CN105711096A - Data processing method and electronic equipment - Google Patents

Data processing method and electronic equipment Download PDF

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Publication number
CN105711096A
CN105711096A CN201610162824.8A CN201610162824A CN105711096A CN 105711096 A CN105711096 A CN 105711096A CN 201610162824 A CN201610162824 A CN 201610162824A CN 105711096 A CN105711096 A CN 105711096A
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destination object
electronic equipment
data
model
information
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CN105711096B (en
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黄志辉
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Lenovo Beijing Ltd
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Lenovo Beijing Ltd
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B33ADDITIVE MANUFACTURING TECHNOLOGY
    • B33YADDITIVE MANUFACTURING, i.e. MANUFACTURING OF THREE-DIMENSIONAL [3-D] OBJECTS BY ADDITIVE DEPOSITION, ADDITIVE AGGLOMERATION OR ADDITIVE LAYERING, e.g. BY 3-D PRINTING, STEREOLITHOGRAPHY OR SELECTIVE LASER SINTERING
    • B33Y50/00Data acquisition or data processing for additive manufacturing
    • B33Y50/02Data acquisition or data processing for additive manufacturing for controlling or regulating additive manufacturing processes

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  • Chemical & Material Sciences (AREA)
  • Engineering & Computer Science (AREA)
  • Manufacturing & Machinery (AREA)
  • Materials Engineering (AREA)
  • Processing Or Creating Images (AREA)
  • User Interface Of Digital Computer (AREA)

Abstract

The invention discloses a data processing method. The data processing method comprises the steps that at least three pieces of position information are acquired through electronic equipment, and the position information is position information of a target object at each observation position relative to the electronic equipment when the observation positions of the electronic equipment to the target object are kept at at least three positions; at least three pieces of second information at the at least three positions are collected through the electronic equipment, and the second information is three-dimensional data, collected at all the positions, of the target object; and based on the at least three pieces of second information, a model of the target object is built, so that the model of the target object is output by second electronic equipment, wherein the target object and the model of the target object both achieve a three-dimensional effect. The invention further discloses the electronic equipment. At least fast printing can be achieved, and user experience can be improved.

Description

Data processing method and electronic equipment
Technical field
The present invention relates to data processing technique, be specifically related to a kind of data and process and electronic equipment.
Background technology
In 3D printing technique, destination object such as water tumbler for pre-print, by PC or control computer this water tumbler is scanned in the three-dimensional data such as length of diverse location, and transmit these scanning data to 3D printing device, carried out the printing of water tumbler by this 3D printing device.Wherein, the position of PC or control computer is generally fixing, being not easily moved about, it is necessary to manually the change of water tumbler present position is obtained the three-dimensional data on diverse location, usual manual change's water tumbler location extends the output duration of 3D printing device undoubtedly.
Summary of the invention
For solving the technical problem of existing existence, the embodiment of the present invention provides a kind of data processing method and electronic equipment, at least can shorten the output duration of 3D printing device, it is achieved fast print, and promotes Consumer's Experience.
The technical scheme of the embodiment of the present invention is achieved in that
The embodiment of the present invention provides a kind of data processing method, and described method is applied in wearable electronic equipment, and described method includes:
By described electronic equipment obtain at least three positional information, described positional information be when the observation place of described destination object is maintained at least three position by described electronic equipment on each observation place described destination object relative to the positional information of described electronic equipment;
By electronic equipment collection at least three the second information on described at least three position, described second information is the three-dimensional data of the described destination object collected on each position;
Based on described at least three the second information, setting up the model of described destination object, so that described second electronic equipment output is for the model of described destination object, the model of wherein said destination object and described destination object is all rendered as stereoeffect.
Wherein, described obtain at least three positional information by described electronic equipment, by electronic equipment collection at least three the second information on described at least three position, including:
When described destination object is in primary importance relative to described electronic equipment, gathers the three-dimensional data of described destination object when described primary importance, obtain the first data;
When described destination object is in the second position relative to described electronic equipment, gathers the three-dimensional data of described destination object when the described second position, obtain the second data;
When described destination object is in three positions relative to described electronic equipment, gathers the three-dimensional data of described destination object when described three position, obtain the 3rd data;
Accordingly, described set up the model of described destination object based on described at least three the second information, including:
First data, the second data and the 3rd data are carried out predetermined process, obtains the model of described destination object.
Wherein, described first data, the second data and the 3rd data are carried out predetermined process, obtain the model of described destination object, including:
Respectively at the first data, the second data and the 3rd extracting data characteristic point information;
According to the characteristic point information extracted, draw the characteristic point of described destination object, to obtain the model of described destination object.
