CN111700380B - Intelligent office table - Google Patents

Intelligent office table Download PDF

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Publication number
CN111700380B
CN111700380B CN202010582687.XA CN202010582687A CN111700380B CN 111700380 B CN111700380 B CN 111700380B CN 202010582687 A CN202010582687 A CN 202010582687A CN 111700380 B CN111700380 B CN 111700380B
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backlog
preset
trajectory
track
virtual control
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CN111700380A (en
Inventor
卢孟茜
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Beijing Shengqi Culture Development Co ltd
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Beijing Shengqi Culture Development Co ltd
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    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47BTABLES; DESKS; OFFICE FURNITURE; CABINETS; DRAWERS; GENERAL DETAILS OF FURNITURE
    • A47B21/00Tables or desks for office equipment, e.g. typewriters, keyboards
    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47BTABLES; DESKS; OFFICE FURNITURE; CABINETS; DRAWERS; GENERAL DETAILS OF FURNITURE
    • A47B13/00Details of tables or desks
    • A47B13/02Underframes
    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47BTABLES; DESKS; OFFICE FURNITURE; CABINETS; DRAWERS; GENERAL DETAILS OF FURNITURE
    • A47B13/00Details of tables or desks
    • A47B13/08Table tops; Rims therefor
    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47BTABLES; DESKS; OFFICE FURNITURE; CABINETS; DRAWERS; GENERAL DETAILS OF FURNITURE
    • A47B21/00Tables or desks for office equipment, e.g. typewriters, keyboards
    • A47B21/02Tables or desks for office equipment, e.g. typewriters, keyboards with vertical adjustable parts
    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47BTABLES; DESKS; OFFICE FURNITURE; CABINETS; DRAWERS; GENERAL DETAILS OF FURNITURE
    • A47B21/00Tables or desks for office equipment, e.g. typewriters, keyboards
    • A47B21/04Tables or desks for office equipment, e.g. typewriters, keyboards characterised by means for holding or fastening typewriters or computer equipment
    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47BTABLES; DESKS; OFFICE FURNITURE; CABINETS; DRAWERS; GENERAL DETAILS OF FURNITURE
    • A47B9/00Tables with tops of variable height
    • A47B9/20Telescopic guides
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F3/00Input arrangements for transferring data to be processed into a form capable of being handled by the computer; Output arrangements for transferring data from processing unit to output unit, e.g. interface arrangements
    • G06F3/01Input arrangements or combined input and output arrangements for interaction between user and computer
    • G06F3/03Arrangements for converting the position or the displacement of a member into a coded form
    • G06F3/041Digitisers, e.g. for touch screens or touch pads, characterised by the transducing means
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F3/00Input arrangements for transferring data to be processed into a form capable of being handled by the computer; Output arrangements for transferring data from processing unit to output unit, e.g. interface arrangements
    • G06F3/01Input arrangements or combined input and output arrangements for interaction between user and computer
    • G06F3/048Interaction techniques based on graphical user interfaces [GUI]
    • G06F3/0487Interaction techniques based on graphical user interfaces [GUI] using specific features provided by the input device, e.g. functions controlled by the rotation of a mouse with dual sensing arrangements, or of the nature of the input device, e.g. tap gestures based on pressure sensed by a digitiser
    • G06F3/0488Interaction techniques based on graphical user interfaces [GUI] using specific features provided by the input device, e.g. functions controlled by the rotation of a mouse with dual sensing arrangements, or of the nature of the input device, e.g. tap gestures based on pressure sensed by a digitiser using a touch-screen or digitiser, e.g. input of commands through traced gestures
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06QINFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES; SYSTEMS OR METHODS SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES, NOT OTHERWISE PROVIDED FOR
    • G06Q10/00Administration; Management
    • G06Q10/10Office automation; Time management
    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47BTABLES; DESKS; OFFICE FURNITURE; CABINETS; DRAWERS; GENERAL DETAILS OF FURNITURE
    • A47B2200/00General construction of tables or desks
    • A47B2200/0035Tables or desks with features relating to adjustability or folding
    • A47B2200/004Top adjustment
    • A47B2200/0042Height and inclination adjustable desktop, either separately or simultaneously
    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47BTABLES; DESKS; OFFICE FURNITURE; CABINETS; DRAWERS; GENERAL DETAILS OF FURNITURE
    • A47B2200/00General construction of tables or desks
    • A47B2200/008Tables or desks having means for applying electronic or electric devices

Abstract

The invention provides an intelligent office table which comprises a table body, a display device and an information processing device, wherein the display device is horizontally embedded in the upper end surface of the table body; the display device comprises a touch display screen; the information processing apparatus includes: a processor and a communication module; the processor is electrically connected with the display device; the processor is in communication connection with the communication module. According to the intelligent office table, virtual office auxiliary tools such as a calculator, a calendar, a to-do list and the like are displayed on the display device, so that a user is assisted in working, and the placement of desktop auxiliary tools is reduced; the processor communicates with the outside through the communication module to receive backlogs sent by the outside equipment and sends the processed backlogs to the outside equipment; the intelligent office is realized, and paperless office is finished.

