CN104202520A - Information transmitting method and information transmitting system - Google Patents

Information transmitting method and information transmitting system Download PDF

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Publication number
CN104202520A
CN104202520A CN201410429054.XA CN201410429054A CN104202520A CN 104202520 A CN104202520 A CN 104202520A CN 201410429054 A CN201410429054 A CN 201410429054A CN 104202520 A CN104202520 A CN 104202520A
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China
Prior art keywords
camera head
server
information
image
shooting
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Pending
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CN201410429054.XA
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Chinese (zh)
Inventor
董昱腾
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Qisda Suzhou Co Ltd
Qisda Corp
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Qisda Suzhou Co Ltd
Qisda Corp
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Priority to CN201410429054.XA priority Critical patent/CN104202520A/en
Publication of CN104202520A publication Critical patent/CN104202520A/en
Pending legal-status Critical Current

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Abstract

The invention discloses an information transmitting method. The method comprises the following steps that: a first image pick-up device shoots N first images of a scene; the first image pick-up device transmits the N first images and preset information to a server; the server decides a subject matter from the N first images; a second image pick-up device shoots M second images of the scene; the second image pick-up device transmits the M second images to the server; the server judges whether a subject matter exists in the M second images or not, and judges whether a second shooting coordinate is consistent with a first shooting coordinate or not; when the subject matter exists in the M second images and the second shooting coordinate is consistent with the first shooting coordinate, the server judges whether second shooting information is consistent with first shooting information or not; when the second shooting information is consistent with the first shooting information, the server transmits preset information to the second image pick-up device.

