CN104754242B - Based on the panorama multi-channel audio control method for becoming the processing of rail acoustic image - Google Patents

Based on the panorama multi-channel audio control method for becoming the processing of rail acoustic image Download PDF

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CN104754242B
CN104754242B CN201310754828.1A CN201310754828A CN104754242B CN 104754242 B CN104754242 B CN 104754242B CN 201310754828 A CN201310754828 A CN 201310754828A CN 104754242 B CN104754242 B CN 104754242B
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acoustic image
audio
track
audio amplifier
sub
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CN104754242A (en
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周利鹤
李志雄
黄石锋
邓俊曦
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Guangzhou Leafun Culture Science and Technology Co Ltd
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Guangzhou Leafun Culture Science and Technology Co Ltd
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Abstract

It is specifically a kind of based on the panorama multi-channel audio control method for becoming the processing of rail acoustic image the present invention relates to device for performing arts control technology.This method includes:Time shaft is shown on the display interface of integrated control platform;The track for being controlled to corresponding performing device is added and/or deletes, the track includes light track;Editing rail attribute;Add material;Edit material attribute;Integrated control platform sends corresponding control instruction according to each track attribute and its material attribute.The present invention can solve the editors of current items on the program and Synchronization Control and acoustic image and run the technical barrier of effect control.

Description

Based on the panorama multi-channel audio control method for becoming the processing of rail acoustic image
Technical field
It is specifically a kind of based on the panorama multi-channel audio for becoming the processing of rail acoustic image the present invention relates to device for performing arts control technology Control method.
Background technology
In items on the program layout process, it is that each specialty (refers to audio, video, light, machine that one, which is compared distinct issues, Tool etc.) between coordination and Synchronization Control.In large-scale performance, each specialty is relatively independent, it is necessary to which a comparison is huge Troop could ensure the smooth layout and performance of performance.And during each professional program of layout, the most of the time is all spent Coordination between specialty and it is synchronous above, and compared with the time being really absorbed in program in itself may be much more.
Because each specialty is relatively independent, control mode differs greatly.To carry out live audio-visual synchronization editor, depending on Frequency is controlled by lamp control platform, and audio plays back editor control by many rails, and audio is easy to navigate to the arbitrary time and started back Put, but video can only start anew (frame number can be adjusted into correspondence position manually by operating personnel, but can not followed the time Code starts), this is short of enough flexibilities for live performance control.
In addition, after the audio amplifier position of the Professional sound box system of existing video display, stage is fixed, passing through stage both sides Left and right passage master amplifies or acoustic image is substantially set in the middle position of stage by main amplify in the road of left, center, right three, although performance field In addition to the master on stage amplifies, large number of audio amplifier is also provided with each position, but whole field is performed, audio amplifier The acoustic image of system almost can seldom change.
Therefore, the run flexible control of effect of the editor and Synchronization Control and acoustic image for solving current items on the program is all this Technical field key technical problem urgently to be resolved hurrily.
The content of the invention
Present invention solves the technical problem that be to provide one kind can simplify the occasions such as video display, stage performance it is multi-specialized control and The panorama multi-channel audio controlling party based on change rail acoustic image processing flexibly quickly set can be carried out to the acoustic image of sound reinforcement system Method.
In order to solve the above technical problems, the technical solution adopted by the present invention is:
Compared with prior art, have the beneficial effect that:Playback master control embodies the theory of " performance integrated management ".From technology Angle for, the lotus roots of these units closes that property is very low, and they can be with operating alone without influencing each other, uniquely than more prominent Contact be " time ", i.e., when what is broadcasting.For the angle used from user, the relation of " time " is Their most concerned things.Checked and managed if the state of these units can be concentrated in together, user is omitted from Many unnecessary troubles.Such as coordinate the stationary problem between unit, the mutual reference of each specialty in editing saving With contrasting amendment etc..
Brief description of the drawings
Fig. 1 is embodiment based on the panorama multi-channel audio control method schematic diagram for becoming the processing of rail acoustic image.
Fig. 2 is the audio frequency control part based on the panorama multi-channel audio control method for becoming the processing of rail acoustic image of embodiment Method schematic diagram.
Fig. 3 is the behaviour of the audio sub-track based on the panorama multi-channel audio control method for becoming the processing of rail acoustic image of embodiment Make method schematic diagram.
Fig. 4 is the video control portions based on the panorama multi-channel audio control method for becoming the processing of rail acoustic image of embodiment Method schematic diagram.
Fig. 5 is the signal light control part based on the panorama multi-channel audio control method for becoming the processing of rail acoustic image of embodiment Method schematic diagram.
Fig. 6 is the apparatus control portion point based on the panorama multi-channel audio control method for becoming the processing of rail acoustic image of embodiment Method schematic diagram.
Fig. 7 is the principle schematic of the performance integrated control system of embodiment.
Fig. 8 is the principle schematic of the audio frequency control module of the performance integrated control system of embodiment.
Fig. 9 is the principle schematic of the video control module of the performance integrated control system of embodiment.
Figure 10 is the principle schematic of the lighting control module of the performance integrated control system of embodiment.
Figure 11 is the principle schematic of the device control module of the performance integrated control system of embodiment.
Figure 12 is that many rails based on the panorama multi-channel audio control method for becoming the processing of rail acoustic image of embodiment play back editor Module interfaces schematic diagram.
Figure 13 is the principle schematic of the audio frequency control part of the performance integrated control system of embodiment.
Figure 14 is the principle schematic of the track matrix module of the performance integrated control system of embodiment.
Figure 15 is the principle schematic of the video control portions of the performance integrated control system of embodiment.
Figure 16 is the principle schematic of the signal light control part of the performance integrated control system of embodiment.
Figure 17 is the principle schematic of the apparatus control portion point of the performance integrated control system of embodiment.
Figure 18 is the step schematic diagram of the change rail acoustic image method for controlling trajectory of embodiment.
Figure 19 is the change rail acoustic image track data generation method step schematic diagram of embodiment.
Figure 20 is the audio amplifier distribution map of embodiment and becomes rail acoustic image track schematic diagram.
Figure 21 is the triangle audio amplifier node schematic diagram of embodiment.
Figure 22 is the variable domain acoustic image track data generation method step schematic diagram of embodiment.
Figure 23 is the audio amplifier distribution map and variable domain acoustic image track schematic diagram of embodiment.
Figure 24 is the fixed point acoustic image track data generation method step schematic diagram of embodiment.
Figure 25 is the audio amplifier link data creation method step schematic diagram of embodiment.
Figure 26 is the audio amplifier link schematic diagram of embodiment.
Embodiment
The acoustic image TRAJECTORY CONTROL all types of to the present invention is further described below in conjunction with the accompanying drawings.
The present embodiment provide one kind can simplify the occasions such as video display, stage performance it is multi-specialized control and can be to sound reinforcement system Acoustic image carry out flexibly quickly set based on become rail acoustic image processing panorama multi-channel audio control method.This method passes through collection Many rails into control platform play back editor module, realize concentration layout and control to multiple professional materials.As shown in figure 1, the base Comprise the following steps in the panorama multi-channel audio control method for becoming the processing of rail acoustic image:
S101:Time shaft is shown on the display interface of integrated control platform;
S102:Add and/or delete the track for being controlled to corresponding performing device;
S103:Editing rail attribute;
S104:Add material;
S105:Edit material attribute;
S106:Integrated control platform sends corresponding control instruction according to each track attribute and its material attribute.
As shown in Fig. 2 and Figure 12, it should be included based on the panorama multi-channel audio control method for becoming the processing of rail acoustic image for many Rail audio playback control (corresponding with following audio frequency control modules), specifically includes following steps:
S201:Audio track is added, is added on display interface parallel and is aligned in the one or more of the time shaft Audio track (region) 1,2, one output channel of each audio track correspondence.
