CN103425420B - Multi-monitor system and method - Google Patents

Multi-monitor system and method Download PDF

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Publication number
CN103425420B
CN103425420B CN201210167204.5A CN201210167204A CN103425420B CN 103425420 B CN103425420 B CN 103425420B CN 201210167204 A CN201210167204 A CN 201210167204A CN 103425420 B CN103425420 B CN 103425420B
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China
Prior art keywords
monitor
unit
determines
module
signal
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Expired - Fee Related
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CN201210167204.5A
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Chinese (zh)
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CN103425420A (en
Inventor
刘伟
邵维廷
马勇
赵琦
田笑
郑磊
胡芳
王成新
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State Grid Shandong Electric Power Co Wenshang Power Supply Co
State Grid Corp of China SGCC
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Wenshang Power Supply Co Of State Grid Shandong Electric Power Co
State Grid Corp of China SGCC
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Application filed by Wenshang Power Supply Co Of State Grid Shandong Electric Power Co, State Grid Corp of China SGCC filed Critical Wenshang Power Supply Co Of State Grid Shandong Electric Power Co
Priority to CN201210167204.5A priority Critical patent/CN103425420B/en
Publication of CN103425420A publication Critical patent/CN103425420A/en
Application granted granted Critical
Publication of CN103425420B publication Critical patent/CN103425420B/en
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Abstract

A kind of multi-monitor method includes: controls a primary importance corresponding to corresponding monitor and determines that unit and a second position determine that unit launches signal;Determine that the primary importance that corresponding monitor is corresponding determines that unit and the second position determine whether unit receives signal;Determine that unit and/or the second position determine that unit determines the position of monitor according to this primary importance receiving signal determined, and the common coordinate range of the monitor of correspondence is determined according to the coordinate range (X, Y) of monitor of a storage and the position of monitor that determines;When detecting user and touching a touch unit, determine the coordinate corresponding to the position of this touch according to this common coordinate range determined;And the common coordinate range that determines according to this and one or more coordinate determined determine this monitor being touched, and control this monitor being touched and perform corresponding operation.The present invention also provides for a kind of multi-monitor system, is not required to reciprocal mobile mouse.