Description

Information transmission method and information transmission system
Technical field
The present invention is about a kind of information transmission method and information transmission system, espespecially a kind of information transmission method and information transmission system of utilizing camera head to transmit information.
Background technology
Current augmented reality (Augmented Reality, AR) be a kind of technology of calculating in real time position and the angle of the image that video camera takes and adding respective image, the target of this technology is on screen, virtual world to be enclosed within to real world and to carry out interaction.Along with more and more many portable electronic devices (for example, mobile phone, panel computer etc.) be all equiped with video camera and GPS (Global Position System) (Global Positioning System, GPS), the application of augmented reality is also more and more extensive and welcome with development.Current augmented reality correlation technique is first to set by service supplier the information content of wanting to present mostly, then according to the image identification on video camera, immediately by information content superposition on the image of video camera.Because the information content of superposition is determined by service supplier, and cannot decide in its sole discretion or change by user, the application of augmented reality is restricted.
Summary of the invention
The object of the present invention is to provide a kind of information transmission method and information transmission system of utilizing camera head to transmit information, to address the above problem.
For achieving the above object, the invention provides a kind of information transmission method and comprise the following step: the first camera head is taken N to scene and opened the first image, wherein each first image has the first shooting coordinate and the first shooting information, and N is positive integer; N is opened to the first image with the first camera head and predetermined information is sent to server; Server is opened in the first image and is determined subject matter from N; The second camera head is taken M to scene and is opened the second image, and wherein each second image has the second shooting coordinate and the second shooting information, and M is positive integer; The second camera head is opened the second image by M and is sent to server; Server judges M opens in the second image, whether there is subject matter, and judges that second takes coordinate and whether conform to the first shooting coordinate; When M opens in the second image, have subject matter, and second when taking coordinate and first and taking coordinate and conform to, server judges whether the second shooting information conforms to the first shooting information; When the second shooting information and first, take information while conforming to, server is sent to the second camera head by predetermined information; And second camera head show predetermined information.
Preferably, at least one object of this subject matter in this scene forms.
Preferably, this first take the first shooting angle that information comprises first count photographic range between this first camera head and this subject matter, relative this subject matter of this first camera head and/or this first camera head relatively this subject matter first take orientation, and this second is taken information and comprises second count photographic range, the second shooting angle of relative this subject matter of this second camera head and/or the second shooting orientation of relative this subject matter of this second camera head between this second camera head and this subject matter.
Preferably, this information transmission method also comprises the following step:
When this server receives this N and opens the first image, this server first is taken coordinate and is calculated this first count photographic range according to this; And
When this server receives this M and opens the second image, this server second is taken coordinate and is calculated this second count photographic range according to this.
Preferably, this first camera head comprises the first sensing cell, this first shooting angle and this first shooting orientation are obtained by this first sensing cell sensing, this second camera head comprises the second sensing cell, and this second shooting angle and this second shooting orientation are obtained by this second sensing cell sensing.
Preferably, this information transmission method also comprises the following step:
By this, predetermined information is sent to after this server, this first camera head can be changed this predetermined information at any time; Or
By this, predetermined information is sent to after this server, this server can dynamically update this predetermined information according to the immediate status of this first camera head.
For achieving the above object, the present invention also provides a kind of information transmission system to comprise server, the first camera head and the second camera head.The first camera head and server form communication.The first camera head is taken N to a scene and is opened the first image, and N is opened to the first image and predetermined information is sent to server, and wherein each first image has the first shooting coordinate and first and takes information, and N is positive integer.The second camera head and server form communication.The second camera head is taken M to scene and is opened the second image, and M is opened to the second image is sent to server, and wherein each second image has the second shooting coordinate and second and takes information, and M is positive integer.Server is opened in the first image and is determined subject matter from N, judges M opens in the second image, whether there is subject matter, and judges that second takes coordinate and whether conform to the first shooting coordinate.When M opens in the second image, have subject matter, and second when taking coordinate and first and taking coordinate and conform to, server judges whether the second shooting information conforms to the first shooting information.When the second shooting information and first, take information while conforming to, server is sent to the second camera head by predetermined information, and the second camera head shows predetermined information.
Preferably, at least one object of this subject matter in this scene forms.
Preferably, this first take the first shooting angle that information comprises first count photographic range between this first camera head and this subject matter, relative this subject matter of this first camera head and/or this first camera head relatively this subject matter first take orientation, and this second is taken information and comprises second count photographic range, the second shooting angle of relative this subject matter of this second camera head and/or the second shooting orientation of relative this subject matter of this second camera head between this second camera head and this subject matter.
Preferably, when this server receives this N and opens the first image, this server first is taken coordinate and is calculated this first count photographic range according to this; When this server receives this M and opens the second image, this server second is taken coordinate and is calculated this second count photographic range according to this.
Preferably, this first camera head comprises the first sensing cell, this first shooting angle and this first shooting orientation are obtained by this first sensing cell sensing, this second camera head comprises one second sensing cell, and this second shooting angle and this second shooting orientation are obtained by this second sensing cell sensing.
Preferably, at this first camera head, by this, predetermined information is sent to after this server, and this first camera head can be changed this predetermined information at any time; Or
At this first camera head, by this, predetermined information is sent to after this server, and this server can dynamically update this predetermined information according to the immediate status of this first camera head.