Description

Intelligent office table
Technical Field
The invention relates to the technical field of office tables, in particular to an intelligent office table.
Background
Existing desks are used only as office or support equipment, and when a user uses the desk, the desktop can be used for placing a plurality of office-assisting tools, such as: paper, pens, notes, calculators, calendars, and the like; these office supplies need to be often arranged, otherwise the desktop is messy, the appearance of the desktop is affected, and the working efficiency is also affected.
Moreover, with the gradual enhancement of the environmental protection consciousness of people, paperless office work is a new mode of modern office work which accords with the current environmental protection concept; hardware is an indispensable important element in paperless office, and at present, an intelligent office table is not available, and paperless office and reduction of auxiliary tools on the table top are both considered.
Disclosure of Invention
One of the purposes of the invention is to provide an intelligent office table, which displays virtual office auxiliary tools such as a calculator, a calendar, a to-do list and the like on a display device, assists a user in working, and reduces the placement of desktop auxiliary tools; the processor communicates with the outside through the communication module to receive backlogs sent by the outside equipment and sends the processed backlogs to the outside equipment; the intelligent office is realized, paperless office work is finished, and the working efficiency of a user is improved.
The intelligent office table provided by the embodiment of the invention comprises a table body, a display device and an information processing device, wherein the display device is horizontally embedded on the upper end surface of the table body; the display device comprises a touch display screen;
the information processing apparatus includes: a processor and a communication module; the processor is electrically connected with the display device; the processor is in communication connection with the communication module.
Preferably, the processor executes the program code comprising:
acquiring the contact area of an object placed on the surface of the display device and the display device through the display device;
distinguishing and judging the object based on the area, a preset area and object corresponding table;
and when the object is a first preset object, executing a preset display scheme.
Preferably, the table body comprises: the telescopic table comprises a table top, two telescopic supporting legs and two rotating mechanisms, wherein the two telescopic supporting legs and the two rotating mechanisms are symmetrically arranged on two sides of the table top;
the fixed end of the rotating mechanism is fixedly connected with the supporting legs, and the rotating end of the rotating mechanism is fixedly connected with the desktop.
Preferably, the display device includes: a first display unit and a second display unit; the first display unit and the second display unit are spliced into a complete screen, a lifting device is arranged below the second display unit, and the second display unit is hinged to one end of the lifting device.