S202:Audio track attribute is edited, it is Jing Yin that editable audio track attribute includes lock on track, track.Track Whether the audio material and all sub-tracks that Jing Yin attribute can control on this track are Jing Yin, are the master controls of audio track.Track locks Determine attribute to can control on track except Jing Yin and in addition to sub-track is hidden in addition etc. outside individual attribute, in other attributes and audio track Material position and material attribute can not be changed.
S203:Add audio material, added in audio track 1,2 one or more audio materials 111,112,113, 211st, 212,213,214, and generate in audio track corresponding with audio material audio material, occupied by the audio material The length of audio track match with the total duration of the audio material.Before addition audio material, first from audio server Audio material list is obtained, then selecting audio material addition from the audio material list again enters audio track.Work as audio Material is added to after audio track, will generate the audio attribute file corresponding with the audio material, and integrated control platform passes through editor Audio attribute file controls to be sent to the instruction of audio server, rather than directly invokes or edit the corresponding source of audio material File, it is ensured that the security of source file and the stability of integrated control platform.
S204:Edit audio material attribute, the audio material attribute include start position, final position, the time started, End time, total duration, reproduction time length.Wherein, the start position is the audio material start position (along Vertical Square To) corresponding to the time shaft moment, the final position be the audio material final position (vertically) corresponding to when The countershaft moment, the time started be the audio material on a timeline actually commence play out the moment, the end time is The physical end play position of the audio material on a timeline.In general, the time started can be delayed in start position, terminate Time can shift to an earlier date in final position.Total duration refers to the script time span of audio material, start position to terminal position when Between difference be audio material total duration, reproduction time length refers to the reproduction time length of the audio material on a timeline, The time difference of time started and end time are the reproduction time length of the audio material.By adjusting time started and end Time can realize the shearing manipulation to acoustic image material, i.e., only play the part that user wishes to play.
It can change start position and terminal position by adjusting position of (transverse shifting) audio material in audio track Put, but relative position of the start position with final position on a timeline will not change, i.e., and the length of audio material will not change. It can change the actual play time of audio material on a timeline with the end time between at the beginning of by adjusting audio material And its length.It can place multiple audio materials in one audio track, represent within the period represented by time shaft, can be with (through corresponding output channel) plays multiple audio materials successively.It should be noted that the audio material in any audio track Position (time location) can freely be adjusted, but should not be overlapping between each audio material.
Further, because integrated control platform is simply controlled to the corresponding property file of audio material, therefore integrated control Platform can also carry out cutting operation and concatenation to audio material.Operation is cut to refer to an audio element on audio track Material is divided into multiple audio materials, while each audio material after segmentation has each self-corresponding property file, now source file Still intact, integrated control platform sends control command according to these new property files and calls source file to be played accordingly successively With audio operation.Similar, concatenation refers to two audio materials being merged into an audio material, its each self-corresponding category Property Piece file mergence be property file, sending control audio server by a property file calls two audio source documents Part.
Further, multigroup application entity behaviour corresponding with each audio track respectively can also be set on integrated control platform Make key, to manually adjust the attribute of audio material by physical operation key.For example increase to the audio material position in audio track Put the material reproduction time adjustment knob adjusted before and after (time shaft position).
S205:Add audio sub-track 12,13,14,15,21,22, addition and audio track corresponding one wherein described in one Individual or multiple audio sub-tracks, each audio sub-track is parallel to the time shaft, and the audio sub-track is corresponding The output channel correspondence of the audio track.
Each audio track can have an attached audio sub-track, the type of audio sub-track include acoustic image sub-track and Audio sub-track.Wherein, the acoustic image sub-track is used to carry out acoustic image to the part or all of audio material of affiliated audio track Trajectory processing, the audio sub-track is used to carry out audio effect processing to the part or all of audio material of affiliated audio track. In this step, it can further perform the step of:
S301:Acoustic image sub-track harmony pixel material is added, one or more acoustic image materials are added in acoustic image sub-track 121st, 122, and generation acoustic image material corresponding with the acoustic image material, the sound occupied by the acoustic image material in the acoustic image sub-track As sub-track length with the acoustic image material corresponding to total duration match.
S302:Acoustic image sub-track attribute is edited, similar with the audio track, editable acoustic image sub-track attribute includes Lock on track, track are Jing Yin.
S303:Acoustic image material attribute is edited, similar with the audio material, the acoustic image material attribute also includes starting point position Put, final position, the time started, the end time, total duration, reproduction time length.
By the acoustic image material on acoustic image sub-track, can be between the acoustic image material time started and end time when Between in section, acoustic image trajectory processing is carried out to the signal that output channel corresponding to the affiliated audio track of acoustic image sub-track is exported.Cause This adds different types of acoustic image material on acoustic image sub-track, can carry out inhomogeneity to the signal that corresponding output channel is exported The acoustic image trajectory processing of type;And by adjust the start position of each acoustic image material, final position, the time started and at the end of Between, time and acoustic image path effect duration that acoustic image trajectory processing starts can be adjusted.
The difference of acoustic image material and audio material is that what audio material was represented is voice data.Acoustic image track data is Within the period of setting length, in order that the acoustic image edge that each virtual audio amplifier node output level is formed in audio amplifier distribution map Path set in advance is run or remained stationary as, the output level data that each audio amplifier node is changed over time.That is acoustic image track number According to containing in audio amplifier distribution map output level delta data of whole audio amplifier nodes in setting length of time section.Acoustic image The type of track data includes fixed point acoustic image track data, becomes rail acoustic image track data and variable domain acoustic image track data, acoustic image rail The type of mark data determines the type of acoustic image material, and the acoustic image motion total duration corresponding to acoustic image track data determines acoustic image The total duration of time difference between material start position and final position, i.e. acoustic image material.Acoustic image trajectory processing refers to according to sound As the size of track data pair each audio amplifier entity reality output level corresponding with each audio amplifier node is adjusted, make audio amplifier The acoustic image of physical system was run or remained stationary as along setting path within the period of setting length.
S304:Audio sub-track is added, the type of the audio sub-track includes volume and gain sub-track 13,22, EQ A volume and gain sub-track, and one or more EQ sub-tracks can be set in sub-track 14,15,21, each audio track. Wherein, the volume and gain sub-track are used to adjust the signal level size of the corresponding output channel of affiliated audio track Whole, the signal that the EQ sub-tracks are used for the output to the corresponding output channel of affiliated audio track carries out EQ audio effect processings.
S305:The attribute of audio sub-track is edited, the attribute of the audio sub-track includes track locks
Fixed, track is Jing Yin and track identities outside, in addition to audio effect processing parameter corresponding with audio sub-track type.Example Such as, the audio effect processing parameter that volume and gain sub-track are included is output level size regulation parameter, the sound that EQ sub-tracks are included Effect processing parameter is EQ processing parameters.The audio sub-track institute dominant can be adjusted by changing the sound effect parameters of audio sub-track The audio of frequency track correspondence output channel.
S206:Data are preserved, or according to audio track and its attribute of sub-track, the life of audio material harmony pixel material attribute The control instruction of paired audio material correspondence source file, and control is played out to the source file of audio material according to the control instruction System and acoustic image, audio effect processing are controlled.
Control instruction includes deciding whether to call the audio source file of (broadcasting) audio material, at the beginning of source file broadcasting Between and the end time (being defined at the time of by time shaft), the acoustic image and audio effect processing of source file, specific control instruction and each sound The attribute of frequency track and its attached sub-track, audio material, the attribute correspondence of acoustic image material.That is audio track is not straight The source file for calling and handling audio material is connect, and simply handles the property file corresponding to the audio source file, passes through editor The attribute for adjusting the property file, addition/editor's acoustic image material and audio track and its sub-track of source file is realized to audio The indirect control of source file.