Compared with prior art, information transmission method provided by the invention and information transmission system, the first user can first take at least one the first image with the first camera head to scene, then the first image and predetermined information are sent to server, and wherein predetermined information can be decided in its sole discretion by user.When the second user takes at least one the second image with the second camera head to same scene, and when the second image is sent to server, server can first judge in the second image whether exist and subject matter identical in the first image, and whether the second shooting coordinate that judges the second image takes coordinate with first of the first image conforms to, to determine that the first user and the second user take same scene in same place.Then, server can judge whether the second shooting information of the second image is taken information with first of the first image and conformed to, if conform to, server just can be sent to the second camera head by predetermined information again.Whereby, the second user can see the predetermined information that the first user will pass on the second camera head.The present invention utilizes subject matter in image, takes coordinate and take information and confirm whether the second user is the object that the tendency to develop of the first user institute reaches predetermined information, to prevent that predetermined information from being had a mind to or by mistake obtaining by any the 3rd people.
Advantage about the present invention can be by following detailed Description Of The Invention and appended graphic being further understood with spirit.
Accompanying drawing explanation
Fig. 1 is according to the schematic diagram of the information transmission system of the embodiment of the present invention.
Fig. 2 is that the schematic diagram of predetermined information taken and transmit by the first camera head in Fig. 1 to scene.
Fig. 3 is that the schematic diagram of predetermined information taken and receive by the second camera head in Fig. 1 to scene.
Fig. 4 is according to the flow chart of the information transmission method of the embodiment of the present invention.
Embodiment
Refer to Fig. 1 to Fig. 4, Fig. 1 is according to the schematic diagram of the information transmission system 1 of the embodiment of the present invention, Fig. 2 is the schematic diagram that predetermined information PI was taken and transmitted to the 12 pairs of scenes 3 of the first camera head in Fig. 1, Fig. 3 is the schematic diagram that predetermined information PI was taken and received to the 14 pairs of scenes 3 of the second camera head in Fig. 1, and Fig. 4 is the flow chart of information transmission method according to an embodiment of the invention.Information transmission method in Fig. 4 is applicable to the information transmission system 1 in Fig. 1.
As shown in Figure 1, this information transmission system 1 comprises server 10, the first camera head 12 and the second camera head 14, and wherein this first camera head 12 forms communication with this server 10, and this second camera head 14 also forms communication with this server 10.In practical application, this first camera head 12 can form communication with this server 10 wirelessly with this second camera head 14, wherein wireless communication mode can be known the routine techniques of knowing by those of ordinary skill in the art and reached easily, does not repeat them here.In addition, this first camera head 12 can be any electronic installation with shoot function, such as mobile phone, panel computer etc. with this second camera head 14.
As shown in Figure 2, when the first user A1 wish passes to special object by scene 3 by predetermined information, this the first user A1 can first take N with 12 pairs of these scenes of this first camera head 3 and open the first image I1 (the step S10 in Fig. 4), wherein each this first image I1 has the first shooting coordinate and the first shooting information, and N is positive integer.In other words, this first user A1 can take one or multiple this first image I1 by 12 pairs of these scenes of this first camera head 3.Then, this first user A1 operates that this first camera head 12 is opened the first image I1 by this N and predetermined information PI is sent to this server 10 (the step S12 in Fig. 4) again.In the present embodiment, in this scene 3, can comprise a plurality of object O1-O6, and captured this first image I1 of this first camera head 12 can comprise this object O1-O3.In addition, the content of this predetermined information PI can be set voluntarily by this first user A1.
This server 10 is opened after the first image I1 at this N receiving from this first camera head 12, and this server 10 can be opened and in the first image I1, determine subject matter (the step S14 in Fig. 4) from this N.Above-mentioned subject matter can form by least one object in this scene 3.For example, this subject matter can be one of them of this object O1-O3, can be the wherein combination of any two of this object O1-O3, also can be the combination of this object O1-O3.In the present embodiment, this server 10 can open in the first image I1 have which object by this N of first identification, then chooses this N and open in the first image I1 the common at least one object existing as above-mentioned subject matter.In another embodiment, this the first user A1 also can open after the first image I1 at this N of shooting, first specify voluntarily at least one object in this first image I1 as above-mentioned subject matter, then this N is opened to the first image I1 and this predetermined information PI is sent to this server 10.
In the present embodiment, this first is taken information and can comprise first count photographic range D1, the first shooting angle θ 1 of these the first camera head 12 relative these subject matters and/or the first shooting orientation of this first camera head 12 relative these subject matters between this first camera head 12 and this subject matter.This first camera head 12 can comprise the first sensing cell 120, and wherein this first shooting angle θ 1 and this first shooting orientation are obtained by these the first sensing cell 120 sensings.In practical application, this first sensing cell 120 can be gyroscope, gravity sensor or other similar sensor.In addition, this first camera head 12 can comprise GPS (Global Position System) (Global Positioning System, GPS) or other positioning unit, to obtain first of this first image I1, takes coordinate.When this server 10 these N of reception open the first image I1, this server 10 can calculate this first count photographic range D1 according to this first shooting coordinate.This first shooting angle θ 1 may be defined as the shooting elevation angle of these the first camera head 12 relative these subject matters or takes the angle of depression.This first shooting orientation may be defined as this first camera head 12 and which orientation to take this subject matter towards.
As shown in Figure 3, when the second user A2 wants to obtain in these scene 3 places with the second camera head 14 this predetermined information PI that this first user A1 stayed, this the second user A2 can take M by 14 pairs of these scenes of the second camera head 3 and open the second image I2 (the step S16 in Fig. 4), wherein each this second image I2 has the second shooting coordinate and the second shooting information, and M is positive integer.In other words, this second user A2 can take or multiple this second image I2 by 14 pairs of these scenes of this second camera head 3.Then, this second user A2 operates this second camera head 14 again and this M is opened to the second image I2 is sent to this server 10 (the step S18 in Fig. 4).
