audio amplifier one by one in the input processing parameter of active audio amplifier.And this technology is by arranging the array group DSP parameter of association in each audio amplifier member of array group, if revising the array group DSP parameter of one of them audio amplifier member, the array group DSP parameter that so other audio amplifiers member of this array group is corresponding all can be by synchronous vacations (needing by controlling platform or control system realization), thus realize the adjustment of the synchronization of multiple audio amplifier, simplify difficulty and the complexity of speaker system correction.
Each audio amplifier member being referred to as system layer DSP parameter, i.e. same system group for adjusting the DSP parameter (being probably any type of DSP parameter) of the audio amplifier member characteristics of system group simultaneously shares the data of this system layer DSP parameter.In system group, certain system layer DSP parameter of some audio amplifier member is modified, then the correspondence system layer DSP parameter of remaining audio amplifier member in same system group can be also identical numerical value by synchronous vacations.The characteristic of each active audio amplifier belonging to same system group can be adjusted, it is achieved the synchronization control of multiple audio amplifiers by the system layer DSP parameter of amendment active audio amplifier simultaneously.
Why on the basis of array group, set up system group, allow for: speaker system is being carried out system debug timing, in addition to needing to debug the audio of each audio amplifier, also need to debug the audio of each audio amplifier group, and the audio of speaker total system, prior art either debugs audio amplifier, audio amplifier group or whole system, all could be adjusted to realize by audio amplifier one by one.This technology arranges array layer DSP parameter in active audio amplifier, although can realize the synchronization control of multiple audio amplifier, simplifies the debugging correct operation of audio amplifier group and ensures the Adjustment effect of speaker system.But only array layer DSP parameter can't realize unifying to adjust to the audio of whole speaker system from system level.For this, this technology input processing parameter in active audio amplifier further sets up system layer DSP parameter, thus realize the adjustment to speaker system integral sound effect, simplify the debugging correction work that speaker system is overall further, and ensure the debugging effect of speaker system further.
Therefore this technology is possible not only to realize the adjustment correction of single audio amplifier, the audio to each audio amplifier group and speaker system are overall can also be realized and be adjusted correction, thus simplify the adjustment correction work of whole sound system, and ensure to ensure last adjustment calibration result.
With reference to Fig. 3, the input processing parameter of the active audio amplifier of the present embodiment includes following one or more entity DSP data: input quiet data, input gain data, input time delay data, input reversed polarity data, input air attenuation compensation data, input compression sliced data, EQ data.
Often group output processing parameter includes part-frequency point parameter, and following one or more DSP parameters: exports BPPA parameter, output mute parameter, output gain parameters, exports EQ parameter, export delay parameter, exports reversed polarity parameter, output squeezing clipping parameter.
Corresponding with this, that each DSP parameter of the entity DSP data that input processing module 121 comprises with input processing parameter is comprised of active audio amplifier digital signal processor 12 is corresponding sound effect processor:
The each input muting parameter comprised for this input quiet data, corresponding sound effect processor is the quiet sound effect processor of input for audio signal carries out silence switch process according to this input muting parameter;
The each input gain parameter comprised for these input gain data, corresponding sound effect processor is the input gain sound effect processor for audio signal carries out input gain process according to this input gain parameter;
The each input time delay parameter comprised for these input time delay data, corresponding sound effect processor is the input time delay sound effect processor for audio signal carries out input time delay process according to this input time delay parameter;
The each input reversed polarity parameter comprised for these input reversed polarity data, corresponding sound effect processor is the input reversed polarity sound effect processor for audio signal carries out reversed polarity operation process according to this input reversed polarity parameter;
The each input air attenuation compensation parameter comprised for these input air attenuation compensation data, corresponding sound effect processor is the input air attenuation compensation sound effect processor for audio signal carries out attenuation of air compensation deals according to this input air attenuation compensation parameter;
The each input compression clipping parameter comprised for this input compression sliced data, corresponding sound effect processor is the input compression amplitude limit sound effect processor for audio signal is compressed amplitude limiting processing according to this input compression clipping parameter;