Audio material for example added to audio track will enter playlist, when the audio track starts broadcasting, the sound Frequency material will be played;By editing audio track attribute, the Jing Yin attribute of audio track can be controlled, the sound can be controlled Whether frequency track and its attached sub-track Jing Yin (effective), and attribute is locked by editing audio, can control on track except Jing Yin and Addition is hidden outside the individual attributes such as sub-track is outer, and material position and material attribute in other attributes and audio track can not be repaiied Change (lock-out state).More detailed description refers to narration above.
As shown in Fig. 4 and Figure 12, the panorama multi-channel audio control method based on change rail acoustic image processing of the present embodiment is also Increase video playback control (corresponding with following video control modules) can be selected, following steps are specifically included:
S401:Track of video is added, (on display interface) addition track of video 4 that is parallel and being aligned in the time shaft Video server is used in (region), one controlled plant of the track of video correspondence, the present invention.
S402:Track of video attribute is edited, it is Jing Yin that editable track of video attribute includes lock on track, track.Video Track attribute is similar with audio track attribute.
S403:Video material is added, one or more video materials 41,42,43,44 are added in track of video, and Video material corresponding with the video material is generated in track of video, the length of the track of video occupied by the video material is with being somebody's turn to do The total duration of video material matches.Before addition video material, video material list first is obtained from video server, then Video material addition is selected from the video material list again and enters track of video.After video material is added to track of video, The video attribute file corresponding with the video material will be generated, integrated control platform controls to send by editing video attribute file To the instruction of video server, rather than directly invoke or edit the corresponding source file of video material, it is ensured that the safety of source file The stability of property and integrated control platform.
S404:Edit video material attribute, the video material attribute include start position, final position, the time started, End time, total duration, reproduction time length.Video material attribute is similar with audio material attribute, while audio material also may be used To carry out transverse shifting, cutting and concatenation, or on integrated control platform increase adjustment is corresponding with track of video one group Physical operation key, to manually adjust the attribute of video material by physical operation key.
S405:Data are preserved, or according to track of video attribute, the attribute generation of video material is to video material correspondence source document The control instruction of part, and control and acoustic image, audio effect processing control are played out to the source file of video material according to the control instruction System.It is similar with track of video, the attribute of specific control instruction audio track, the attribute correspondence of video material.
As depicted in figure 5 and figure 12, the present embodiment based on become rail acoustic image processing panorama multi-channel audio control method also Increase signal light control (corresponding with following lighting control modules) can be selected, following steps are specifically included:
S501:Light track is added, (on display interface) addition light track 3 that is parallel and being aligned in the time shaft Light network signal adapter (such as Artnet nets are used in (region), one controlled plant of the light track correspondence, the present invention Card).
S502:Light track attribute is edited, it is Jing Yin that editable light track attribute includes lock on track, track.Light Track attribute is similar with audio track attribute.
S503:Light material is added, one or more light materials 31,32,33 are added in light track, and in light Light material corresponding with the light material, length and the light of the light track occupied by the light material are generated in track The total duration of material matches.Similar with audio material, video material, light track does not load light material, and is Generation property file corresponding with the light material source file, sends control instruction to control light material source by property file The output of file.
Light material is the light network control data of certain time length, such as Artnet data, Artnet data envelope Equipped with DMX data.Light material can be generated in the following manner:After the good light program of conventional lights control platform layout, integrated control platform leads to The light network interface that its light network interface is connected on conventional lights control platform is crossed, the signal light control letter of lamp control platform output is recorded Number, while integrated control platform needs to stamp timing code to the light controling signal recorded in recording process, so as in light rail The enterprising edlin control in road.
S504:Edit light material attribute, the light material attribute include start position, final position, the time started, End time, total duration, reproduction time length.Light material attribute is similar with audio material attribute, while audio material also may be used To carry out transverse shifting, cutting and concatenation, or on integrated control platform increase adjustment is corresponding with light track one group Physical operation key, to manually adjust the attribute of light material by physical operation key.
S505:Data are preserved, or according to light track attribute, the attribute generation of light material is to light material correspondence source document The control instruction of part, and control and acoustic image, audio effect processing control are played out to the source file of video material according to the control instruction System.It is similar with track of video, the attribute of specific control instruction audio track, the attribute correspondence of video material.
As shown in Fig. 6 and Figure 12, the panorama multi-channel audio control method based on change rail acoustic image processing of the present embodiment is also Increase device control (corresponding with following apparatus control module) can be selected, following steps are specifically included:
S601:Adding set track, one or more devices of (on the display interface) addition parallel to the time shaft Track 5 (region), one controlled device of each described device track correspondence, such as mechanical device.Needed before adding set track Confirm that controlled device is set up with integrated control platform to connect.Integrated control platform and controlled device can be set up by TCP and connected, Integrated control platform is for example arranged to TCP server, each controlled device is arranged to TCP Client, the TCP client termination of controlled device Enter the TCP server that integrated control platform is actively connected to after network.
S602:Editing device track attribute, it is Jing Yin that editable device track attribute includes lock on track, track.Device Track attribute is similar with audio track attribute, if device track selects Jing Yin, the attached control sub-track of whole of device track Any operation is not performed.
S603:Addition control sub-track, adds one or more sub- rails of control corresponding with a wherein described device track Road, parallel (and for) time shaft of each control sub-track, the corresponding described device of each control sub-track Controlled plant correspondence corresponding to track.
S604:Addition control material, adds the control material of respective type, and added according to the type of control sub-track Plus control sub-track on generate and control sub- material accordingly, the control sub-track length occupied by the control material and the control The total duration of material matches.
Controlling the type of sub-track includes TTL controls sub-track, Control sub-track, network control sub-track, phase Answer, may be added to that the control material of TTL control sub-tracks includes (such as TTL high level control element of TTL materials 511,512,513 Material, TTL low level controls material), may be added to that relay sub-track control material include relay material 521,522, 523rd, 524 (such as relay opens control material, relay and closes control material), may be added to that network controls the control material of sub-track Including network materials 501,502,503 (such as TCP/IP communication control material, UDP Control on Communication material, 232 Control on Communication materials, 485 protocol communications control material etc.).Sub- material is controlled by addition accordingly, corresponding control instruction, control son element can be sent Material is substantially exactly control instruction.
S605:The sub- material attribute of editor control, attribute include start position, final position, it is total when
It is long.Position of the sub- material in accordingly control sub-track is controlled to change starting point position by adjusting (transverse shifting) Put and final position, but relative position of the start position with final position on a timeline will not change, that is, control sub- material Length will not change.Control material start position be begin to send out with the corresponding control instruction of control material to it is corresponding by The time shaft moment of device is controlled, end position is to terminate the time shaft moment for sending control instruction.
Further, incidence relation can also be set between the control material in same control sub-track, makes to be located at The point position corresponding time shaft moment controls the corresponding control command of material to be not carried out success earlier, then will not send (collection Into control platform) or do not perform the later corresponding control of association control material of (controlled device) start position corresponding time shaft moment Instruction, the folding of such as curtain, elevating control.
Further, the guard time of certain time length can be set before and after the control material of control sub-track, i.e., in control Track can not add control material in guard time or can not send control command.
S606:Data are preserved, or according to control track and its attribute of control sub-track, the attribute generation control of control material System instruction, and the control instruction is sent to corresponding controlled device.