This server 10 is opened after the second image I2 at this M receiving from this second camera head 14, whether this server 10 can judge that this M opens in the second image I2 and exist and this subject matter identical in this first image I1, and judge that this second takes coordinate and whether first take coordinate conform to (the step S20 in Fig. 4) with this.In practical application, whether this server 10 can judge that this M opens in the second image I2 by image identification technology and exist and this subject matter identical in this first image I1.In the present embodiment, when this second image I2 this second take that coordinate falls within this first image I1 this first while taking in the certain limit of coordinate, this server 10 can judge that this second takes coordinate and conform to this first shooting coordinate.
When opening in the second image I2, this server 10 these M of judgement do not exist and this subject matter identical in this first image I1, and judge when this second shooting coordinate conforms to this first shooting coordinate, representing that this second user A2 is non-passs the object of this predetermined information PI for this first user A1 institute tendency to develop, and this server 10 just can not carry out down-stream.In like manner, in this server 10 this second image of judgement I2, exist and this subject matter identical in this first image I1, and judge when this second shooting coordinate does not conform to this first shooting coordinate, representing that this second user A2 is non-passs the object of this predetermined information PI for this first user A1 institute tendency to develop, and this server 10 just can not carry out down-stream.
When opening in the second image I2, this server 10 these M of judgement exist and subject matter identical in this first image I1, and judge that this second takes coordinate with this first when taking coordinate and conforming to, this server 10 can further judge this second shooting information of this second image I2 whether conform to this first shooting information of this first image I1 (the step S22 in Fig. 4).
In the present embodiment, this second is taken information and can comprise second count photographic range D2, the second shooting angle θ 2 of these the second camera head 14 relative these subject matters and/or the second shooting orientation of this second camera head 14 relative these subject matters between this second camera head 14 and this subject matter.This second camera head 14 can comprise the second sensing cell 140, and wherein this second shooting angle θ 2 and this second shooting orientation are obtained by these the second sensing cell 140 sensings.In practical application, this second sensing cell 140 can be gyroscope, gravity sensor or other similar sensor.In addition, this second camera head 14 can comprise GPS (Global Position System) (Global Positioning System, GPS) or other positioning unit, to obtain this second shooting coordinate of this second image I2.When this server 10 these M of reception open the second image I2, this server 10 can calculate this second count photographic range D2 according to this second shooting coordinate.This second shooting angle θ 2 may be defined as the shooting elevation angle of these the second camera head 14 relative subject matters or takes the angle of depression.This second shooting orientation may be defined as this second camera head 14 and which orientation to take this subject matter towards.
In the present embodiment, when the difference of this second count photographic range D2 and this first count photographic range D1 falls within certain limit, this server 10 can judge that this second count photographic range D2 conforms to this first count photographic range D1; When the difference of this second shooting angle θ 2 and this first shooting angle θ 1 falls within certain limit, this server 10 can judge that this second shooting angle θ 2 conforms to this first shooting angle θ 1; When this second is taken orientation and fall within this first while taking in the certain limit in orientation, this server 10 can judge that this second takes orientation and conform to this first shooting orientation.
It should be noted that, this first image I1 this first take information can according to practical application be set as comprising this first count photographic range D1, this first shooting angle θ 1 and this first take orientation at least one of them, and this second image I2 this second take information can to should first count take the photograph information and be set as comprising this second count photographic range D2, this second shooting angle θ 2 and this second take orientation at least one of them.
Deserving server 10 judges when this second this first shooting information of taking information and this first image I1 of this second image I2 conforms to, represent that this second user A2 is the object that this predetermined information PI is passed in this first user A1 institute tendency to develop, this server 10 can be sent to this predetermined information PI this second camera head 14 (the step S24 in Fig. 4).Now, this second camera head 14 can immediately show this predetermined information PI (the step S26 in Fig. 4), for this second user A2, sees and looks.Otherwise, when this second shooting information of this server 10 this second image of judgement I2 does not conform to this first shooting information of this first image I1, represent that this second user A2 is not the object that this predetermined information PI is passed in this first user A1 institute tendency to develop, this server 10 just can not be sent to this predetermined information PI this second camera head 14.
In the present embodiment, at this first camera head 12 of operation, by this, predetermined information PI is sent to after this server 10 this first user A1, if this first user A1 finds that this predetermined information PI sets mistake or wish is upgraded this predetermined information PI, this first user A1 can operate this first camera head 12 again and change at any time this predetermined information PI.In another embodiment, the first user A1 is sent to predetermined information PI after server 10 at operation the first camera head 12, and this server 10 can dynamically update this predetermined information PI according to the immediate status of this first camera head 12.For example, if this predetermined information PI is the location information of this first user A1, when this first user A1 carries this first camera head 12 and moves to other position, the GPS information that this server 10 can transmit according to this first camera head 12 dynamically updates the location information of this first user A1.
In sum, the first user can first take at least one the first image with the first camera head to a scene, then the first image and predetermined information are sent to server, and wherein predetermined information can be decided in its sole discretion by user.When the second user takes at least one the second image with the second camera head to same scene, and when the second image is sent to server, server can first judge in the second image whether exist and subject matter identical in the first image, and whether the second shooting coordinate that judges the second image takes coordinate with first of the first image conforms to, to determine that the first user and the second user lie in same place and take same scene.Then, server can judge whether the second shooting information of the second image is taken information with first of the first image and conformed to, if conform to, server just can be sent to the second camera head by predetermined information again.Whereby, the second user can see the predetermined information that the first user will pass on the second camera head.The present invention utilizes subject matter in image, takes coordinate and take information and confirm whether the second user is the object that the tendency to develop of the first user institute reaches predetermined information, to prevent that predetermined information from being had a mind to or by mistake obtaining by any the 3rd people.
The foregoing is only the present invention's preferred embodiment, all equalizations of being done according to the present patent application the scope of the claims change and modify, and all should belong to the present invention's covering scope.