Wherein, described method also includes:
When the observation place of described destination object is maintained on each position by described electronic equipment,
Detected by the specific part of the described electronic equipment object to wearing described electronic equipment;
When detecting that described specific part moves and movement locus is desired trajectory, generate acquisition instructions;
Respond described acquisition instructions, to described at least three the second information.
Wherein, described model at least includes the first parameter, and described first parameter is the parameter characterizing the shape of model of described destination object, size and/or color;
Accordingly, after obtaining the model of described destination object, described method includes:
Obtaining the first instruction, described first instruction is at least used for updating the first parameter;
Respond the first instruction, based on predetermined policy, the first parameter is updated, to change the shape of described model, size and/or color.
The embodiment of the present invention also provides for a kind of electronic equipment, and described electronic equipment includes:
First processor, for obtaining at least three positional information, described positional information be when the observation place of described destination object is maintained at least three position by described electronic equipment on each observation place described destination object relative to the positional information of described electronic equipment;
Harvester, for gathering at least three the second information on described at least three position, described second information is the three-dimensional data of the described destination object collected on each position;
Second processor, for based on described at least three the second information, setting up the model of described destination object, so that described second electronic equipment output is for the model of described destination object, the model of wherein said destination object and described destination object is all rendered as stereoeffect.
Wherein,
When described first processor determines that described destination object is in primary importance relative to described electronic equipment, trigger described harvester collection three-dimensional data of described destination object when described primary importance, obtain the first data;
When described first processor determines that described destination object is in the second position relative to described electronic equipment, trigger described harvester collection three-dimensional data of described destination object when the described second position, obtain the second data;
When described first processor determines that described destination object is in three positions relative to described electronic equipment, trigger described harvester collection three-dimensional data of described destination object when described three position, obtain the 3rd data;
Accordingly, described second processor, for the first data, the second data and the 3rd data are carried out predetermined process, obtain the model of described destination object.
Wherein, described second processor, it is additionally operable to:
Respectively at the first data, the second data and the 3rd extracting data characteristic point information;
According to the characteristic point information extracted, draw the characteristic point of described destination object, to obtain the model of described destination object.
Wherein, described electronic equipment also includes:
3rd processor, is additionally operable to, when the observation place of described destination object is maintained on each position by described electronic equipment, the specific part of the object wearing described electronic equipment be detected;
When detecting that described specific part moves and movement locus is desired trajectory, generate acquisition instructions;
And trigger the described harvester described acquisition instructions of response, to described at least three the second information.
Wherein, described second processor, it is additionally operable to:
Described model at least includes the first parameter, and described first parameter is the parameter characterizing the shape of model of described destination object, size and/or color;
Obtaining the first instruction, described first instruction is at least used for updating the first parameter;
Respond the first instruction, based on predetermined policy, the first parameter is updated, to change the shape of described model, size and/or color.
The data processing method of embodiment of the present invention offer and electronic equipment, described method is applied in wearable electronic equipment, described method includes: by described electronic equipment obtain at least three positional information, described positional information be when the observation place of described destination object is maintained at least three position by described electronic equipment on each observation place described destination object relative to the positional information of described electronic equipment;By electronic equipment collection at least three the second information on described at least three position, described second information is the three-dimensional data of the described destination object collected on each position;Based on described at least three the second information, setting up the model of described destination object, so that described second electronic equipment output is for the model of described destination object, the model of wherein said destination object and described destination object is all rendered as stereoeffect.Destination object location in the present embodiment is fixing and is obtained the different viewing angles to destination object by moving of electronic equipment, at least can shorten the output duration of 3D printing device, it is achieved fast print, and promotes Consumer's Experience.
Accompanying drawing explanation
Fig. 1 be the first embodiment of data processing method provided by the invention realize schematic flow sheet;
Fig. 2 be the second embodiment of data processing method provided by the invention realize schematic flow sheet;
Fig. 3 is the change schematic diagram of destination object observation place provided by the invention;
Fig. 4 is the schematic diagram that implementation model provided by the invention is set up;
Fig. 5 is the composition structural representation of the first embodiment of electronic equipment provided by the invention;
Fig. 6 is the composition structural representation of the second embodiment of electronic equipment provided by the invention.
Detailed description of the invention
Below in conjunction with accompanying drawing to a preferred embodiment of the present invention will be described in detail, it will be appreciated that preferred embodiment described below is merely to illustrate and explains the present invention, is not intended to limit the present invention.