Description

Multi-monitor system and method
Technical field
The present invention relates to multi-monitor system and method, particularly to a kind of multi-monitor system and method that in response to user, the touch of multi-monitor is controlled monitor operations.
Background technology
Current multi-monitor system is that two or more monitor is connected on a main frame so that those monitors are as a big monitor.Wherein, current multi-monitor system has to rely on mobile one mouse being connected with main frame to operate those monitors, the mobile mouse that such needs are reciprocal, thus makes troubles.
Summary of the invention
In view of the foregoing, it is necessary to a kind of multi-monitor system and method are provided, are not required to reciprocal mobile mouse.
A kind of multi-monitor system, the environment that this multi-monitor system is applied to a main frame and multiple monitor is formed, the plurality of monitor is all connected by the way of wired or wireless with this main frame, this multi-monitor system includes: several signal emission module, determines that unit and a second position determine that unit launches signal for controlling a primary importance corresponding to the monitor of correspondence;Several signal receiving modules, for determining that the primary importance that the monitor of correspondence is corresponding determines that unit and the second position determine whether unit receives signal;Several determine module, and for determining the position of monitor according to the determination of this signal receiving module, and the position of the monitor determined according to the coordinate range (X, Y) of the monitor of a storage determines the common coordinate range of monitor of correspondence;According to this, several detecting modules, for when detecting the touch unit that user touches a wherein monitor, determining that the common coordinate range that module determines determines the coordinate corresponding to the position of this touch;And one perform module, for determining that the coordinate that common coordinate range determined by module and one or more detecting module determine determines this monitor being touched according to this coordinate, and control this monitor being touched and perform corresponding operation.
A kind of multi-monitor method, this multi-monitor method is applied to a multi-monitor system, the environment that this multi-monitor system is applied to a main frame and multiple monitor is formed, the plurality of monitor is all connected by the way of wired or wireless with this main frame, and this multi-monitor method includes: controls a primary importance corresponding to corresponding monitor and determines that unit and a second position determine that unit launches signal;Determine that the primary importance that corresponding monitor is corresponding determines that unit and the second position determine whether unit receives signal;Determine that unit and/or the second position determine that unit determines the position of monitor according to this primary importance receiving signal determined, and the position of the monitor determined according to the coordinate range (X, Y) of monitor of a storage determines the common coordinate range of monitor of correspondence;When detecting user and touching a touch unit, determine the coordinate corresponding to the position of this touch according to this common coordinate range determined;And the coordinate that determines of the common coordinate range that determines according to this and one or more detecting module determines this monitor being touched, and control this monitor being touched and perform corresponding operation.
The present invention controls primary importance corresponding to each monitor by signal emission module and determines that unit and the second position determine that unit launches signal, determine according to this primary importance receiving signal, module determines that unit and/or the second position determine that unit determines the position of monitor, and determine the common coordinate range of monitor, detecting module is when detecting user and touching touch unit, determine the coordinate corresponding to touch location, and determine, by an execution module, the monitor being touched, and control the operation that the execution of this monitor being touched is corresponding.
Accompanying drawing explanation
Fig. 1 is the schematic diagram of the environment that main frame and monitor are formed in an embodiment of the present invention.
Fig. 2 is the block diagram of the multi-monitor system of an embodiment of the present invention.
Fig. 3 is the flow chart of multi-monitor method in an embodiment of the present invention.
Main element symbol description
Multi-monitor system 10
The environment that main frame and multiple monitor are formed 1
Main frame 2
Monitor 3
Touch unit 4
Primary importance determines unit 5
The second position determines unit 6
Signal emission module 101
Signal receiving module 102
Determine module 103
Detecting module 104
Perform module 105
Processing unit 20
Memorizer 30
Quantity determines module 106
Judge module 107
Following detailed description of the invention will further illustrate the present invention in conjunction with above-mentioned accompanying drawing.
Detailed description of the invention
Refer to Fig. 1 and Fig. 2, in the environment 1 that a multi-monitor system 10 is applied to a main frame and multiple monitor is formed.The environment 1 that this main frame and multiple monitor are formed includes a main frame 2 and multiple monitor 3.This main frame 2 and the plurality of monitor 3 can connect by the way of wired or wireless.In the present embodiment, the quantity of this monitor 3 is two or three, and each monitor 3 is equivalently-sized.This each monitor 3 is all external in a touch unit 4, multiple position determination unit.This position determination unit includes that a primary importance determines that unit 5 and a second position determine unit 6 in the present embodiment, and this primary importance determines that unit 5 and the second position determine that unit 6 is respectively arranged at the both sides of this monitor 3.In the present embodiment, this primary importance determines that unit 5 can be that the first infrared emission receives unit or a USB, and this second position determines that unit 6 can be that the second infrared emission receives unit or the 2nd USB.Wherein, when the plurality of monitor 3 is horizontal