In addition, the present embodiment also provides a kind of performance integrated control system, as shown in fig. 7, the system includes integrated control platform 70, and select to include audio server 76, video server 77, lighting control module 78 and device control module 79.Wherein, The integrated control platform 70 includes Multi-track editing playback module 71, and it is integrated that the Multi-track editing playback module 71 can perform above-mentioned performance One or more controls in the control of control method sound intermediate frequency, video control, signal light control and device control are controlled, it is specific real Existing step will not be repeated here.Many rail playback editor control modules include audio frequency control module 72, and selection includes regarding Frequency control module 73, lighting control module 74 and device control module 75.
As shown in figure 8,72 pieces of the audio frequency control mould includes audio track add module 81, audio track attributes edit mould Block 82, audio material add module 83, audio material attributes edit module 84, audio sub-track add module 85, preservation data/ Audio frequency control instruction module 86 is exported, the function that these modules are realized is corresponded with abovementioned steps S201 to S206 respectively, It will not be repeated here, similarly hereinafter.
Further, the audio of the performance integrated control system plays control principle as shown in figure 13, the integrated control System also includes quick playback editor module, is physically entered module, many rails playback editor module, is used described in quick playback editor module In real-time edition audio material, and send corresponding control instruction and play the corresponding source document of audio material to audio server 76 Part, the module that is physically entered corresponding to the physical operations key on integrated control platform, for outside input set into control platform source of sound Carry out real-time tuning control.
Accordingly, provided with audio mixing matrix module, track matrix module, 3x1 output mix modules in the audio server With physics output module, the audio mixing matrix module can be received from the quick playback editor module, many rails playback editor's mould The audio signal that block is exported by the audio source file in the audio server that control command form is called, and it is described The audio signal of module output is physically entered, the similar track matrix module can also receive above-mentioned each road audio input.Institute Stating audio mixing matrix is used to export to the output mix module, the track matrix after carrying out stereo process to each road audio input Module is used to export to the output mix module after carrying out acoustic image trajectory processing to each road audio input.The output audio mixing mould Block can be received from audio mixing matrix module, track matrix module and the audio output for being physically entered module, after 3x1 stereo process Each physics output interface output through the physics output module.Wherein, acoustic image trajectory processing refers to according to acoustic image track number It is adjusted according to the level exported to each audio amplifier entity, makes the acoustic image of audio amplifier physical system within the period of setting length Run or remain stationary as along setting path.
In the present embodiment, the source file of audio material is stored on the audio server outside integrated control platform, and many rails are returned The source file that editor module did not directly invoked and handled audio material is put, and simply handles the category corresponding to the audio source file Property file, pass through and edit the adjustment property file of source file, addition/editor's acoustic image material and audio track and its sub-track Attribute realize to the indirect control of audio source file, therefore the corresponding output channel output of each audio track only for Control signal/instruction of audio source file, then performs audio source file by receiving the audio server of the control instruction again Various processing.
As shown in figure 14, many rail playback editor modules receive effective audio material list from audio server 76, Audio source file is not handled directly, audio source file is stored in the audio server, receiving corresponding control command After recall audio source file and carry out various audio effect processings, for example enter audio mixing matrix module and carry out stereo process, into track Matrix module carries out trajectory processing.Acoustic image material is actually also control command, can both be stored in integrated control platform, can also on Reach audio server.
As shown in figure 9, the video control module 73 includes track of video add module 91, track of video attributes edit mould Block 92, video material add module 93, video material attributes edit module 94, preservation data/output video control instruction module 95, the function that these modules are realized is corresponded with abovementioned steps S401 to 405 respectively.
Further, the video editing of the performance integrated control system is described with playing control principle as shown in figure 15 Integrated control platform does not perform the source file of video material directly, but by obtaining video material list and corresponding attribute text Part sends control instruction to video server, and video server connects to perform the source file of video material further according to control instruction and broadcast Put and effect operation.
As shown in Figure 10, the lighting control module 74 includes light track add module 110, light track attributes edit Module 120, light material add module 130, light material attributes edit module 140, preservation data/output signal light control instruction Module 150, the function that these modules are realized is corresponded with abovementioned steps S501 to 505 respectively.
Further, as shown in figure 16, the integrated control platform is also for the signal light control principle of the performance integrated control system Module is recorded provided with light signal, the light controling signal for recording the output of lamp control platform, and to being recorded in recording process Light controling signal stamp timing code, so as in the control of light track enterprising edlin.
As shown in figure 11, described device control module 75 includes device track add module 151, device track attributes edit Module 152, control sub-track add module 153, control material add module 154, control material attributes edit module 155, guarantor Deposit data/output device control instruction module 156, the function that these modules are realized respectively with abovementioned steps S601 to 606 1 One correspondence.
Further, as shown in figure 17, the integrated control platform is defeated for the device control principle of the performance integrated control system All kinds of device control signals gone out are exported to corresponding controlled plant through each protocol interface on device adapter.
In addition, the integrated control platform can also include the sound for being used to make (generation) acoustic image track data (i.e. acoustic image material) As track data generation module, the acoustic image track data obtained through the module is available for many rail playback editor's performing modules to adjust With so as to control audio server track matrix module to be controlled acoustic image track.Further, the present embodiment is provided One kind becomes rail acoustic image method for controlling trajectory, and the control method is by control main frame (such as integrated control platform, audio server) to entity The output level value of each audio amplifier node of sound box system is configured, and acoustic image is moved in the total duration of setting in the way of setting Or it is static, as shown in figure 18, the control method includes:
Generate acoustic image track data;
In the total duration corresponding to the acoustic image track data, according to acoustic image track data, each audio amplifier entity is adjusted Output level;
In the total duration, it will input to the output electricity of the incoming level of each audio amplifier physical signal and corresponding audio amplifier entity It is flat to be overlapped the level for obtaining each audio amplifier entity reality output.
Acoustic image track data refers within the period of setting length (i.e. the lasting total duration of acoustic image), in order that integrated control The acoustic image that each virtual audio amplifier node output level is formed in virtual audio amplifier distribution map on platform is run along path set in advance Move or remain stationary as, the output level data that each audio amplifier node is changed over time.I.e. acoustic image track data contains audio amplifier distribution Output level delta data of whole audio amplifier nodes in the setting length of time section in map.Come for each audio amplifier node Say, the setting time section in its output level size be over time change and change, it is also possible to be zero, negative even It is negative infinite, it is preferential using negative infinite.
The audio amplifier entity that each audio amplifier node corresponds in entity sound box system, each audio amplifier entity includes being located at together One or more audio amplifiers at one position.I.e. each audio amplifier node can correspond to one or more co-located audio amplifiers. In order that the virtual audio amplifier of each sound that entity sound box system can be accurately reappeared in acoustic image path, audio amplifier distribution map The position distribution of node should each audio amplifier provider location distribution be corresponding with entity sound box system, in particular so that each audio amplifier node it Between relative position relation, the relative position relation between each audio amplifier entity is corresponding.
The level of audio amplifier entity reality output is real with the audio amplifier in the level and above-mentioned acoustic image track data of input signal The output level superposition gained of the corresponding audio amplifier node of body.The former be input signal characteristic, it is real that the latter can be considered as audio amplifier The characteristic of body itself.At any one time, different input signals just has different incoming levels, and real for same audio amplifier Body, only one of which output level.It is, therefore, understood that acoustic image trajectory processing is at the output level to each audio amplifier entity Reason, to form default acoustic image path effect (including acoustic image transfixion).
Incoming level and the output level superposition of audio amplifier entity can be before audio signal actually enter audio amplifier entity first Handled, can also again be handled after audio amplifier entity is entered, this link for depending on whole public address system is constituted, with And whether audio amplifier entity is built-in with audio-frequency signal processing module, such as DSP unit.