For each EQ parameter, corresponding sound effect processor is the EQ sound effect processor (EQ sound effect processor can use IIR second order filter) for audio signal is compressed amplitude limiting processing according to this EQ parameter;
Each output processing module 123 of digital signal processor 12 selectively includes the sound effect processor that corresponding one group output each DSP parameter of being comprised of processing parameter is corresponding:
Part-frequency point parameter for this group output processing parameter, corresponding sound effect processor is for a corresponding road output audio signal being carried out frequency-division filter process according to this part-frequency point parameter, the frequency dividing sound effect processor (frequency dividing sound effect processor can use FIR filter) that the frequency range of the audio signal obtained matches with corresponding power amplifier unit 13;
For each output BPPA parameter of this group output processing parameter, corresponding sound effect processor is the output BPPA sound effect processor for a corresponding road output audio signal carries out phase response adjustment process according to this output BPPA parameter;
For each output mute parameter of this group output processing parameter, corresponding sound effect processor is the output mute sound effect processor for a corresponding road output audio signal carries out silence switch process according to this muting parameter;
For each output gain parameters of this group output processing parameter, corresponding sound effect processor is the output gain sound effect processor for a corresponding road output audio signal carries out gain process according to this output gain parameters;
For each output EQ parameter of this group output processing parameter, corresponding sound effect processor is the output EQ sound effect processor for a corresponding road output audio signal carries out EQ process according to this output EQ parameter;
For each output delay parameter of this group output processing parameter, corresponding sound effect processor is the output time delay sound effect processor for a corresponding road output audio signal carries out delay process according to this output delay parameter;
For each output reversed polarity parameter of this group output processing parameter, corresponding sound effect processor is the output reversed polarity sound effect processor for a corresponding road output audio signal carries out reversed polarity operation process according to this output reversed polarity parameter;
For each output squeezing clipping parameter of this group output processing parameter, corresponding sound effect processor is the output squeezing amplitude limit sound effect processor for a corresponding road output audio signal is compressed amplitude limiting processing according to this output squeezing clipping parameter.
Each entity DSP data of the present embodiment comprise the audio amplifier layer DSP parameter corresponding with its kind, such as input quiet data comprises audio amplifier layer input muting parameter, input gain packet layer input gain parameter Han audio amplifier, input time delay packet layer input time delay parameter Han audio amplifier, input reversed polarity packet inputs reversed polarity parameter containing audio amplifier layer, input air attenuation compensation packet layer input air attenuation compensation parameter Han audio amplifier, input compression sliced data comprises audio amplifier layer input compression clipping parameter, EQ packet layer EQ parameter Han audio amplifier.At least one of which entity DSP data, in addition to comprising audio amplifier layer DSP parameter, also comprise array layer DSP parameter and system layer DSP parameter, say, that part entity DSP data only comprise monolayer parameter, and part entity DSP packet contains multilamellar DSP parameter;Or all DSP data all comprise multilamellar DSP parameter.
The value volume and range of product of the sound effect processor that active audio amplifier input processing module 121 and output processing module 123 are comprised, be by its value volume and range of product of the actual DSP parameter comprised determined.Such as, if input processing parameter only comprises a muting parameter and an input time delay parameter, then input processing module 121 will only comprise a quiet sound effect processor and an input time delay sound effect processor;If input processing parameter comprises 2 muting parameter and 2 input time delay parameters, then input processing module 121 will comprise 2 quiet sound effect processors and 2 input time delay sound effect processors.
The sound effect processor comprised due to input processing module 121 is series connection, and the order of connection of each sound effect processor can determine according to any-mode, it is also possible to determines according to ad hoc fashion.Wherein, the handled audio signal of first sound effect processor is from signal input unit 11;Audio signal handled by follow-up sound effect processor is from a upper sound effect processor;Last sound effect processor also needs to the audio signal transmission after processing to corresponding power amplifier unit 13.The situation of output processing module 123 can be by that analogy.