In each embodiment in the data processing method and electronic equipment of present invention below offer, involved electronic equipment can be: all kinds computer such as industrial control computer, personal computer, integral computer, panel computer, mobile phone, electronic reader etc., it is also possible to for Wearable such as intelligent glasses, intelligent watch, intelligent shoe.Currently preferred electronic equipment is intelligent glasses.
The first embodiment of data processing method provided by the invention, is applied in the first electronic equipment, and this first electronic equipment is preferably wearable electronic equipment such as intelligent glasses.This first electronic equipment can communicate with the second electronic equipment, and the second electronic equipment is specifically as follows 3D printing device, has printout function.
Fig. 1 be the first embodiment of data processing method provided by the invention realize schematic flow sheet;As it is shown in figure 1, described method includes:
Step 101: by described electronic equipment obtain at least three positional information, described positional information be when the observation place of described destination object is maintained at least three position by described electronic equipment on each observation place described destination object relative to the positional information of described electronic equipment;
Here, described destination object be in real life it can be seen that any three-dimensional real object, such as water tumbler, pen container, flowerpot, computer monitor etc..The described electronic equipment related in step 101 is the first electronic equipment.Destination object location being maintained static in the present embodiment, the first electronic equipment can change the observation place to destination object along with the movement of user wearing the first electronic equipment.First electronic equipment at least needs three observation places to gather the related data of destination object.Owing to the first electronic equipment itself is mobile, and destination object location is fixed, so when the first electronic equipment is often on an observation place, when being required for being gathered on this observation place by harvester, destination object is relative to the positional information of the first electronic equipment.Such as, when the first electronic equipment is in observation place 1, destination object is positioned at the dead ahead of the first electronic equipment;When the first electronic equipment is in observation place 2, destination object is positioned at right front of the first electronic equipment etc..
Step 102: by electronic equipment collection at least three the second information on described at least three position, described second information is the three-dimensional data of the described destination object collected on each position;
Here, when the first electronic equipment is in each observation place to destination object, on each observation place, the three-dimensional data of destination object is acquired by the first electronic equipment.Described three-dimensional data can be the magnitude numerical value of destination object length, width and height in space;Described three-dimensional data can also be image.
Step 103: based on described at least three the second information, set up the model of described destination object, so that described second electronic equipment output is for the model of described destination object, the model of wherein said destination object and described destination object is all rendered as stereoeffect.
Here, first electronic equipment is based at least three the second information collected, set up the model of destination object, first electronic equipment is attached with the second electronic equipment in advance, the model of the destination object that the first electronic equipment is set up is carried out 3D printing by the second electronic equipment, prints the destination object with stereoeffect.
In the embodiment of the present invention, it is fixing depending on destination object location, electronic equipment can change the observation place to destination object along with the movement of the user of wearable electronic device, when electronic equipment is on each observation place, all the three-dimensional data of destination object is acquired, and set up the threedimensional model of destination object based on the information of collecting, and transmit to the second electronic equipment and carry out 3D printing.Destination object location in the present embodiment is fixing and is obtained the different viewing angles to destination object by moving of electronic equipment, with the position manually changing destination object in prior art with compared with obtaining different viewing angles, this programme can realize quick obtaining and the 3D printing of the threedimensional model to destination object, the output duration of 3D printing device can be shortened, it is achieved fast print.
Second embodiment of data processing method provided by the invention, is applied in the first electronic equipment, and this first electronic equipment is preferably wearable electronic equipment such as intelligent glasses.This first electronic equipment can communicate with the second electronic equipment, and the second electronic equipment is specifically as follows 3D printing device, has printout function.
Fig. 2 be the second embodiment of data processing method provided by the invention realize schematic flow sheet;As in figure 2 it is shown, described method includes:
Step 201: when described destination object is in primary importance relative to described electronic equipment, gathers the three-dimensional data of described destination object when described primary importance, obtains the first data;When described destination object is in the second position relative to described electronic equipment, gathers the three-dimensional data of described destination object when the described second position, obtain the second data;When described destination object is in three positions relative to described electronic equipment, gathers the three-dimensional data of described destination object when described three position, obtain the 3rd data;
Here, destination object location maintains static, and electronic equipment can change the observation place to destination object along with the movement of the user of wearable electronic device.It is in three diverse locations and electronic equipment for destination object relative to the position of electronic equipment and the observation of destination object is in three different observation places, electronic equipment gathers the three-dimensional data of destination object time on each position is observed, and obtains the first data, the second data and the 3rd data.