The type of acoustic image track data includes:Pinpoint audio-visual-data, become rail acoustic image track data and variable domain acoustic image track. On integrated control platform during simulation generation acoustic image track data, the speed and process to acoustic image are controlled for convenience, and the present invention is real The line segment that is sequentially connected between some acoustic image TRAJECTORY CONTROL points of the example by discrete distribution in audio amplifier distribution map is applied to represent sound The path of running of picture, i.e., determine the path of running of acoustic image, Yi Jisheng by several acoustic image TRAJECTORY CONTROL points of discrete distribution The overall running time of picture.
Acoustic image is pinpointed, is referred within the period of setting length, the one or more audio amplifiers selected in audio amplifier distribution map Node constantly output level, and unselected audio amplifier node output level numerical value is zero or negative infinite situation.Correspondingly, it is fixed Point audio-visual-data, refers within the period of setting length, the one or more audio amplifier nodes selected in audio amplifier distribution map are held Continuous ground output level, and unselected audio amplifier node not output level, or output level numerical value is when being zero or negative infinite, each sound The output level data that case node is changed over time.For selected audio amplifier node, its output level is in the setting time Continuously (fluctuating change above and below may also having);And for unselected audio amplifier node, its output level in the setting time Remain negative infinite.
Become rail acoustic image, refer within the period of setting length, in order that acoustic image is run along preset path, each audio amplifier node According to the situation of certain rule output level.Correspondingly, become rail acoustic image track data, refer within the period of setting length, In order that acoustic image is run along preset path, the output level data that each audio amplifier node is changed over time.Acoustic image runs path simultaneously Need not be exactly accurate, and acoustic image motion (running) duration will not be very long, it is only necessary to substantially build audience and can recognize that Acoustic image run effect.
Variable domain acoustic image, referred within the period of setting length, in order that acoustic image is run along predeterminable area, each audio amplifier node The situation that changes according to certain rule of output level.Correspondingly, variable domain acoustic image track data referred in the time of setting length, In order that acoustic image is run along predeterminable area, the output level data that each audio amplifier node is changed over time.
As shown in figure 19, becoming rail acoustic image track data can obtain by the following method:
Audio amplifier node is set:In audio amplifier distribution map 10, addition or deletion audio amplifier node 11, referring to Figure 20.
Change audio amplifier nodal community:The attribute of audio amplifier node include audio amplifier coordinate, audio amplifier type, correspondence output channel, just Beginningization level, audio amplifier title etc..Audio amplifier node is represented in audio amplifier distribution map with audio amplifier icon, passes through Mobile loudspeaker box icon Its coordinate position can be changed.Audio amplifier type refers to full-range cabinet or ultralow frequency audio amplifier, and particular type can enter according to actual needs Row is divided.Each audio amplifier node in audio amplifier distribution map is all assigned an output channel, and each output channel corresponds to real An audio amplifier entity in body sound box system, each audio amplifier entity includes one or more audio amplifiers at co-located place.I.e. Each audio amplifier node can correspond to one or more co-located audio amplifiers.It is designed in audio amplifier distribution map in order to reappear Acoustic image run path, the position distribution of audio amplifier entity should be corresponding with the position distribution of audio amplifier node in audio amplifier distribution map.
Divide delta-shaped region:As shown in figure 20, according to the distribution of audio amplifier node, audio amplifier distribution map is divided multiple three Angular domain, three summits of each delta-shaped region are audio amplifier node;Each delta-shaped region is not overlapping, and each triangle Other audio amplifier nodes are not included in shape region, each audio amplifier node and an output channel (or audio playing apparatus) are right Should;
Further, it can also aid in determining delta-shaped region, the auxiliary sound box by setting auxiliary sound box node Node does not have corresponding output channel, not output level;
Setting acoustic image TRAJECTORY CONTROL point and path of running:What setting acoustic image was changed over time in audio amplifier distribution map runs Path, and several acoustic image TRAJECTORY CONTROL points run positioned at this on path.Setting acoustic image with the following method can be adopted to run Path and acoustic image TRAJECTORY CONTROL point:
1st, fixed point is built:Determine several acoustic image TRAJECTORY CONTROL points successively in audio amplifier distribution map
Several acoustic image TRAJECTORY CONTROL points are in turn connected to form acoustic image and run path by (coordinate) position, and first really Fixed acoustic image TRAJECTORY CONTROL point is zero at the time of corresponding, is from first sound of determination at the time of follow-up acoustic image TRAJECTORY CONTROL point correspondence The time undergone as TRAJECTORY CONTROL point to the current acoustic image TRAJECTORY CONTROL point of determination.For example can be by clicking on sign (such as Mouse pointer) acoustic image TRAJECTORY CONTROL point is clicked in audio amplifier distribution map, determine an acoustic image TRAJECTORY CONTROL point-to-point from clicking on Determination next acoustic image TRAJECTORY CONTROL point elapsed time is hit to determine the time span between two acoustic image tracing points, and most At the time of calculating is obtained corresponding to each acoustic image tracing point eventually;
2nd, dragging generation:Dragging marks (such as mouse pointer) along arbitrary line, curve or broken line in audio amplifier distribution map Motion path so that it is determined that acoustic image is run, during mark is dragged, since initial position, at interval of a period of time Ts all An acoustic image TRAJECTORY CONTROL point can be generated on the path of running.Ts is 108ms in the present embodiment;
Edit acoustic image TRAJECTORY CONTROL point attribute:The attribute of acoustic image TRAJECTORY CONTROL point includes acoustic image TRAJECTORY CONTROL point coordinates position Put, it is corresponding at the time of, to the time needed for next acoustic image TRAJECTORY CONTROL point.Can be to corresponding to selected acoustic image TRAJECTORY CONTROL point At the time of, the time needed for the selected acoustic image TRAJECTORY CONTROL point to next acoustic image TRAJECTORY CONTROL point and acoustic image path of running it is corresponding One or more of total duration is modified.
Assuming that being ti at the time of acoustic image TRAJECTORY CONTROL point i correspondences, acoustic image is run to next track from acoustic image TRAJECTORY CONTROL point i The point i+1 former required times are ti ', and acoustic image runs the corresponding total duration in path for t.This means acoustic image is run from initial position The time needed to acoustic image TRAJECTORY CONTROL point i is ti, and the time needed for acoustic image runs through whole path is t.
It is complete before the acoustic image TRAJECTORY CONTROL point if being modified at the time of to corresponding to a certain acoustic image TRAJECTORY CONTROL point Portion's acoustic image TRAJECTORY CONTROL point each self-corresponding moment, and the run total duration in path of acoustic image are required for being adjusted.If acoustic image It is ti at the time of TRAJECTORY CONTROL point i original correspondences, any sound before being Ti, acoustic image TRAJECTORY CONTROL point i at the time of corresponding after modification It is tj at the time of as TRAJECTORY CONTROL point J original correspondence, is Tj at the time of correspondence after adjustment, acoustic image is run the corresponding former total duration in path For t, amended total duration is T, then Tj=tj/ti* (Ti-ti), T=t+ (Ti-ti).The adjustment mode that the present invention is used Advantages of simple, and amount of calculation very little.
It is understood that after time modification corresponding to any acoustic image TRAJECTORY CONTROL point, the time increased or decreased can Whole acoustic image TRAJECTORY CONTROL points (i.e. aforementioned manner) before distributing to the acoustic image TRAJECTORY CONTROL point in identical duration ratio, also may be used With the whole acoustic image TRAJECTORY CONTROL points run by each acoustic image of duration pro rate on path.During using latter approach, it is assumed that sound It is ki as TRAJECTORY CONTROL point i prepares the increased time, then will be modified to Ti=at the time of acoustic image TRAJECTORY CONTROL point correspondence (ki*ti/t)+ti, i.e. time ki are not all to distinguish dispensing acoustic image TRAJECTORY CONTROL point, and each acoustic image TRAJECTORY CONTROL point is all Meeting distributes portion of time in it with the ratio for path total duration of running.