As shown in Figure 4, the speaker system adjustment method of the present embodiment comprises the following steps:
Step S10: set up speaker system model, this speaker system model includes multiple sound box model, each sound box model and the active audio amplifier corresponding (the most corresponding) in speaker system, each sound box model includes one group of virtual input processing parameter and the virtual output processing parameter of many groups, this group virtual input processing parameter includes multiple virtual DSP data, each virtual DSP data include an audio amplifier layer DSP parameter, an array layer DSP parameter and a system layer DSP parameter, often organize virtual output processing parameter and include multiple DSP parameter;Each virtual DSP data of sound box model respectively with each entity DSP data one_to_one corresponding of active audio amplifier, often organize each DSP parameter one_to_one corresponding of one group of corresponding with active audio amplifier respectively output processing parameter of each DSP parameter of virtual output processing parameter;
Step S20: if selecting to revise virtual input processing parameter, perform step S30;If selecting to revise virtual output processing parameter, perform step S40;
Step S30: if selecting to repair audio amplifier layer DSP parameter, perform step S31;If selecting amendment array layer DSP parameter, perform step S32;
Step S31: the audio amplifier layer DSP parameter that amendment is selected, and amended data are preserved to sound box model corresponding audio amplifier layer DSP parameter belonging to this audio amplifier layer DSP parameter;Perform step S34;
Step S32: the array layer DSP parameter that amendment is selected, if active audio amplifier corresponding to sound box model belonging to this array layer DSP parameter is not belonging to the audio amplifier member of arbitrary array group, if now this array layer DSP parameter can be modified (i.e. can set the array layer DSP parameter of the sound box model not associated with array group as closing or opening), the most amended data will preserve to this sound box model corresponding array layer DSP parameter, perform step S34;If active audio amplifier corresponding to sound box model belonging to this array layer DSP parameter belongs to the audio amplifier member of a certain array group, then amended data will preserve to the array layer DSP parameter of each sound box model corresponding to this array group respectively, perform step S34;(each sound box model is with each active audio amplifier one to one, then each self-corresponding sound box model of each audio amplifier member of array group and this array group are to have corresponding relation)
Step S33: the system layer DSP parameter that amendment is selected, if active audio amplifier corresponding to sound box model belonging to this system layer DSP parameter is not belonging to the audio amplifier member of any system group, if now this system layer DSP parameter can be modified (i.e. can set the system layer DSP parameter of the sound box model not associated with array group as closing or opening), the most amended data will preserve to this sound box model corresponding system layer DSP parameter, perform step S34;If active audio amplifier corresponding to sound box model belonging to this system layer DSP parameter belongs to the audio amplifier member of a certain system group, then amended data will preserve to the system layer DSP parameter of each sound box model corresponding to this system group respectively, perform step S34;(each sound box model is with each active audio amplifier one to one, then each self-corresponding sound box model of each audio amplifier member of system group and this system group are to have corresponding relation)
Step S34: for the sound box model of virtual DSP data generation amendment:
If entity DSP packet corresponding to these virtual DSP data is containing audio amplifier layer DSP parameter, array layer DSP parameter and system layer DSP parameter, then the DSP parameter (being probably audio amplifier layer DSP parameter or array layer DSP parameter number) changed in these virtual DSP data is synchronized in the corresponding DSP parameter in correspondent entity DSP data;
If entity DSP data corresponding to these virtual DSP data only comprise audio amplifier layer DSP parameter, each layer DSP parameter superposition calculation of these virtual DSP data the most first obtains a new DSP parameter, and (the superposition calculation operation of each layer DSP parameter can pass through audio amplifier internal resource, the most built-in microprocessor 15 completes, can also be by the resource outside audio amplifier, such as sound system controls platform to be completed), and by the audio amplifier layer DSP parameter of this new DSP parameter synchronization to correspondent entity DSP data;
Perform step S20 or step S50;
Step S40: the DSP parameter of one group of virtual output processing parameter that amendment is selected, and amended data are preserved in sound box model corresponding DSP parameter belonging to this group virtual output processing parameter, will the corresponding DSP parameter in this DSP parameter synchronization in this sound box model to corresponding active audio amplifier (i.e. preserve to active audio amplifier in the corresponding DSP parameter in one group of output processing parameter corresponding with this group virtual output processing parameter) simultaneously;Perform step S20 or step S50;
Step S50: terminate.
In the present embodiment, no matter which floor (several) DSP parameter is each entity DSP data of active audio amplifier input processing parameter specifically comprise, and each virtual DSP data of the sound box model corresponding with this active audio amplifier comprise multilamellar DSP parameter the most respectively.Each entity DSP data that each the virtual DSP data comprised due to sound box model and active audio amplifier are comprised be one_to_one corresponding.Active audio amplifier the actual entity DSP data comprised, sound box model all exists the virtual DSP data corresponding with this entity DSP.
In the present embodiment, for above-mentioned steps S30: assume that array group first includes active audio amplifier A, active audio amplifier B and active audio amplifier C, system group second includes whole audio amplifier members of array group first, and active audio amplifier D, i.e. system group second includes active audio amplifier A, active audio amplifier B, active audio amplifier C and active audio amplifier D, and the sound box model of its correspondence is sound box model A respectively ', sound box model B ', sound box model C ' and sound box model D '.