Aforementioned schemes can obtain at least three positional information as this programme by described electronic equipment, and gathers further describing of at least three the second information on described at least three position.
Step 202: the first data, the second data and the 3rd data are carried out predetermined process, obtain the model of described destination object, so that described second electronic equipment output is for the model of described destination object, the model of wherein said destination object and described destination object is all rendered as stereoeffect.
Here, when electronic equipment collects the first data, the second data and three data, the characteristic point information of destination object is all included in the middle of each data, so respectively at the first data, the second data and the 3rd extracting data characteristic point information, according to the characteristic point information extracted, draw the characteristic point of described destination object, to obtain the model of described destination object.The model that first electronic equipment is set up by the second electronic equipment carries out 3D printing, obtains the output model identical with destination object, and this identical output model can be identical in size, shape etc..Destination object location in the present embodiment is fixing and by changing electronic equipment, its observation place obtains destination object three-dimensional data in different viewing angles, with the position manually changing destination object in prior art with compared with obtaining different viewing angles, this programme can realize quick obtaining and the 3D printing of the threedimensional model to destination object, the output duration of 3D printing device can be shortened, it is achieved fast print.
In one preferred embodiment of the present invention, described method also includes: when the observation place of described destination object is maintained on each position by described electronic equipment, is detected by the specific part of the described electronic equipment object to wearing described electronic equipment;When detecting that described specific part moves and movement locus is desired trajectory, generate acquisition instructions;Respond described acquisition instructions, to described at least three the second information.In actual applications, after being there is once change by electronic equipment in the observation place of destination object, on observation place after the change, the three-dimensional data of destination object will not be acquired by electronic equipment at once, but receiving certain acquisition instructions rear, the three-dimensional data of the destination object on this observation place is acquired.Based on this, in the present embodiment, after electronic equipment is in each observation place, whether the eyeball of the specific part such as arm or eyes of the user wearing this electronic equipment is moved and detects, when detecting that arm or eyeball move and take place along that the motion such as arm of desired trajectory lifts from front, eyeball moves to the left side etc. from centre position, generate the acquisition instructions that the three-dimensional data to destination object is acquired, electronic equipment responds this acquisition instructions, and the three-dimensional data of the destination object being on each observation place is acquired.As can be seen here, in this programme, on each observation place, electronic equipment can generate the acquisition instructions for gathering destination object three-dimensional data based on the change of the movement locus of the specific part of user, the instruction to equipment can be realized control without additionally increasing Artificial Control operation, improve Consumer's Experience.
In one preferred embodiment of the present invention, described model at least includes the first parameter, and described first parameter is the parameter characterizing the shape of model of described destination object, size and/or color;
Accordingly, after obtaining the model of described destination object, described method includes: obtaining the first instruction, described first instruction is at least used for updating the first parameter;Respond the first instruction, based on predetermined policy, the first parameter is updated, to change the shape of described model, size and/or color.
In actual applications, the model of the destination object that usual electronic equipment is set up in size, shape, color etc. on be equal to destination object itself, in this programme after setting up this model, the shape of model, size and/or color can be changed based on the instruction (parameter renewal instruction) that the first parameter is updated.Electronic equipment can generate parameter and update instruction when the scheduled operation of user being detected.Wherein, scheduled operation can be that user is to the click or touch-control etc. of the pre-determined number of function button, touch area on electronic equipment;Scheduled operation can also be the predetermined voice such as " please model being narrowed down to half " of user's input that electronic equipment detects;Scheduled operation can also is that the eyeball of the specific part such as arm or eyes of the user of wearable electronic device occurs predetermined motion forwards to lift twice continuously such as arm or continuous nictation two is inferior, and the predetermined motion of user's specific part herein need to distinguish with the aforesaid movement locus producing acquisition instructions.Updating instruction based on parameter, the shape of model, size and/or color are changed by electronic equipment, as to reduce model be original half, the color of model is become pink colour etc..As can be seen here, the present embodiment is after establishing model, it is possible to according to the actually used needs of user, in shape, size and/or color etc., model is changed, and promotes Consumer's Experience.
Below in conjunction with Fig. 3 and Fig. 4, the present invention is described further.