positioned, this primary importance determines that unit 5 and this second position determine that unit 6 is respectively arranged at outside the left and right two of this monitor 3, when the plurality of monitor 3 is for being disposed vertically, this primary importance determines that unit 5 and this second position determine that unit 6 is respectively arranged at up and down outside two of this monitor 3.Thus when the primary importance of this left side/top determines that unit 5 produces signal, on the right of correspondence/the following second position determines that unit 6 can receive signal, when on the right of this/the following second position determine that unit 6 produces signal time, the primary importance of the corresponding left side/top determines that unit 5 can receive signal.In other embodiments, the position determination unit included by each monitor 3 can be other quantity, such as 4, is respectively arranged at monitor 3 side left and right, upper and lower.
This multi-monitor system 10 includes that signal emission module 101, signal receiving module 102, determines that module 103, detecting module 104 and performs module 105.Module alleged by the present invention refer to a kind of can be performed by the processing unit 20 of main frame 2 or each monitor 3 and the series of computation machine brick of specific function can be completed, it is stored respectively in the memorizer 30 of this main frame 2 or monitor 3.Wherein, this signal emission module 101, this signal receiving module 102, this determine module 103 and this detecting module 104 by performed by the processing unit 20 of each monitor 3, this execution module 105 is by performed by this main frame 2.Being delivered in this and do not repeat of information between this monitor 3 and this main frame 2.Also storage in the memorizer 30 of this each monitor 3 has the maximum initial coordinate (X, Y) of monitor 3, and wherein X is maximum initial horizontal coordinate, and Y is maximum initial vertical coordinate.The touch point of the touch unit 4 of each monitor 3 correspondence all maps one by one with the coordinate in a coordinate system.
For the primary importance controlling monitor 3 correspondence, the signal emission module 101 of each monitor 3 determines that unit 5 and the second position determine that unit 6 produces signal.
The signal receiving module 102 of each monitor 3 is for determining that the primary importance of this monitor 3 correspondence determines that unit 5 and the second position determine whether unit 6 receives signal.
Each monitor 3 cover half block 103 really for determining the position of the monitor 3 of correspondence according to the determination of this signal receiving module 102, and determine the common coordinate range of the monitor 3 of correspondence according to the coordinate range of the monitor 3 of this storage and the position of corresponding monitor 3 that determines.
According to this, the detecting module 104 of each monitor 3, for when detecting user and touching this touch unit 4, determines that the common coordinate range that module 103 determines determines the coordinate corresponding to the position of this touch.
The execution module 105 of this main frame 2 determines, for the coordinate of touch determined according to the detecting module 104 of one or more monitors 3 and the common coordinate range of each monitor 3, one or more monitors 3 that this user touches, and the monitor 3 controlling to be determined touching performs corresponding operation.As: the maximum initial coordinate (40 of monitor 3,40), the touch coordinate determined when the detecting module 104 of a monitor 3 is (35,40) time, then the execution module 105 of this main frame 2 determines that the monitor 3 that this user touches is (0 for common coordinate range, 0) monitor of-(40,40).
In the present embodiment, this multi-monitor system 10 also includes that a quantity determines module 106, and this quantity determines that module 106 is by performed by this main frame 2.The quantity of this main frame 2 determines that module 106 is for determining that this is connected to the quantity of the monitor of main frame 23.
When the quantity of this monitor 3 is two, the second position of monitor 3 correspondence being in the most left/top determines that unit 6 can receive the primary importance of right/following monitor 3 correspondence of this monitor 3 and determine the signal that unit 5 is launched, and the second position being in monitor 3 correspondence that the primary importance of the rightest/following monitor 3 correspondence determines that unit 5 can receive this monitor 3 left sides/top determines the signal that unit 6 is launched.
When the signal receiving module 102 of a monitor 3 determines that the second position that this monitor 3 is only corresponding determines that unit 6 receives signal, this monitor 3 cover half block 103 really determines that this monitor 3 is in the most left/top, and determine that the common coordinate range of this monitor 3 is (0 according to the coordinate range of the monitor 3 of this storage and the position of monitor 3 that determines, 0)-(X, Y).
When the signal receiving module 102 of a monitor 3 determines that the primary importance that this monitor 3 is only corresponding determines that unit 5 receives signal, it is the rightest/following that this monitor 3 cover half block 103 really determines that this monitor 3 is in, and determine that the common coordinate range of this monitor 3 is (X+1 according to the coordinate range of the monitor 3 of this storage and the position of monitor 3 that determines, Y)-(2X, Y).
When the quantity of this monitor 3 is three, except being in the monitor 3 of the most left/top and being in the rightest/following monitor 3, monitor 3 the most in an intermediate position.The primary importance of this monitor 3 correspondence in an intermediate position determines that the primary importance of monitor 3 correspondence that the second position of monitor 3 correspondence that unit 5 can receive a left side/top of this monitor 3 determines that the signal that unit 6 is launched, the corresponding second position determine that unit 6 can receive the right side of this monitor 3/following determines the signal that unit 5 is launched.