The input processing parameter of each active audio amplifier includes entity EQ data, and the virtual input processing parameter of each sound box model includes virtual EQ data, and these virtual EQ data include an audio amplifier layer EQ parameter, an array layer EQ parameter and a system layer EQ parameter.
(1) amendment audio amplifier layer DSP parameter
If in the audio amplifier layer EQ parameter of amendment sound box model A ' audio amplifier layer EQ parameter, then amended data will be saved in sound box model A '.Due to sound box model A ' the virtual EQ data of virtual input processing parameter are modified, it is therefore desirable to this amendment is synchronized to the active audio amplifier A of correspondence.
Now, if the entity EQ data of active audio amplifier contain 3 layers of EQ parameter: audio amplifier layer EQ parameter, array layer EQ parameter and system layer EQ parameter, then sound box model A ' audio amplifier layer EQ parameter by the audio amplifier layer EQ parameter being synchronized to active audio amplifier A.
Now, if the entity EQ data of active audio amplifier only comprise audio amplifier layer EQ parameter, so it being accomplished by first by this sound box model A ' audio amplifier layer EQ parameter, array layer EQ parameter and system layer EQ parameter superposition calculation in virtual EQ data obtain new EQ parameter, and the superposition audio that obtains in active audio amplifier A of three EQ parameters before superposition to obtain audio with the EQ parameter of superposition calculation gained in active audio amplifier A consistent, in the audio amplifier layer EQ data of the data transfer of the newest EQ parameter to corresponding active audio amplifier.
(2) amendment array layer DSP parameter
If amendment sound box model A ' array layer EQ parameter, due to sound box model A ' corresponding to active audio amplifier A belong to the audio amplifier member of array group first, the most amended data will preserve to the array layer EQ parameter of each sound box model corresponding to array group first respectively, and the most amended data will preserve respectively to sound box model A ', sound box model B ', sound box model C ' array layer EQ parameter in.Although here, only have adjusted sound box model A ' array layer EQ parameter, but with this sound box model A ' associate other two sound box model B ' and sound box model C ' array layer EQ parameter all there occurs amendment.', sound box model B ', sound box model C it is thus desirable to by sound box model A ' data syn-chronization revised is in each self-corresponding active audio amplifier.
Now, ', sound box model B ' and sound box model C if the entity EQ data of active audio amplifier contain audio amplifier layer EQ parameter, array layer EQ parameter and system layer EQ parameter, then sound box model A ' array layer EQ parameter be synchronized to respectively in the array layer EQ parameter of the most corresponding active audio amplifier.
Now, if the entity EQ data of active audio amplifier only comprise audio amplifier layer EQ parameter, superposition calculation is obtained new EQ parameter by so audio amplifier layer EQ parameter, array layer EQ parameter and system layer EQ parameter of each sound box model, and the new EQ parameter each obtained is synchronized to respectively in the audio amplifier layer EQ parameter of corresponding active audio amplifier.By sound box model B ' as a example by, first its audio amplifier layer EQ parameter, array layer EQ parameter and system layer EQ parameter superposition calculation are obtained new EQ parameter, the most again by the audio amplifier layer EQ parameter of this new EQ parameter synchronization to active audio amplifier B.
(3) amendment system layer DSP parameter
If amendment sound box model A ' system layer EQ parameter, due to sound box model A ' corresponding to active audio amplifier A belong to the audio amplifier member of system group second, the most amended data will preserve to the system layer EQ parameter of each sound box model corresponding to system group first respectively, and the most amended data will preserve respectively to sound box model A ', sound box model B ', in the system layer EQ parameter of sound box model C ' and sound box model D '.Although here, the most only have adjusted sound box model A ' system layer EQ parameter, but with this sound box model A ' associate other three sound box model B ' and sound box model C ' system layer EQ parameter all there occurs amendment.The data syn-chronization that ', sound box model B ', sound box model C it is thus desirable to by sound box model A ' and sound box model D ' are revised is in each self-corresponding active audio amplifier.
Now, the system layer EQ parameter of ', sound box model B ', sound box model C if the entity EQ data of active audio amplifier contain audio amplifier layer EQ parameter, array layer EQ parameter and system layer EQ parameter, then sound box model A ' and sound box model D ' is synchronized in the system layer EQ parameter of the most corresponding active audio amplifier respectively.