Preferably, the processor performs operations comprising:
displaying an icon of the virtual control through the first display unit; the virtual control comprises: one or more of a calculator, a notepad, a notice, a to-do list, a completion list, a calendar, a virtual keyboard and a virtual mouse;
displaying backlog through a first display unit;
receiving a first operation that a user drags backlogs into a first preset area of a first display unit on the first display unit;
displaying the backlog through a second display unit when the first operation is received;
receiving the processing operation of a user on backlogs through a virtual keyboard;
when the processing operation indicates that the backlog is completed, marking the backlog as the completed backlog; adding the completion item into the completion item list;
the processor further performs operations comprising:
receiving a second operation that the user drags the icon of the virtual control into a second preset area on the first display unit;
when the icon of the virtual control moves to a second preset area, displaying the virtual control in the second preset area and receiving a third operation of the user on the virtual control;
the processor further performs operations comprising:
when the to-do item sent by the external equipment is received through the communication module, the to-do item is verified;
after the verification is passed, displaying the backlogs in a third preset area through the first display unit and adding the backlogs into a backlog list;
the verifying the backlog comprises the following steps:
first identification information of a device that transmits backlogs is acquired,
comparing the first identification information with second identification information stored in advance, and acquiring third identification information in backlogs when the comparison is the same; refusing to receive backlog when the comparison is different;
comparing the third identification information with fourth identification information stored in advance, and refusing to receive backlog when the comparison is different; when the comparison is the same, acquiring the execution date of the backlog and the completion time required for completing the backlog;
acquiring the total time required for completing the existing backlogs corresponding to the execution dates in the backlog list;
refusing to receive backlogs when the sum of the total time and the completion time is greater than a preset first time;
and when the sum of the total time and the completion time is less than or equal to the preset first time, the backlog verification is passed.
Preferably, the first preset area is an area where the virtual keyboard is located.
Preferably, the processor performs operations comprising:
acquiring a first track of a user touching a display device;
obtaining a first coordinate (x) of a first start point of a first trajectory1,y1) First direction vector v1={l1,m1And a first time t1
Obtaining a second coordinate (x) of a first end point of the first trajectory2,y2) A second direction vector v2={l2,m2And a second time t2
Calculating the distance L between the first endpoint and the first endpoint by the following formula:
Figure BDA0002552967710000031
when the first starting point position of the first track is an icon of the virtual control and the distance L is smaller than the preset distance, displaying the virtual control corresponding to the icon and receiving a third operation of the user on the virtual control;
calculating the included angle theta between the first direction vector and the second direction vector1The calculation formula is as follows:
Figure BDA0002552967710000041
calculating a first velocity V of the first trajectory by:
Figure BDA0002552967710000042
when the included angle theta1When the first speed V is less than a first preset angle value, the first speed V is greater than a first preset speed value, and the first starting point position of the first track is an icon of the virtual control; acquiring a first coordinate set A ═ a of a second preset area1,a2,…,ai,…,an}; ith element a in coordinate setiThe coordinates are expressed as (x)i,yi);
When the existence elements in the first coordinate set enable the following formula to be established, determining that the first track points to a second preset area;
Figure BDA0002552967710000043
or
Figure BDA0002552967710000044
When the first track points to a second preset area, displaying the virtual control in the second preset area and canceling the display of the icon corresponding to the virtual control;
when the included angle theta1The first speed V is greater than a first preset speed value, and the first starting point position of the first track is the backlog; acquiring a second coordinate set B ═ B of the first preset area1,b2,…,bj,…,bm}; j element b in coordinate setjThe coordinates are expressed as (x)j,yj);
When the existence elements in the second coordinate set enable the following formula to be established, determining that the first track points to a first preset area;
Figure BDA0002552967710000045
or
Figure BDA0002552967710000046
And when the first track points to the first preset area, sending the backlog to the second processor and canceling the display of the corresponding backlog.
Preferably, the processor performs operations comprising:
acquiring a first track of a user touching a display device;
obtaining a first coordinate (x) of a first start point of a first trajectory1,y1) A first time t1
Obtaining a second coordinate (x) of a first end point of the first trajectory2,y2) A second time t2
Acquiring a second track within a preset second time after the first track is acquired;
acquiring a third coordinate (x) of a second starting point of the second track3,y3) A third time t3
Acquiring a fourth coordinate (x) of a second end point of the second track4,y4) A fourth time t4
Calculating a first velocity V of the first trajectory by:
Figure BDA0002552967710000051
calculating the difference value DeltaV between the speed of the first track and the speed of the second track, wherein the calculation formula is as follows:
Figure BDA0002552967710000052
calculating a first trajectoryAngle theta to the second track2The calculation formula is as follows:
Figure BDA0002552967710000053
when the included angle theta2When the first speed V is smaller than a second preset angle value, the first speed V is larger than a first preset speed value, the difference value delta V is smaller than or equal to a second preset speed value, a first starting point position of the first track is an icon of the virtual control, and a second ending point position of the second track is a second preset area, the virtual control is displayed in the second preset area, and the display of the icon corresponding to the virtual control is cancelled;
when the included angle theta2And when the first speed V is smaller than a second preset angle value, the first speed V is larger than a first preset speed value, the difference value delta V is smaller than or equal to a second preset speed value, the first starting point position of the first track is the backlog, and the second ending point position of the second track is a first preset area, the backlog is sent to the second processor, and the display of the corresponding backlog is cancelled.