Claims (12)

1. an information transmission method, is characterized in that, comprises the following step:
The first camera head is taken N to scene and is opened the first image, and wherein each this first image has the first shooting coordinate and the first shooting information, and N is positive integer;
This N is opened to the first image with this first camera head and predetermined information is sent to server;
This server is opened in the first image and is determined subject matter from this N;
The second camera head is taken M to this scene and is opened the second image, and wherein each this second image has the second shooting coordinate and the second shooting information, and M is positive integer;
This second camera head is opened the second image by this M and is sent to this server;
This server judges this M opens in the second image, whether there is this subject matter, and judges that this second takes coordinate and whether first take coordinate and conform to this;
When this M opens, have this subject matter in the second image, and this second takes coordinate with this first when taking coordinate and conforming to, this server judges that this second takes information and whether conform to this first shooting information;
When this second shooting information conforms to this first shooting information, this server is sent to this second camera head by this predetermined information; And
This second camera head shows this predetermined information.
2. information transmission method as claimed in claim 1, is characterized in that, at least one object of this subject matter in this scene forms.
3. information transmission method as claimed in claim 1, it is characterized in that, this first take the first shooting angle that information comprises first count photographic range between this first camera head and this subject matter, relative this subject matter of this first camera head and/or this first camera head relatively this subject matter first take orientation, and this second is taken information and comprises second count photographic range, the second shooting angle of relative this subject matter of this second camera head and/or the second shooting orientation of relative this subject matter of this second camera head between this second camera head and this subject matter.
4. information transmission method as claimed in claim 3, is characterized in that, also comprises the following step:
When this server receives this N and opens the first image, this server first is taken coordinate and is calculated this first count photographic range according to this; And
When this server receives this M and opens the second image, this server second is taken coordinate and is calculated this second count photographic range according to this.
5. information transmission method as claimed in claim 3, it is characterized in that, this first camera head comprises the first sensing cell, this first shooting angle and this first shooting orientation are obtained by this first sensing cell sensing, this second camera head comprises the second sensing cell, and this second shooting angle and this second shooting orientation are obtained by this second sensing cell sensing.
6. information transmission method as claimed in claim 1, is characterized in that, also comprises the following step:
By this, predetermined information is sent to after this server, this first camera head can be changed this predetermined information at any time; Or
By this, predetermined information is sent to after this server, this server can dynamically update this predetermined information according to the immediate status of this first camera head.
7. an information transmission system, is characterized in that, comprises:
Server;
The first camera head, form communication with this server, this first camera head is taken N to scene and is opened the first image, and this N is opened to the first image and predetermined information is sent to this server, each this first image has the first shooting coordinate and first and takes information, and N is positive integer; And
The second camera head, form communication with this server, this second camera head is taken M to this scene and is opened the second image, and this M is opened to the second image is sent to this server, each this second image has the second shooting coordinate and second and takes information, and M is positive integer;
Wherein, this server is opened in the first image and is determined subject matter from this N, judges this M opens in the second image, whether there is this subject matter, and judges that this second takes coordinate and whether first take coordinate and conform to this; When this M opens, have this subject matter in the second image, and this second takes coordinate with this first when taking coordinate and conforming to, this server judges that this second takes information and whether conform to this first shooting information; When this second shooting information conforms to this first shooting information, this server is sent to this second camera head by this predetermined information; This second camera head shows this predetermined information.
8. information transmission system as claimed in claim 7, is characterized in that, at least one object of this subject matter in this scene forms.
9. information transmission system as claimed in claim 7, it is characterized in that, this first take the first shooting angle that information comprises first count photographic range between this first camera head and this subject matter, relative this subject matter of this first camera head and/or this first camera head relatively this subject matter first take orientation, and this second is taken information and comprises second count photographic range, the second shooting angle of relative this subject matter of this second camera head and/or the second shooting orientation of relative this subject matter of this second camera head between this second camera head and this subject matter.
10. information transmission system as claimed in claim 9, is characterized in that, when this server receives this N and opens the first image, this server first is taken coordinate and calculated this first count photographic range according to this; When this server receives this M and opens the second image, this server second is taken coordinate and is calculated this second count photographic range according to this.
11. information transmission systems as claimed in claim 9, it is characterized in that, this first camera head comprises the first sensing cell, this first shooting angle and this first shooting orientation are obtained by this first sensing cell sensing, this second camera head comprises one second sensing cell, and this second shooting angle and this second shooting orientation are obtained by this second sensing cell sensing.
12. information transmission systems as claimed in claim 7, is characterized in that, at this first camera head, by this, predetermined information is sent to after this server, and this first camera head can be changed this predetermined information at any time; Or
At this first camera head, by this, predetermined information is sent to after this server, and this server can dynamically update this predetermined information according to the immediate status of this first camera head.
CN201410429054.XA 2014-08-28 2014-08-28 Information transmitting method and information transmitting system Pending CN104202520A (en)