Now, if the entity EQ data of active audio amplifier only comprise audio amplifier layer EQ parameter, superposition calculation is obtained new EQ parameter by so audio amplifier layer EQ parameter, array layer EQ parameter and system layer EQ parameter of each sound box model, and the new EQ parameter each obtained is synchronized to respectively in the audio amplifier layer EQ parameter of corresponding active audio amplifier.By sound box model B ' as a example by, first its audio amplifier layer EQ parameter, array layer EQ parameter and system layer EQ parameter superposition calculation are obtained new EQ parameter, the most again by the audio amplifier layer EQ parameter of this new EQ parameter synchronization to active audio amplifier B.
Multiple DSP parameters of same DSP parameter respectively process after superposition audio, and first these DSP parameters are overlapped calculate after carry out processing obtained audio for parameter stack result again, the audio result that the two processing mode obtains is the same.Each entity DSP data such as sporocarp audio amplifier input processing parameter comprise multilamellar, then every kind of DSP parameter is required for processing repeatedly, so can increase the weight of the burden of signal processor, limits its processing speed.Assume that the input processing parameter of certain active audio amplifier includes quiet data, delay data, gain data and reversed polarity data, and each entity DSP data include 3 layers of DSP parameter respectively: audio amplifier layer DSP parameter and array layer DSP parameter, so digital signal processor 12 of this active audio amplifier needs to perform 3 silence switch process, 3 delay process, 3 gain process and 3 reversed polarity process, the input processing module 121 of digital signal processor 12 includes in other words: 3 quiet sound effect processors, 3 time delay sound effect processors, 3 gain sound effect processors and 3 reversed polarity sound effect processors.
For solving the problems referred to above, reduce the audio effect processing number of times of active audio amplifier digital signal processor 12, improve treatment effeciency and processing speed, this technology is in some technical scheme, the part entity DSP data of active audio amplifier input processing parameter are arranged to monolayer, but each virtual DSP data of sound box model fictionalize multilamellar DSP parameter in system model.For the entity DSP data of only one layer of DSP parameter in active audio amplifier, after corresponding virtual DSP data modification, first each layer DSP parameter of these virtual DSP data is superimposed as a DSP parameter, then resynchronize to this entity DSP data, thus realize the multilamellar adjustable effect of each DSP data of system level.Such as can be by the resource beyond digital signal processor 12, such as can control to realize the speaker system adjustment method described in this technology on platform at sound box system, control the sound box model of platform fictionalizes multilamellar DSP parameter, then when controlling platform and amended DSP supplemental characteristic being synchronized to entity audio amplifier, first the microprocessor 15 in controlling platform or active audio amplifier completes corresponding DSP parameter overlap-add operation, reduce the data volume managed and the amount of calculation of digital signal processor 12, raising audio effect processing efficiency of making rational use of resources.Therefore the present embodiment can make full use of the external resource of digital signal processor 12, reduces audio effect processing quantity (or number of times), improves the processing speed of digital signal processor 12.
In the present embodiment, active audio amplifier also includes microprocessor 15, and this microprocessor 15 is for being adjusted each DSP parameter of this group input processing parameter and each group of output processing parameter according to external control signal.
Accordingly, in step S34:
If entity DSP packet corresponding to these virtual DSP data is containing audio amplifier layer DSP parameter, array layer DSP parameter and system layer DSP parameter, first send the control signal of amendment corresponding (corresponding with these virtual DSP data revised) entity DSP data according to microprocessor 15 to corresponding (corresponding with this sound box model) active audio amplifier in the virtual DSP data being modified, the corresponding DSP parameter in the entity DSP data to correspondence of the DSP parameter in these virtual DSP data that this microprocessor 15 is comprised according to this control signal is modified;
If entity DSP data corresponding to these virtual DSP data only comprise audio amplifier layer DSP parameter, first according to these virtual DSP data send the control signal of amendment correspondent entity DSP data to the microprocessor 15 of corresponding active audio amplifier, each layer DSP parameter superposition calculation of these virtual DSP data that this this control signal is comprised by this microprocessor 15 obtains a new DSP parameter, then modifies the audio amplifier layer DSP parameter of corresponding entity DSP data further according to this new DSP parameter;
Accordingly, in step 40:
DSP parameter synchronization in the virtual output processing parameter of group sound box model selected is to time in the corresponding DSP parameter in active audio amplifier, first send the control signal of the DSP parameter of the corresponding one group of output processing parameter of amendment to the microprocessor 15 of corresponding active audio amplifier according to this DSP parameter of this virtual output processing parameter, the corresponding DSP parameter in one group of corresponding output processing parameter is modified by this DSP parameter in this group virtual output processing parameter that this microprocessor 15 is comprised according to this control signal.