For electronic equipment be intelligent glasses, destination object for water tumbler, intelligent glasses can change the observation place to water tumbler along with the movement of customer location wearing this intelligent glasses.As shown in Figure 3, the observation place of water tumbler is first positioned at position 1 by electronic equipment, now destination object be positioned at electronic equipment just/direction by east, electronic equipment detect the eyeball of user along desired trajectory carry out moving as moved to the left side from centre position time, generate data acquisition instructions and respond this instruction, gather the three-dimensional data of destination object when this position, obtain the first data;Change an observation place, move from observation place 1 to observation place 2, destination object is positioned at the direction, due south of electronic equipment, electronic equipment detect the eyeball of user along desired trajectory carry out moving as moved to the left side from centre position time, generate data acquisition instructions and respond this instruction, gather the three-dimensional data of destination object when this position, obtain the second data;Change an observation place again, move from observation place 2 to observation place 3, now destination object be positioned at electronic equipment just/direction to the west, acquisition instructions is generated when eyeball user being detected takes place along the motion of desired trajectory, based on this acquisition instructions, the three-dimensional data of the collection destination object in this position, obtains the 3rd data.Namely the three-dimensional data under each viewing angle is obtained by three different viewing angles.Wherein owing to water tumbler in kind is a stereochemical structure, usual stereochemical structure is made up of multiple points, so the three-dimensional data collected can be the three-dimensional coordinate of each point of the composition destination object on corresponding observation place.After the three-dimensional data obtained in three different viewing angles, as shown in Figure 4, electronic equipment sets up three-dimensional system of coordinate and XYZ axle, going out certain characteristic point information from the first data collected, the second data and the 3rd extracting data, this characteristic point is the coordinate of the point that can construct destination object profile in corresponding viewing angle.Give an example for observation place 2, owing to the upper and lower surface of water tumbler as shown in Figure 3 is or close to round-shaped, the upper and lower surface of water tumbler is made up of the point being positioned at upper and lower surface, so the coordinate of the point being positioned at upper and lower surface can be gathered when gathering three-dimensional data, then, in the three-dimensional system of coordinate drawn, the coordinate of the point collected is repainted and namely reappears these positions in the three-dimensional system of coordinate drawn.If the coordinate data of same point of composition this entity of water tumbler is simultaneously collected under different viewing angles, then need when carrying out the drafting of this point to adopt process of fitting treatment mode so that truly restore this point.When obtaining after point coordinates all draws in the three-dimensional coordinate set up from three different viewing angles, as shown in Figure 4, the image being made up of these point coordinates is the model of destination object.Second electronic equipment such as 3D printing device is attached with this electronic equipment in advance, and after the model of destination object set up by this electronic equipment, this model is carried out 3D printing by 3D printing device, obtains a water tumbler with material object itself with the same size and shape.Wherein, the model that electronic equipment is set up is usually big with material object itself etc..Electronic equipment detects that predetermined voice that user inputs is such as " please narrowing down to half by model ", generates parameter and updates instruction, responds this instruction, the length, width and height of model are all reduced 50%, the model after being updated.In aforementioned schemes, destination object location is fixing and is obtained different viewing angle by the electronic equipment change to the observation place of destination object, with the position manually changing destination object in prior art with compared with obtaining different viewing angles, this programme can realize quickly setting up of the threedimensional model to destination object and print with 3D, the output duration of 3D printing device can be shortened, it is achieved fast print.
The first embodiment of electronic equipment provided by the invention, is the first electronic equipment depending on this electronic equipment, and the first electronic equipment is preferably wearable electronic equipment such as intelligent glasses.This first electronic equipment can communicate with the second electronic equipment, and the second electronic equipment is specifically as follows 3D printing device, has printout function.
Fig. 5 is the composition structural representation of the first embodiment of electronic equipment provided by the invention;As it is shown in figure 5, described first electronic equipment includes: first processor 51, harvester 52 and the second processor 53;Wherein,
First processor 51, for obtaining at least three positional information, described positional information be when the observation place of described destination object is maintained at least three position by described electronic equipment (the first electronic equipment) on each observation place described destination object relative to the positional information of described electronic equipment;
Here, described destination object be in real life it can be seen that any three-dimensional real object, such as water tumbler, pen container, flowerpot, computer monitor etc..The described electronic equipment related in the present embodiment is the first electronic equipment.Destination object location being maintained static in the present embodiment, the first electronic equipment can change the observation place to destination object along with the movement of user wearing the first electronic equipment.First electronic equipment at least needs three observation places to gather the related data of destination object.Owing to the first electronic equipment itself is mobile, and destination object location is fixed, so when the first electronic equipment is often on an observation place, when being required for being gathered on this observation place by harvester 52, destination object is relative to the positional information of the first electronic equipment.Such as, when the first electronic equipment is in observation place 1, destination object is positioned at the dead ahead of the first electronic equipment;When the first electronic equipment is in observation place 2, destination object is positioned at right front of the first electronic equipment etc..