If being adjusted to the time needed for a certain acoustic image TRAJECTORY CONTROL point to next acoustic image TRAJECTORY CONTROL point, then next At the time of corresponding to acoustic image TRAJECTORY CONTROL point, and the run total duration in path of acoustic image is required for being adjusted.If acoustic image track Control point i original correspondence at the time of be ti, after modification correspondence at the time of be Ti, acoustic image from current acoustic image TRAJECTORY CONTROL point i run to Next tracing point i+1 former required times are Ti ' for the time needed for after ti ' modifications, when acoustic image runs the corresponding original in path always A length of t, amended total duration is T, then Ti+1=Ti+Ti ', T=t+ (Ti-ti)+(Ti '-ti ').
If modification acoustic image is run the corresponding total duration in path, then the acoustic image is run each acoustic image TRAJECTORY CONTROL on path It will be all adjusted at the time of point is corresponding and its to the time needed for next acoustic image TRAJECTORY CONTROL point.If acoustic image TRAJECTORY CONTROL point It is ti at the time of i original correspondences, is Ti at the time of corresponding after adjustment, acoustic image is run to next rail from current acoustic image TRAJECTORY CONTROL point i The mark point i+1 former required times are Ti ' for the time needed for after ti ' adjustment, and acoustic image runs the corresponding former total duration in path for t, Amended total duration is T, then Ti=ti/t* (T-t)+ti, Ti '=ti '/t* (T-t)+ti '.
Record becomes rail acoustic image track data:Record each audio amplifier node acoustic image along setting run path run during each The output level numerical value at moment.
For becoming rail acoustic image, the output electricity of the related audio amplifier node for generating acoustic image can be calculated by the following method Level values.As shown in figure 21, it is assumed that acoustic image tracing point i (being not necessarily acoustic image TRAJECTORY CONTROL point) is located to be enclosed by three audio amplifier nodes Delta-shaped region in, the acoustic image tracing point i correspondence at the time of be ti, now the three of vertex position audio amplifier node will be defeated Go out a certain size level, the output level value of other audio amplifier nodes in audio amplifier distribution map beyond these three audio amplifier nodes It is zero or negative infinite, so as to ensure that the acoustic image at ti moment in audio amplifier distribution map is located at above-mentioned acoustic image tracing point i.For this three The audio amplifier node A of any apex of angular domain, this moment ti output level are dBA1=10*lg (LA’/LA), wherein LA’ For the acoustic image tracing point to the delta-shaped region remaining two straight distances of summit institute structure, LAFor the audio amplifier node A to remaining The two straight distances of summit institute structure;
Further, each audio amplifier node can also set initialization level value.Assuming that above-mentioned audio amplifier node A initialization Level is dBA, then in above-mentioned moment ti, audio amplifier node A1 output level dBA1'=dBA+10*lg(LA’/LA).Its lingering sound Case node sets the output level of t after initialization level by that analogy.
Further, as shown in figure 20, any one is not fallen within if any part acoustic image tracing point (or acoustic image run path) In the delta-shaped region being made up of three audio amplifier nodes (movement locus end), then it is new to set to set auxiliary sound box node Delta-shaped region, to ensure that whole acoustic image tracing points are each fallen within corresponding delta-shaped region, the auxiliary sound box node does not have There is corresponding output channel, not output level, be only used for auxiliary and determine delta-shaped region;
Further, when recording the output level value of each audio amplifier node, can continuously it record, can also be according to certain Frequency is recorded.For the latter, refer to the output level numerical value that each audio amplifier node is recorded once at interval of certain time.In this reality Apply in example, the output of each audio amplifier node when acoustic image is run along setting path is recorded using the frequency of 25 frames/second or 30 frames/second Level value.The output level data of each audio amplifier node are recorded by certain frequency, it is possible to reduce data volume, accelerated to input audio Signal carries out processing speed during acoustic image trajectory processing, it is ensured that acoustic image is run the real-time of effect.
As shown in figure 22, variable domain acoustic image track data can be obtained by the following method:
S501:Audio amplifier node is set:In audio amplifier distribution map, addition or deletion audio amplifier node.
S502:Change audio amplifier nodal community:The attribute of audio amplifier node includes audio amplifier coordinate, audio amplifier type, correspondence and exports logical Road, initialization level, audio amplifier title etc..Audio amplifier node is represented in audio amplifier distribution map with audio amplifier icon, passes through mobile sound Case icon can change its coordinate position.Audio amplifier type refers to full-range cabinet or ultralow frequency audio amplifier, and particular type can be according to reality Need to be divided.Each audio amplifier node in audio amplifier distribution map is all assigned an output channel, each output channel pair One or more sounds at co-located place should be included in entity sound box system an audio amplifier entity, each audio amplifier entity Case.I.e. each audio amplifier node can correspond to one or more co-located audio amplifiers.In order to reappear in audio amplifier distribution map Designed acoustic image is run path, the position distribution pair that the position distribution of audio amplifier entity should be with audio amplifier node in audio amplifier distribution map Should.
S503:Setting acoustic image, which is run, path and divides acoustic image region:Multiple acoustic image regions are set in audio amplifier distribution map, Each acoustic image region includes several audio amplifier nodes, and sets the path of running for traveling through each acoustic image region.I.e. by acoustic image area Domain is considered as one " acoustic image point ", and acoustic image is run to another region from a region, until running through whole acoustic image regions successively.Can , can also be quick to set in the following manner with the acoustic image region of any each complementary overhangs of setting in audio amplifier distribution map Acoustic image region:
Set straight line acoustic image to run path in audio amplifier distribution map, and several acoustic image areas are set along acoustic image path of running Domain, the border in each acoustic image region is approximately perpendicular to the direction of running of the acoustic image.These acoustic image regions can be arranged side by side, and also may be used To be arranged at intervals, but in order to ensure to give birth to the continuity that acoustic image moves (running), mode is arranged side by side in prioritizing selection.These acoustic image areas The gross area in domain is less than or equal to the area of whole audio amplifier distribution map.When dividing acoustic image region, it can be divided using wide, It can be divided using not wide.
, can be by dragging sign (such as mouse pointer) come while setting acoustic image to run path and division during concrete operations Acoustic image region.Specifically:Dragging sign is moved to end in audio amplifier distribution map from a certain start position along some direction Point position, while dividing several acoustic image regions, each sound according to the air line distance equalization of the start position to the final position As the border in region is perpendicular to the straight line of the start position to the final position, and the width in each acoustic image region is impartial.Sound As run total duration for drag sign be moved to the time that middle final position is undergone from original position.
Assuming that air line distance of the sign from start position to final position is R, total duration used is t, and equalization is drawn The quantity for dividing acoustic image region is n, then will automatically generate the n acoustic image region that width is R/n, and corresponding to each acoustic image region At the time of be t/n.
S504:Edit acoustic image zone time attribute, including at the time of corresponding to acoustic image region, current acoustic image region is to next The time required to acoustic image region and acoustic image is run total duration.The editor of acoustic image area attribute compiles with becoming rail acoustic image tracing point attribute Collect similar.If being modified at the time of to corresponding to a certain acoustic image region, whole acoustic image regions before the sound area domain are each At the time of correspondence, and the total duration that acoustic image is run is required for being adjusted.If to a certain acoustic image region to next acoustic image region The required time is adjusted, then at the time of corresponding to next acoustic image region, and acoustic image run total duration be required for progress Adjustment.If modification acoustic image is run total duration, then at the time of corresponding to each acoustic image region that the acoustic image is run on path and its It will be all adjusted to the time needed for next acoustic image region.