Additionally, this active audio amplifier also includes the control signal interface being connected with microprocessor 15, this control signal interface is used for receiving external control signal and transmitting to microprocessor 15.
This technology is when implementing, for the DSP parameter that some is relatively simple, and the most quiet, time delay, reversed polarity, gain etc., the input processing parameter of active audio amplifier is provided only with one layer of DSP parameter.Carrying out system debug timing, each layer DSP parameter of the virtual DSP data corresponding with these entities DSP data first passes through external resource (resource beyond digital signal processor 12) and is overlapped calculating one DSP parameter of synthesis, in the most corresponding DSP data of the most corresponding active audio amplifier of transmission.And for complex DSP parameter, such as EQ, 3 layers of EQ parameter can be set in the input processing parameter of active audio amplifier, be audio amplifier layer EQ parameter, array layer EQ parameter and system layer EQ parameter respectively.If certain layer of EQ parameter of sound box model is revised, then in one layer of (one) EQ parameter that the EQ parameter of amendment is corresponding by being directly synchronized to active audio amplifier, and without first carrying out the superposition calculation of multiple DSP parameter.Thus both made full use of the efficient fast signal disposal ability of digital signal processor 12, external resource can be made full use of again, improve the real-time audio signal disposal ability of digital signal processor 12 further.

Claims (5)

1. a speaker system adjustment method, it is characterised in that: this speaker system includes multiple active audio amplifier, This speaker system is provided with one or more array group, and each array group includes one or more active audio amplifier, Being additionally provided with one or more system group, each system group includes one or more active audio amplifier;Each active sound Case includes signal input unit, digital signal processor, multiple power amplifier unit and multiple loudspeaker unit, respectively Individual power amplifier unit is connected with the loudspeaker unit matched;
This signal input unit is for receiving the audio signal of the outside input of audio amplifier, and transmits to this digital signal Processor;
This digital signal processor is provided with data memory module, and in this data memory module, storage has one group of input Processing parameter and corresponding with each power amplifier unit respectively many groups output processing parameters,
This group input processing parameter includes that multiple entity DSP data, each entity DSP packet contain one The audio amplifier layer DSP parameter corresponding with the kind of this entity DSP data, this audio amplifier layer DSP parameter be for The DSP parameter that this active audio amplifier is arranged;And each entity DSP data also include one with its audio amplifier layer Array layer DSP parameter that DSP parameter kind is identical and system layer DSP parameter, wherein, this array layer DSP parameter is each audio amplifier member for array group belonging to this active audio amplifier and the DSP parameter that arranges;Should System layer DSP parameter is each audio amplifier member for this active audio amplifier said system group and arranges;Often group Output processing parameter includes one or more DSP parameter;
This digital signal processor also includes input processing module and multiple output processing module,
This input processing module includes the sound effect processor of multiple series connection, each sound effect processor respectively with this group Each DSP parameter one_to_one corresponding of input processing parameter, each sound effect processor is for according to corresponding DSP Parameter carries out corresponding signal processing operations to audio signal;This input processing module also includes signal branch mould Block, it is defeated for the audio signal after this resume module is divided into the multichannel corresponding with each power amplifier unit Go out audio signal;
The corresponding road output audio signal of each output processing module, each output processing module includes multiple string The sound effect processor of connection, each sound effect processor is defeated with a group corresponding to this road output audio signal respectively Going out each DSP parameter one_to_one corresponding of processing parameter, each sound effect processor is for according to corresponding DSP ginseng Several road output audio signals to correspondence process;
Each power amplifier unit is for receiving the corresponding road output audio frequency processed through corresponding output processing module Signal, and Jiang Gai mono-tunnel audio signal be amplified process after transmit to corresponding loudspeaker unit;
This adjustment method comprises the following steps:
Step S10: set up speaker system model, this speaker system model includes multiple sound box model, often Individual sound box model is corresponding with an active audio amplifier in speaker system, each sound box model include one group virtual Input processing parameter and the virtual output processing parameter of many groups, this group virtual input processing parameter includes multiple virtual DSP data, each virtual DSP data include an audio amplifier layer DSP parameter, an array layer DSP ginseng Number and a system layer DSP parameter, often organize virtual output processing parameter and include multiple DSP parameter;Audio amplifier mould Each virtual DSP data of type respectively with each entity DSP data one_to_one corresponding of active audio amplifier, often organize void One group that each DSP parameter of plan output processing parameter is corresponding with active audio amplifier respectively exports each of processing parameter Individual DSP parameter one_to_one corresponding;