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Citations (7)

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US20130278633A1 (en) * 2012-04-20 2013-10-24 Samsung Electronics Co., Ltd. Method and system for generating augmented reality scene
KR20130118761A (en) * 2012-04-20 2013-10-30 삼성전자주식회사 Method and system for generating augmented reality scene

Patent Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102143429A (en) * 2010-01-29 2011-08-03 株式会社泛泰 Server, mobile communication terminal, system and method for providing augmented reality information
CN102271183A (en) * 2010-06-07 2011-12-07 Lg电子株式会社 Mobile terminal and displaying method thereof
CN102281348A (en) * 2010-06-08 2011-12-14 Lg电子株式会社 Method for guiding route using augmented reality and mobile terminal using the same
CN102568012A (en) * 2010-10-13 2012-07-11 株式会社泛泰 User equipment and method for providing augmented reality (ar) service
US20130278633A1 (en) * 2012-04-20 2013-10-24 Samsung Electronics Co., Ltd. Method and system for generating augmented reality scene
KR20130118761A (en) * 2012-04-20 2013-10-30 삼성전자주식회사 Method and system for generating augmented reality scene
CN103164518A (en) * 2013-03-06 2013-06-19 杭州九树网络科技有限公司 Mobile terminal (MT) augmented reality application system and method

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Application publication date: 20141210