S505:Variable domain acoustic image track data is recorded, each audio amplifier node is recorded and is run successively in acoustic image along path of running is set During each acoustic image region, the output level numerical value at each moment.
For variable domain acoustic image, the output electricity of the related audio amplifier node for generating acoustic image can be calculated by the following method Level values.
As shown in figure 23, it is assumed that the acoustic image of a certain variable domain track runs total duration for t, 4 equal widths are divided into altogether Acoustic image region, acoustic image of the acoustic image along straight line is run, and from some acoustic image regions 1, (acoustic image region i) is to next acoustic image region in path 2 (acoustic image region i+1) are mobile, and the run midpoint of line segment of the path in acoustic image region 1 of acoustic image is acoustic image TRAJECTORY CONTROL point 1 (acoustic image TRAJECTORY CONTROL point i), the run midpoint of line segment of the path in the acoustic image region 2 of acoustic image is the (sound of acoustic image TRAJECTORY CONTROL point 2 As TRAJECTORY CONTROL point i+1).During acoustic image tracing point P runs to next acoustic image region 2 from current acoustic image region 1, acoustic image The output level of each audio amplifier node is domain 1dB (domain dB in region 1i), the output level of each audio amplifier node in acoustic image region 2 For domain 2dB (domain dBi+1), the audio amplifier node output level beyond the two acoustic image regions is zero or negative infinite.
Domain 1dB values=10logeη÷2.3025851
Domain 2dB values=10logeβ÷2.3025851
Wherein, l12The distance of acoustic image TRAJECTORY CONTROL point 2, l are arrived for acoustic image TRAJECTORY CONTROL point 11PFor acoustic image TRAJECTORY CONTROL point 1 To acoustic image tracing point P distance, lp2For current acoustic image tracing point P to acoustic image TRAJECTORY CONTROL point 2 distance.Can be with from above-mentioned formula Find out that each acoustic image tracing point there are two acoustic image region output levels, but when acoustic image tracing point is controlled positioned at each acoustic image track During system point, when only one of which acoustic image region output level, such as acoustic image tracing point P move to acoustic image TRAJECTORY CONTROL point 2, this When there was only the output level of acoustic image region 2, and the output level in acoustic image region 1 is zero.
When recording the output level value of each audio amplifier node in variable domain acoustic image track, can continuously it record, can also be according to one Fixed frequency is recorded.For the latter, refer to the output level numerical value that each audio amplifier node is recorded once at interval of certain time. In the present embodiment, each audio amplifier node when acoustic image is run along setting path is recorded using the frequency of 25 frames/second or 30 frames/second Output level value.The output level data of each audio amplifier node are recorded by certain frequency, it is possible to reduce data volume, accelerated to input Audio signal carries out processing speed during acoustic image trajectory processing, it is ensured that acoustic image is run the real-time of effect.
As shown in figure 24, fixed point acoustic image track data can be obtained by the following method:
S701:Audio amplifier node is set:In audio amplifier distribution map, addition or deletion audio amplifier node.
S702:Change audio amplifier nodal community:The attribute of audio amplifier node includes audio amplifier coordinate, audio amplifier type, correspondence and exports logical Road, initialization level, audio amplifier title etc..
S703:Acoustic image tracing point and total duration are set, one or more audio amplifier nodes, institute are selected in audio amplifier distribution map Each selected audio amplifier node sets acoustic image tracing point in each audio amplifier node residence time as acoustic image tracing point.
S704:Record fixed point acoustic image track data:Record the output at each audio amplifier node each moment in above-mentioned total duration Level numerical value.
In addition, the acoustic image track data of the present invention, which also includes audio amplifier, links data.Audio amplifier link refers to hold audio amplifier node Row is operation associated, when associating the active audio amplifier node output level in audio amplifier node, associates the passive sound box section of audio amplifier node Put automatic output level.Audio amplifier link data are that several selected audio amplifier nodes are associated after operation, passive sound box Output level difference of the node relative to active audio amplifier node.For being necessary the audio amplifier node of link association in spatial distribution Distance can relatively.
As shown in figure 25, audio amplifier link data can be obtained by the following method:
S801:Audio amplifier node is set:In audio amplifier distribution map, addition or deletion audio amplifier node.
S802:Change audio amplifier nodal community:The attribute of audio amplifier node includes audio amplifier coordinate, audio amplifier class
Type, correspondence output channel, initialization level, audio amplifier title etc..
S803:Audio amplifier node link relation is set:Selected ultralow frequency audio amplifier node is connected to neighbouring multiple full ranges Audio amplifier node;
S804:Record audio amplifier link data:The output level DerivedTrim of the ultralow frequency audio amplifier is calculated and records, The output level DerivedTrim=10*log (Ratio)+DeriveddB, Ratio=∑ 10(Trim-i+LinkTrim-i)/10, its Middle Trim-i is the output level value of any full-range cabinet node i itself, and LinkTrim-i is the full-range cabinet section The setting of point i originals and the level that links of the ultralow frequency audio amplifier, DeriveddB is the initialization level of the ultralow frequency audio amplifier node Value, DerivedTrim is the output level that the ultralow frequency audio amplifier node sets are linked to after some full-range cabinet nodes Value.One ultralow frequency audio amplifier node may be configured as linking to one or more full-range cabinet nodes, after link, when full-range cabinet section Point output level, then the ultralow frequency audio amplifier node linked with it will output level automatically, to coordinate full-range cabinet node Build certain sound effect.For a ultralow frequency audio amplifier node link to a full-range cabinet node, both only need to be considered Distance, source of sound property and required audio etc., ultralow frequency audio amplifier node can be set and follow the full-range cabinet node automatically Output level during broadcasting, that is, link level.
As shown in figure 26, it is assumed that the ultralow frequency audio amplifier node 24 in audio amplifier distribution map links to 3 neighbouring full range sounds Case node, itself output level value of full-range cabinet node is respectively Trim1, Trim2 and Trim3, ultralow frequency audio amplifier node 24 Originally the level value that links with each full-range cabinet point was respectively LinkTrim1, LinkTrim2 and LinkTrim3.If level is overall Addition ratio is Ratio, and ultralow frequency audio amplifier node 24 itself initialization level value is DeriveddB, last ultralow frequency audio amplifier section 24 output level value of point are DerivedTrim, then have:
Ratio=10(Trim1+LinkTrim1)/10+10(Trim2+LinkTrim2)/10+10(Trim3+LinkTrim3)/10
DerivedTrim=10*log (Ratio)+DeriveddB
When Ratio is more than 1, ultralow frequency audio amplifier node 24 is linked to gained output level after these three full-range cabinet nodes It is initialization level value for 0, i.e. its final output level value.