Step S20: if selecting to revise virtual input processing parameter, perform step S30;If selecting amendment virtual Output processing parameter, performs step S30;
Step S30: if selecting amendment audio amplifier layer DSP parameter, perform step S31;If selecting amendment array layer DSP parameter, performs step S32;
Step S31: the audio amplifier layer DSP parameter that amendment is selected, and amended data are preserved to this sound In sound box model corresponding audio amplifier layer DSP parameter belonging to case layer DSP parameter;Perform step S34;
Step S32: the array layer DSP parameter that amendment is selected, if audio amplifier belonging to this array layer DSP parameter The active audio amplifier that model is corresponding is not belonging to the audio amplifier member of arbitrary array group, if now this array layer DSP parameter Can be modified, then amended data will preserve to this sound box model corresponding array layer DSP parameter, Perform step S34;If it is a burst of that active audio amplifier corresponding to sound box model belonging to this array layer DSP parameter belongs to certain The audio amplifier member of row group, then amended data will preserve respectively to each sound corresponding to this array group In the array layer DSP parameter of box model, perform step S34;
Step S33: the system layer DSP parameter that amendment is selected, if audio amplifier belonging to this system layer DSP parameter The active audio amplifier that model is corresponding is not belonging to the audio amplifier member of any system group, if now this system layer DSP parameter Can be modified, then amended data will preserve to this sound box model corresponding system layer DSP parameter, Perform step S34;If active audio amplifier corresponding to sound box model belonging to this system layer DSP parameter belongs to a certain system The audio amplifier member of system group, then amended data will preserve respectively to each sound corresponding to this system group In the system layer DSP parameter of box model, perform step S34;
Step S34: for the sound box model of virtual DSP data generation amendment:
If entity DSP packet corresponding to these virtual DSP data is containing audio amplifier layer DSP parameter, array layer DSP Parameter and system layer DSP parameter, then the DSP parameter synchronization changed in these virtual DSP data is extremely In corresponding DSP parameter in correspondent entity DSP data;
If entity DSP data corresponding to these virtual DSP data only comprise audio amplifier layer DSP parameter, then first will Each layer DSP parameter superposition calculation of these virtual DSP data obtains a new DSP parameter, and this is new DSP parameter synchronization in the audio amplifier layer DSP parameter of correspondent entity DSP data;
Perform step S20 or step S50;
Step S40: the DSP parameter of one group of virtual output processing parameter that amendment is selected, and by after amendment Data preserve in sound box model corresponding DSP parameter belonging to this group virtual output processing parameter, simultaneously By in the corresponding DSP parameter in this DSP parameter synchronization in this sound box model to corresponding active audio amplifier;Perform Step S20 or step S50;
Step S50: terminate.
A kind of speaker system adjustment method the most according to claim 1, it is characterised in that: described active The described input processing parameter of audio amplifier includes following multiple entity DSP data: input quiet data, input increases Benefit data, input time delay data, input reversed polarity data, input air attenuation compensation data, input compression Sliced data, EQ data;
Often organize described output processing parameter and include part-frequency point parameter, and following one or more DSP parameters: Output BPPA parameter, output mute parameter, output gain parameters, export EQ parameter, output time delay ginseng Number, exports reversed polarity parameter, output squeezing clipping parameter;
The input processing module of described digital signal processor comprises the reality comprised with described input processing parameter The sound effect processor that each DSP parameter of body DSP data is corresponding:
Each input muting parameter that this input quiet data is comprised, corresponding sound effect processor For the quiet audio effect processing of input for audio signal being carried out according to this input muting parameter silence switch process Device;
Each input gain parameter that these input gain data are comprised, corresponding sound effect processor For the input gain audio effect processing for audio signal being carried out according to this input gain parameter input gain process Device;
Each input time delay parameter that these input time delay data are comprised, corresponding sound effect processor For the input time delay audio effect processing for audio signal being carried out according to this input time delay parameter input time delay process Device;
The each input reversed polarity parameter comprised for these input reversed polarity data, at corresponding audio Reason device is the input antipole for audio signal carries out reversed polarity operation process according to this input reversed polarity parameter Property sound effect processor;
The each input air attenuation compensation parameter comprised for these input air attenuation compensation data, with it Corresponding sound effect processor is to be used for, according to this input air attenuation compensation parameter, audio signal is carried out air to decline Subtract the input air attenuation compensation sound effect processor of compensation deals;