When the signal receiving module 102 of a monitor 3 determines that the second position that this monitor 3 is only corresponding determines that unit 6 receives signal, this monitor 3 cover half block 103 really determines that this monitor 3 is in the most left/top, and determine that the common coordinate range of this monitor 3 is (0 according to the coordinate range of the monitor 3 of this storage and the position of monitor 3 that determines, 0)-(X, Y).
When the signal receiving module 102 of a monitor 3 determines that the primary importance of this monitor 3 correspondence determines that unit 5 and the second position determine that unit 6 receives signal, this monitor 3 cover half block 103 really determines that this monitor 3 is in an intermediate position, and determine that the common coordinate range of this monitor 3 is (X+1 according to the coordinate range of the monitor 3 of this storage and the position of monitor 3 that determines, Y)-(2X, Y).
When the signal receiving module 102 of a monitor 3 determines that the primary importance that this monitor 3 is only corresponding determines that unit 5 receives signal, it is the rightest/following that this monitor 3 cover half block 103 really also determines that this monitor 3 is in, and determine that the common coordinate range of this monitor 3 is (2X+1 according to the coordinate range of the monitor 3 of this storage and the position of monitor 3 that determines, Y)-(3X, Y).
In the present embodiment, this multi-monitor system 10 also includes a judge module 107.This judge module 107 is by performed by main frame 2.The judge module 107 of this main frame 2 is used for judging whether this main frame 2 is in extension table top pattern.When this main frame 2 is in extension table top pattern, for the primary importance controlling this monitor 3 correspondence, the signal emission module 101 of each monitor 3 determines that unit 5 and this second position determine that unit 6 launches signal.
Refer to Fig. 3, for the flow chart of the present invention one multi-monitor method.
In step S301, the signal emission module 101 of each monitor 3 controls the primary importance of this monitor 3 correspondence and determines that unit 5 and this second position determine that unit 6 launches signal.
In step s 302, the signal receiving module 102 of each monitor 3 judges that the primary importance of this monitor 3 correspondence determines that unit 5 and this second position determine whether unit 6 receives signal.
In step S303, each monitor 3 cover half block 103 really determines the position of monitor 3 of correspondence according to the determination of this signal receiving module 102, and determines the common coordinate range of the monitor 3 of correspondence according to the coordinate range of the monitor 3 of this storage and the position of corresponding monitor 3 that determines.
In step s 304, the detecting module 104 of each monitor 3, when detecting user and touching this touch unit 4, determines the coordinate of this touch according to monitor 3 common coordinate range that cover half block 103 determines really of this correspondence.
In step S305, the coordinate of the touch that the execution module 105 of this main frame 2 determines according to the detecting module 104 of these one or more monitors 3 and the common coordinate range of each monitor 3 determine the monitor 3 that this user touches, and control this monitor 3 being touched and perform the operation of correspondence.
In the present embodiment, this step S303 particularly as follows:
When the quantity of this monitor 3 is two, and one the signal receiving module 102 of monitor 3 determine that the second position that this monitor 3 is only corresponding determines when unit 6 receives signal, this monitor 3 cover half block 103 really determines that this monitor 3 is in the most left/top, and determine that the common coordinate range of this monitor 3 is (0 according to the coordinate range of the monitor 3 of this storage and the position of monitor 3 that determines, 0)-(X, Y).When the signal receiving module 102 of a monitor 3 determines that the primary importance that this monitor 3 is only corresponding determines that unit 5 receives signal, it is the rightest/following that this monitor 3 cover half block 103 really also determines that this monitor 3 is in, and determine that the common coordinate range of this monitor 3 is (X+1 according to the coordinate range of the monitor 3 of this storage and the position of monitor 3 that determines, Y)-(2X, Y).
When the quantity of this monitor 3 is three, and one the signal receiving module 102 of monitor 3 determine that the second position that this monitor 3 is only corresponding determines when unit 6 receives signal, this monitor 3 cover half block 103 really determines that this monitor 3 is in the most left/top, and determine that the common coordinate range of this monitor 3 is (0 according to the coordinate range of the monitor 3 of this storage and the position of monitor 3 that determines, 0)-(X, Y).When the signal receiving module 102 of a monitor 3 determines that the primary importance of this monitor 3 correspondence determines that unit 5 and this second position determine that unit 6 receives signal, this monitor 3 cover half block 103 really determines that this monitor 3 is in an intermediate position, and determine that the common coordinate range of this monitor 3 is (X+1 according to the coordinate range of the monitor 3 of this storage and the position of monitor 3 that determines, Y)-(2X, Y).When the signal receiving module 102 of a monitor 3 determines that the primary importance that this monitor 3 is only corresponding determines that unit 5 receives signal, it is the rightest/following that this monitor 3 cover half block 103 really also determines that this monitor 3 is in, and determine that the common coordinate range of this monitor 3 is (2X+1 according to the coordinate range of the monitor 3 of this storage and the position of monitor 3 that determines, Y)-(3X, Y).
In the present embodiment, before step S301, a step is also included:
This judge module 107 judges whether this main frame 2 is in extension table top pattern.When this main frame 2 is in extension table top pattern, this signal emission module 101 controls this primary importance and determines that unit 5 and this second position determine that unit 6 launches signal.
To those skilled in the art, being actually needed of producing can be combined according to the scheme of the invention of the present invention and inventive concept and make other and be altered or modified accordingly, and these change and adjust the protection domain that all should belong to the claims in the present invention.