Claims (9)

1. it is a kind of based on the panorama multi-channel audio control method for becoming the processing of rail acoustic image, it is characterised in that including:
Audio track is added, one or more audio tracks that are parallel and being aligned in time shaft are added on display interface, each One output channel of the audio track correspondence;
Edit audio track attribute;
Audio material is added, one or more audio materials, and generation and the sound in audio track are added in audio track The corresponding audio material icon of frequency material, the length of the audio track occupied by the audio material icon is total with the audio material Duration matches;
Edit audio material attribute, the audio material attribute include start position, final position, the time started, the end time, Total duration and reproduction time length;
Audio sub-track is added, one or more audio sub-tracks corresponding with audio track wherein described in one are added, it is each described Audio sub-track is parallel to the time shaft, the output channel pair of the corresponding audio track of the audio sub-track Should, the type of the audio sub-track includes acoustic image sub-track;
Acoustic image sub-track harmony pixel material is added, one or more acoustic image materials are added in acoustic image sub-track, and in the acoustic image Acoustic image material icon corresponding with the acoustic image material is generated in sub-track, the acoustic image sub-track occupied by the acoustic image material icon Length matches with the total duration corresponding to the acoustic image material;
Edit acoustic image sub-track attribute;
Edit acoustic image material attribute, the acoustic image material attribute include start position, final position, the time started, the end time, Total duration and reproduction time length;
The acoustic image material is acoustic image track data, and the acoustic image track data includes becoming rail acoustic image track data and audio amplifier link Data, wherein:
The change rail acoustic image track data is obtained by the following method:
Audio amplifier node is set:In audio amplifier distribution map, addition or deletion audio amplifier node;
Change audio amplifier nodal community:The attribute of audio amplifier node includes audio amplifier coordinate, audio amplifier type, corresponds to output channel and initial Change level;
Divide delta-shaped region:According to the distribution of audio amplifier node, audio amplifier distribution map is divided into multiple delta-shaped regions, Mei Gesan Three summits of angular domain are audio amplifier node;
Setting acoustic image TRAJECTORY CONTROL point and path of running:The road of running for setting acoustic image to change over time in audio amplifier distribution map Footpath, and several acoustic image TRAJECTORY CONTROL points run positioned at this on path;
Edit acoustic image TRAJECTORY CONTROL point attribute:The attribute of acoustic image TRAJECTORY CONTROL point includes acoustic image TRAJECTORY CONTROL point coordinates position, institute At the time of correspondence and to the time needed for next acoustic image TRAJECTORY CONTROL point;
Record becomes rail acoustic image track data:Record each audio amplifier node and set during path of running is run each moment on acoustic image edge Output level numerical value;
The audio amplifier link data are obtained as follows:
Audio amplifier node is set:In audio amplifier distribution map, addition or deletion audio amplifier node;
Change audio amplifier nodal community:The attribute of audio amplifier node includes audio amplifier coordinate, audio amplifier type, corresponds to output channel and initial Change level;
Audio amplifier node link relation is set:Selected ultralow frequency audio amplifier node is connected to neighbouring multiple full-range cabinet nodes;
Record audio amplifier link data:Calculate and record the output level DerivedTrim of the ultralow frequency audio amplifier, the output level DerivedTrim=10*log (Ratio)+DeriveddB, Ratio=∑ 10(Trim-i+LinkTrim-i)/10, wherein Trim-i is The output level value of any full-range cabinet node i itself, LinkTrim-i for described full-range cabinet node i original setting with The link level of the ultralow frequency audio amplifier, DeriveddB is the initialization level value of the ultralow frequency audio amplifier node, DerivedTrim is the output level value that the ultralow frequency audio amplifier node sets are linked to after some full-range cabinet nodes.
2. it is according to claim 1 based on the panorama multi-channel audio control method for becoming the processing of rail acoustic image, it is characterised in that Generate it is described change rail acoustic image track data when, each audio amplifier node acoustic image along setting run path run during each The output level value calculating method at moment is:If acoustic image tracing point i is located at the delta enclosed by three audio amplifier nodes It is ti at the time of acoustic image tracing point i correspondences, for the audio amplifier node A of any apex of the delta-shaped region, now in domain The output level for carving ti is dBA1=10*lg (LA’/LA), wherein LA' for the acoustic image tracing point to the delta-shaped region remaining two top The point straight distance of institute's structure, LAIt is the audio amplifier node A to remaining two straight distance of summit institute structure, in audio amplifier distribution map On the output level value of other audio amplifier nodes be zero or negative infinite.
3. it is according to claim 2 based on the panorama multi-channel audio control method for becoming the processing of rail acoustic image, it is characterised in that When generating the change rail acoustic image track data, each audio amplifier node is provided with initialization level value, if the audio amplifier node A Initialization level be dBA, in moment ti, the output level dB of the audio amplifier node AA1'=dBA+10*lg(LA’/LA), its Lingering sound case node sets the output level of t after initialization level by that analogy.
4. it is according to claim 1 based on the panorama multi-channel audio control method for becoming the processing of rail acoustic image, it is characterised in that When generating the change rail acoustic image track data, setting acoustic image TRAJECTORY CONTROL point with the following method and path of running are adopted:Described The position of several acoustic image TRAJECTORY CONTROL points is determined in audio amplifier distribution map successively, by several acoustic image TRAJECTORY CONTROL points successively Connection forms acoustic image and run path, is zero at the time of the acoustic image TRAJECTORY CONTROL point correspondence of first determination, follow-up acoustic image track control At the time of system point correspondence for from determine first acoustic image TRAJECTORY CONTROL point to determine that current acoustic image TRAJECTORY CONTROL point undergone when Between.
5. it is according to claim 1 based on the panorama multi-channel audio control method for becoming the processing of rail acoustic image, it is characterised in that When generating the change rail acoustic image track data, setting acoustic image TRAJECTORY CONTROL point with the following method and path of running are adopted:In audio amplifier Dragging mark moves the path so that it is determined that acoustic image is run along arbitrary line, curve or broken line in distribution map, in dragging mark During, since initial position, an acoustic image TRAJECTORY CONTROL point can be all generated on the path of running at interval of a period of time.
6. it is according to claim 1 based on the panorama multi-channel audio control method for becoming the processing of rail acoustic image, it is characterised in that Generate it is described change rail acoustic image track data when, edit acoustic image TRAJECTORY CONTROL point it is corresponding at the time of, if acoustic image track control It is ti at the time of system point i original correspondences, is Ti at the time of corresponding after modification, any acoustic image track before acoustic image TRAJECTORY CONTROL point i It is tj at the time of control point J original correspondences, is Tj at the time of corresponding after adjustment, acoustic image is run the corresponding former total duration in path for t, repaiied Total duration after changing is T, then Tj=tj/ti* (Ti-ti), T=t+ (Ti-ti).
7. it is according to claim 1 based on the panorama multi-channel audio control method for becoming the processing of rail acoustic image, it is characterised in that When generating the change rail acoustic image track data, if there is part acoustic image tracing point not fall within any one by three audio amplifier node structures Into delta-shaped region in, set the auxiliary sound box node audio amplifier node adjacent with the part acoustic image tracing point to set new three Angular domain, makes run whole acoustic image tracing points in path of the acoustic image fall into corresponding delta-shaped region, the auxiliary sound Case node is without corresponding output channel, not output level.
8. it is according to claim 1 based on the panorama multi-channel audio control method for becoming the processing of rail acoustic image, it is characterised in that Methods described also includes:
Add audio sub-track;
The attribute of audio sub-track is edited, the attribute of the audio sub-track includes audio effect processing parameter, by changing audio The sound effect parameters of track adjust the audio of the affiliated audio track correspondence output channel of the audio sub-track.
9. it is according to claim 8 based on the panorama multi-channel audio control method for becoming the processing of rail acoustic image, it is characterised in that:
The type of the audio sub-track includes volume, gain sub-track and EQ sub-tracks, and each audio track sets one Volume and gain sub-track, and one or more EQ sub-tracks, the volume and gain sub-track are used for affiliated audio track The signal level size of the corresponding output channel in road is adjusted, and the EQ sub-tracks are used for corresponding to affiliated audio track defeated The signal for going out the output of passage carries out EQ audio effect processings.
CN201310754828.1A 2013-12-31 2013-12-31 Based on the panorama multi-channel audio control method for becoming the processing of rail acoustic image Active CN104754242B (en)

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