Each input compression clipping parameter that this input compression sliced data is comprised, corresponding sound Effect processor is the input for audio signal is compressed amplitude limiting processing according to this input compression clipping parameter Compression amplitude limit sound effect processor;
For each EQ parameter, corresponding sound effect processor is for for believing audio frequency according to this EQ parameter Number it is compressed the EQ sound effect processor of amplitude limiting processing;
Each output processing module of described digital signal processor selectively includes that corresponding one group exports The sound effect processor that each DSP parameter that processing parameter is comprised is corresponding:
For the part-frequency point parameter of this group output processing parameter, corresponding sound effect processor is for root According to this part-frequency point parameter, a corresponding road output audio signal is carried out frequency-division filter process, the audio frequency letter obtained Number the frequency dividing sound effect processor that matches with corresponding power amplifier unit of frequency range;
For each output BPPA parameter of this group output processing parameter, corresponding sound effect processor For for a corresponding road output audio signal being carried out at phase response adjustment according to this output BPPA parameter The output BPPA sound effect processor of reason;
For each output mute parameter of this group output processing parameter, corresponding sound effect processor is For a corresponding road output audio signal being carried out according to this muting parameter the output mute of silence switch process Sound effect processor;
For each output gain parameters of this group output processing parameter, corresponding sound effect processor is For a corresponding road output audio signal being carried out according to this output gain parameters the output gain of gain process Sound effect processor;
For each output EQ parameter of this group output processing parameter, corresponding sound effect processor is for using In the output EQ audio that according to this output EQ parameter, a corresponding road output audio signal is carried out EQ process Processor;
For each output delay parameter of this group output processing parameter, corresponding sound effect processor is For a corresponding road output audio signal being carried out according to this output delay parameter the output time delay of delay process Sound effect processor;
For each output reversed polarity parameter of this group output processing parameter, corresponding sound effect processor For for a corresponding road output audio signal being carried out reversed polarity operation process according to this output reversed polarity parameter Output reversed polarity sound effect processor;
For each output squeezing clipping parameter of this group output processing parameter, corresponding audio effect processing Device is for being compressed a corresponding road output audio signal at amplitude limit according to this output squeezing clipping parameter The output squeezing amplitude limit sound effect processor of reason.
Speaker system adjustment method the most according to claim 1 and 2, it is characterised in that: described active Audio amplifier also includes microprocessor, and this microprocessor is used for according to external control signal this group input processing parameter It is adjusted with each DSP parameter of each group of output processing parameter.
Speaker system adjustment method the most according to claim 3, it is characterised in that:
In described step S34,
If entity DSP packet corresponding to these virtual DSP data is containing audio amplifier layer DSP parameter, array layer DSP Parameter and system layer DSP parameter, first according to the virtual DSP data being modified to micro-place of corresponding active audio amplifier Reason device sends the control signal of amendment correspondent entity DSP data, and this microprocessor is wrapped according to this control signal DSP parameter in these the virtual DSP data contained is to the corresponding DSP parameter in corresponding entity DSP data Modify;
If entity DSP data corresponding to these virtual DSP data only comprise audio amplifier layer DSP parameter, first according to should Virtual DSP data send the control letter of amendment correspondent entity DSP data to the microprocessor of corresponding active audio amplifier Number, each layer DSP parameter superposition of these virtual DSP data that this this control signal is comprised by this microprocessor It is calculated a new DSP parameter, then further according to this new DSP parameter to corresponding entity The audio amplifier layer DSP parameter of DSP data is modified;
In described step S40,
DSP parameter synchronization in the virtual output processing parameter of group sound box model selected is to active sound Time in corresponding DSP parameter in case, first this DSP parameter according to this virtual output processing parameter is to having The microprocessor of source audio amplifier sends the control signal of the DSP parameter of the corresponding one group of output processing parameter of amendment, should This DSP parameter pair in this group virtual output processing parameter that microprocessor is comprised according to this control signal The corresponding corresponding DSP parameter in one group of output processing parameter is modified.
Speaker system adjustment method the most according to claim 3, it is characterised in that: this active audio amplifier is also Including the control signal interface being connected with described microprocessor, this control signal interface is used for receiving external control Signal also transmits to described microprocessor.
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