Harvester 52, for gathering at least three the second information on described at least three position, described second information is the three-dimensional data of the described destination object collected on each position;
Here, when the first electronic equipment is in each observation place to destination object, on each observation place, the three-dimensional data of destination object is acquired by the first electronic equipment, specifically harvester 52.Described three-dimensional data can be the magnitude numerical value of destination object length, width and height in space;Described three-dimensional data can also be image.
Second processor 53, for based on described at least three the second information, setting up the model of described destination object, so that described second electronic equipment output is for the model of described destination object, the model of wherein said destination object and described destination object is all rendered as stereoeffect.
Here, first electronic equipment, specifically the second processor 53 are based at least three the second information collected, set up the model of destination object, first electronic equipment is attached with the second electronic equipment in advance, the model of the destination object that the first electronic equipment is set up is carried out 3D printing by the second electronic equipment, prints the destination object with stereoeffect.
In the embodiment of the present invention, it is fixing depending on destination object location, electronic equipment can change the observation place to destination object along with the movement of the user of wearable electronic device, when electronic equipment is on each observation place, all the three-dimensional data of destination object is acquired, and set up the threedimensional model of destination object based on the information of collecting, and transmit to the second electronic equipment and carry out 3D printing.Destination object location in the present embodiment is fixing and is obtained the different viewing angles to destination object by moving of electronic equipment, with the position manually changing destination object in prior art with compared with obtaining different viewing angles, this programme can realize quick obtaining and the 3D printing of the threedimensional model to destination object, the output duration of 3D printing device can be shortened, it is achieved fast print.
Second embodiment of electronic equipment provided by the invention, is the first electronic equipment depending on this electronic equipment, and the first electronic equipment is preferably wearable electronic equipment such as intelligent glasses.This first electronic equipment can communicate with the second electronic equipment, and the second electronic equipment is specifically as follows 3D printing device, has printout function.
Fig. 6 is the composition structural representation of the second embodiment of electronic equipment provided by the invention;As shown in Figure 6, described first electronic equipment includes: first processor 61, harvester 62 and the second processor 63;Wherein,
When described first processor 61 determines that described destination object is in primary importance relative to described electronic equipment, trigger described harvester 62 and gather the three-dimensional data of described destination object when described primary importance, obtain the first data;
When described first processor 61 determines that described destination object is in the second position relative to described electronic equipment, trigger described harvester 62 and gather the three-dimensional data of described destination object when the described second position, obtain the second data;
When described first processor 61 determines that described destination object is in three positions relative to described electronic equipment, trigger described harvester 62 and gather the three-dimensional data of described destination object when described three position, obtain the 3rd data;
Here, destination object location maintains static, and electronic equipment can change the observation place to destination object along with the movement of the user of wearable electronic device.It is in three diverse locations and electronic equipment for destination object relative to the position of electronic equipment and the observation of destination object is in three different observation places, electronic equipment, specifically harvester 62 gather the three-dimensional data of destination object time on each position is observed, and obtain the first data, the second data and the 3rd data.
Accordingly, described second processor 63, for the first data, the second data and the 3rd data are carried out predetermined process, obtain the model of described destination object.
Here, when electronic equipment, specifically harvester 62 collect the first data, the second data and three data, the characteristic point information of destination object is all included in the middle of each data, so the second processor 63 is respectively at the first data, the second data and the 3rd extracting data characteristic point information, according to the characteristic point information extracted, draw the characteristic point of described destination object, to obtain the model of described destination object.The model that first electronic equipment is set up by the second electronic equipment carries out 3D printing, obtains the output model identical with destination object, and this identical output model can be identical in size, shape etc..Destination object location in the present embodiment is fixing and by changing electronic equipment, its observation place obtains destination object three-dimensional data in different viewing angles, with the position manually changing destination object in prior art with compared with obtaining different viewing angles, this programme can realize quick obtaining and the 3D printing of the threedimensional model to destination object, the output duration of 3D printing device can be shortened, it is achieved fast print.
In one preferred embodiment of the present invention, described electronic equipment also includes:
3rd processor, is additionally operable to, when the observation place of described destination object is maintained on each position by described electronic equipment, the specific part of the object wearing described electronic equipment be detected;When detecting that described specific part moves and movement locus is desired trajectory, generate acquisition instructions;And trigger the described harvester described acquisition instructions of response, to described at least three the second information.