Claims (4)

1. a multi-monitor system, the environment that this multi-monitor system is applied to a main frame and multiple monitor is formed, the plurality of monitor is all connected by the way of wired or wireless with this main frame, it is characterised in that this multi-monitor system includes:
For controlling a primary importance corresponding to the monitor of correspondence, several signal emission module, determine that unit and a second position determine that unit launches signal;
Several signal receiving modules, for determining that the primary importance that the monitor of correspondence is corresponding determines that unit and the second position determine whether unit receives signal;
Several determine module, for determining the position of monitor according to the determination of this signal receiving module, and determine the common coordinate range of the monitor of correspondence according to the coordinate range (X, Y) of the monitor of a storage and the position of monitor that determines;
According to this, several detecting modules, for when detecting the touch unit that user touches a wherein monitor, determining that the common coordinate range that module determines determines the coordinate corresponding to the position of this touch;And
One performs module, for determining that the coordinate that common coordinate range determined by module and one or more detecting module determine determines this monitor being touched according to one, and controls the operation that the execution of this monitor being touched is corresponding.
2. multi-monitor system as claimed in claim 1, it is characterized in that: this multi-monitor system also includes a judge module, this judge module is used for judging whether this main frame is in extension table top pattern, when this main frame is in extension table top pattern, each signal emission module controls corresponding primary importance and determines that unit and the second position determine that unit launches signal.
3. a multi-monitor method, this multi-monitor method is applied to a multi-monitor system, the environment that this multi-monitor system is applied to a main frame and multiple monitor is formed, the plurality of monitor is all connected by the way of wired or wireless with this main frame, it is characterized in that, this multi-monitor method includes:
Control a primary importance corresponding to corresponding monitor and determine that unit and a second position determine that unit launches signal;
Determine that the primary importance that corresponding monitor is corresponding determines that unit and the second position determine whether unit receives signal;
Determine that unit and/or the second position determine that unit determines the position of monitor according to this primary importance receiving signal determined, and the common coordinate range of the monitor of correspondence is determined according to the coordinate range (X, Y) of monitor of a storage and the position of monitor that determines;
When detecting user and touching a touch unit, determine the coordinate corresponding to the position of this touch according to this common coordinate range determined;And
The common coordinate range determined according to this and one or more coordinate determined determine this monitor being touched, and control the operation that the execution of this monitor being touched is corresponding.
4. multi-monitor method as claimed in claim 3, it is characterised in that this multi-monitor method also includes:
Judge whether this main frame is in extension table top pattern;
When this main frame is in extension table top pattern, controls primary importance corresponding to monitor and determine that unit and the second position determine that unit launches signal.
CN201210167204.5A 2012-05-25 2012-05-25 Multi-monitor system and method Expired - Fee Related CN103425420B (en)

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Application Number Priority Date Filing Date Title
CN201210167204.5A CN103425420B (en) 2012-05-25 2012-05-25 Multi-monitor system and method

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Application Number Priority Date Filing Date Title
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CN103425420B true CN103425420B (en) 2016-08-03

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Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN1717045A (en) * 2004-07-02 2006-01-04 微软公司 System and method for determining display differences between monitors on multi-monitor computer systems
US7587747B2 (en) * 1997-10-23 2009-09-08 Maguire Jr Francis J Telepresence method and apparatus for simultaneous use by multiple active/passive users
CN101965556A (en) * 2008-01-07 2011-02-02 智能技术Ulc公司 Method of launching a selected application in a multi-monitor computer system and multi-monitor computer system employing the same
CN101965608A (en) * 2008-01-07 2011-02-02 智能技术Ulc公司 Method of managing applications in a multi-monitor computer system and multi-monitor computer system employing the method
CN101965609A (en) * 2008-01-07 2011-02-02 智能技术Ulc公司 Method and apparatus for displaying video data from multiple source computers in a multi-monitor computer system
TWM426229U (en) * 2011-11-30 2012-04-01 Taiwan Secom Co Ltd Touch monitor video recording device supporting multiple video inputs

Patent Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US7587747B2 (en) * 1997-10-23 2009-09-08 Maguire Jr Francis J Telepresence method and apparatus for simultaneous use by multiple active/passive users
CN1717045A (en) * 2004-07-02 2006-01-04 微软公司 System and method for determining display differences between monitors on multi-monitor computer systems
CN101965556A (en) * 2008-01-07 2011-02-02 智能技术Ulc公司 Method of launching a selected application in a multi-monitor computer system and multi-monitor computer system employing the same
CN101965608A (en) * 2008-01-07 2011-02-02 智能技术Ulc公司 Method of managing applications in a multi-monitor computer system and multi-monitor computer system employing the method
CN101965609A (en) * 2008-01-07 2011-02-02 智能技术Ulc公司 Method and apparatus for displaying video data from multiple source computers in a multi-monitor computer system
TWM426229U (en) * 2011-11-30 2012-04-01 Taiwan Secom Co Ltd Touch monitor video recording device supporting multiple video inputs

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