In actual applications, after being there is once change by electronic equipment in the observation place of destination object, on observation place after the change, the three-dimensional data of destination object will not be acquired by electronic equipment, harvester 62 at once, but receiving certain acquisition instructions rear, the three-dimensional data of the destination object on this observation place is acquired.Based on this, in the present embodiment, after electronic equipment is in each observation place, whether the eyeball of the specific part such as arm or eyes of the 3rd processor user to wearing this electronic equipment moves and detects, when detecting that arm or eyeball move and take place along the motion such as arm of desired trajectory and lift from front, eyeball moves to the left side etc. from centre position, generate the acquisition instructions that the three-dimensional data to destination object is acquired, and triggering collection device 62 responds this acquisition instructions, the three-dimensional data of the destination object being on each observation place is acquired.As can be seen here, in this programme, on each observation place, electronic equipment can generate the acquisition instructions for gathering destination object three-dimensional data based on the change of the movement locus of the specific part of user, the instruction to equipment can be realized control without additionally increasing Artificial Control operation, improve Consumer's Experience.
In one preferred embodiment of the present invention, described second processor 63, it is additionally operable to:
Described model at least includes the first parameter, and described first parameter is the parameter characterizing the shape of model of described destination object, size and/or color;Obtaining the first instruction, described first instruction is at least used for updating the first parameter;Respond the first instruction, based on predetermined policy, the first parameter is updated, to change the shape of described model, size and/or color.
In actual applications, the model of the destination object that usual electronic equipment is set up in size, shape, color etc. on be equal to destination object itself, in this programme after this model set up by described second processor 63, the shape of model, size and/or color can be changed based on the instruction (parameter renewal instruction) that the first parameter is updated.Electronic equipment, specifically described second processor 63 can generate parameter and update instruction when the scheduled operation of user being detected.Wherein, scheduled operation can be that user is to the click or touch-control etc. of the pre-determined number of function button, touch area on electronic equipment;Scheduled operation can also be the predetermined voice such as " please model being narrowed down to half " of user's input that electronic equipment detects;Scheduled operation can also is that the eyeball of the specific part such as arm or eyes of the user of wearable electronic device occurs predetermined motion forwards to lift twice continuously such as arm or continuous nictation two is inferior, and the predetermined motion of user's specific part herein need to distinguish with the aforesaid movement locus producing acquisition instructions.Updating instruction based on parameter, the shape of model, size and/or color are changed by electronic equipment, specifically the second processor 63, as to reduce model be original half, the color of model is become pink colour etc..As can be seen here, the present embodiment is after establishing model, it is possible to according to the actually used needs of user, in shape, size and/or color etc., model is changed, and promotes Consumer's Experience.
Those skilled in the art are it should be appreciated that embodiments of the invention can be provided as method, system or computer program.Therefore, the present invention can adopt the form of hardware embodiment, software implementation or the embodiment in conjunction with software and hardware aspect.And, the present invention can adopt the form at one or more upper computer programs implemented of computer-usable storage medium (including but not limited to disk memory and optical memory etc.) wherein including computer usable program code.
The present invention is that flow chart and/or block diagram with reference to method according to embodiments of the present invention, equipment (system) and computer program describe.It should be understood that can by the combination of the flow process in each flow process in computer program instructions flowchart and/or block diagram and/or square frame and flow chart and/or block diagram and/or square frame.These computer program instructions can be provided to produce a machine to the processor of general purpose computer, special-purpose computer, Embedded Processor or other programmable data processing device so that the instruction performed by the processor of computer or other programmable data processing device is produced for realizing the device of function specified in one flow process of flow chart or multiple flow process and/or one square frame of block diagram or multiple square frame.
These computer program instructions may be alternatively stored in and can guide in the computer-readable memory that computer or other programmable data processing device work in a specific way, the instruction making to be stored in this computer-readable memory produces to include the manufacture of command device, and this command device realizes the function specified in one flow process of flow chart or multiple flow process and/or one square frame of block diagram or multiple square frame.
These computer program instructions also can be loaded in computer or other programmable data processing device, make on computer or other programmable devices, to perform sequence of operations step to produce computer implemented process, thus the instruction performed on computer or other programmable devices provides for realizing the step of function specified in one flow process of flow chart or multiple flow process and/or one square frame of block diagram or multiple square frame.
The above, be only presently preferred embodiments of the present invention, is not intended to limit protection scope of the present invention.

Claims (10)

1. a data processing method, described method is applied in wearable electronic equipment, and described method includes:
By described electronic equipment obtain at least three positional information, described positional information be when the observation place of described destination object is maintained at least three position by described electronic equipment on each observation place described destination object relative to the positional information of described electronic equipment;
By electronic equipment collection at least three the second information on described at least three position, described second information is the three-dimensional data of the described destination object collected on each position;
Based on described at least three the second information, setting up the model of described destination object, so that described second electronic equipment output is for the model of described destination object, the model of wherein said destination object and described destination object is all rendered as stereoeffect.
2. method according to claim 1, it is characterised in that described obtain at least three positional information by described electronic equipment, by electronic equipment collection at least three the second information on described at least three position, including:
When described destination object is in primary importance relative to described electronic equipment, gathers the three-dimensional data of described destination object when described primary importance, obtain the first data;
When described destination object is in the second position relative to described electronic equipment, gathers the three-dimensional data of described destination object when the described second position, obtain the second data;
When described destination object is in three positions relative to described electronic equipment, gathers the three-dimensional data of described destination object when described three position, obtain the 3rd data;
Accordingly, described set up the model of described destination object based on described at least three the second information, including:
First data, the second data and the 3rd data are carried out predetermined process, obtains the model of described destination object.
3. method according to claim 2, it is characterised in that described first data, the second data and the 3rd data are carried out predetermined process, obtains the model of described destination object, including:
Respectively at the first data, the second data and the 3rd extracting data characteristic point information;
According to the characteristic point information extracted, draw the characteristic point of described destination object, to obtain the model of described destination object.
4. method according to claim 1, it is characterised in that described method also includes:
When the observation place of described destination object is maintained on each position by described electronic equipment,
Detected by the specific part of the described electronic equipment object to wearing described electronic equipment;
When detecting that described specific part moves and movement locus is desired trajectory, generate acquisition instructions;
Respond described acquisition instructions, to described at least three the second information.
5. method according to claim 1, it is characterised in that described model at least includes the first parameter, described first parameter is the parameter characterizing the shape of model of described destination object, size and/or color;
Accordingly, after obtaining the model of described destination object, described method includes:
Obtaining the first instruction, described first instruction is at least used for updating the first parameter;
Respond the first instruction, based on predetermined policy, the first parameter is updated, to change the shape of described model, size and/or color.
6. an electronic equipment, it is characterised in that described electronic equipment includes:
First processor, for obtaining at least three positional information, described positional information be when the observation place of described destination object is maintained at least three position by described electronic equipment on each observation place described destination object relative to the positional information of described electronic equipment;
Harvester, for gathering at least three the second information on described at least three position, described second information is the three-dimensional data of the described destination object collected on each position;
Second processor, for based on described at least three the second information, setting up the model of described destination object, so that described second electronic equipment output is for the model of described destination object, the model of wherein said destination object and described destination object is all rendered as stereoeffect.
7. electronic equipment according to claim 6, it is characterised in that
When described first processor determines that described destination object is in primary importance relative to described electronic equipment, trigger described harvester collection three-dimensional data of described destination object when described primary importance, obtain the first data;
When described first processor determines that described destination object is in the second position relative to described electronic equipment, trigger described harvester collection three-dimensional data of described destination object when the described second position, obtain the second data;
When described first processor determines that described destination object is in three positions relative to described electronic equipment, trigger described harvester collection three-dimensional data of described destination object when described three position, obtain the 3rd data;
Accordingly, described second processor, for the first data, the second data and the 3rd data are carried out predetermined process, obtain the model of described destination object.
8. electronic equipment according to claim 7, it is characterised in that described second processor, is additionally operable to:
Respectively at the first data, the second data and the 3rd extracting data characteristic point information;
According to the characteristic point information extracted, draw the characteristic point of described destination object, to obtain the model of described destination object.
9. electronic equipment according to claim 6, it is characterised in that described electronic equipment also includes:
3rd processor, is additionally operable to, when the observation place of described destination object is maintained on each position by described electronic equipment, the specific part of the object wearing described electronic equipment be detected;
When detecting that described specific part moves and movement locus is desired trajectory, generate acquisition instructions;
And trigger the described harvester described acquisition instructions of response, to described at least three the second information.
10. electronic equipment according to claim 6, it is characterised in that described second processor, is additionally operable to:
Described model at least includes the first parameter, and described first parameter is the parameter characterizing the shape of model of described destination object, size and/or color;
Obtaining the first instruction, described first instruction is at least used for updating the first parameter;
Respond the first instruction, based on predetermined policy, the first parameter is updated, to change the shape of described model, size and/or color.
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