Additional features and advantages of the invention will be set forth in the description which follows, and in part will be obvious from the description, or may be learned by practice of the invention. The objectives and other advantages of the invention will be realized and attained by the structure particularly pointed out in the written description and claims hereof as well as the appended drawings.
The technical solution of the present invention is further described in detail by the accompanying drawings and embodiments.
Drawings
The accompanying drawings, which are included to provide a further understanding of the invention and are incorporated in and constitute a part of this specification, illustrate embodiments of the invention and together with the description serve to explain the principles of the invention and not to limit the invention. In the drawings:
FIG. 1 is a schematic diagram of an intelligent desk according to an embodiment of the present invention;
FIG. 2 is a schematic diagram of another intelligent desk according to an embodiment of the present invention;
FIG. 3 is a schematic diagram of another intelligent desk according to an embodiment of the present invention;
FIG. 4 is a schematic diagram of another intelligent desk according to an embodiment of the present invention;
FIG. 5 is a diagram of a display device according to an embodiment of the present invention;
fig. 6 is a schematic display diagram of another display device according to an embodiment of the invention.
In the figure:
1. a table body; 2. a display device; 3. an information processing device; 11. a first display unit; 12. a second display unit; 21. a processor; 22. a communication module; (ii) a 51. A virtual control; 52. a second preset area; 53. a first preset area; 54. a first trajectory; 55. a second trajectory; 61. a desktop; 62. a rotating mechanism; 63. support the feet.
Detailed Description
The preferred embodiments of the present invention will be described in conjunction with the accompanying drawings, and it will be understood that they are described herein for the purpose of illustration and explanation and not limitation.
The embodiment of the invention provides an intelligent office table, which comprises a table body 1, a display device 2 and an information processing device 3, wherein the display device 2 is horizontally embedded in the upper end surface of the table body 1; the display device 2 includes a touch display screen;
the information processing apparatus 3 includes: a processor 21 and a communication module 22; the processor 21 is electrically connected with the display device 2; the processor 21 is communicatively coupled to a communication module 22.
The working principle and the beneficial effects of the technical scheme are as follows:
the processor 21 is a computer host which is used together with the display device 2 (a touch display screen) for office use of a user; for example: the display device 2 displays a calculator, a calendar, a to-do list, and the like. The processor 21 communicates with the outside through the communication module 22 to receive the backlog sent by the outside device, and sends the processed backlog to the outside device; the intelligent office is realized, paperless office is completed, the working efficiency of a user is improved, the to-be-handled items can be directly sent out through preset sending ways (a computer sending way to a front desk of an office, a computer sending way to a general manager and the like), and the handling efficiency is improved. In addition, the virtual control required by office work is arranged on the display device 2, so that the articles placed on the desktop are reduced, and the tidiness and attractiveness of the desktop of the office table are improved. The display device 2 can adopt an 8K ultra-high-definition display screen, and the processor 21 can simultaneously load three sets of control systems, namely an android system, an apple system and a Windows system.
In one embodiment, processor 21 performs operations comprising:
acquiring the area of an object placed on the surface of the display device 2, which is in contact with the display device 2, through the display device 2;
distinguishing and judging the object based on the area, a preset area and object corresponding table;
and when the object is a first preset object, executing a preset display scheme.
The working principle and the beneficial effects of the technical scheme are as follows:
when a user places a water cup on the display device 2 serving as a desktop, the display device displays a control button of a music player and plays music; when a user places the note on the display device 2 serving as the desktop, the display device displays an input interface of the electronic note; when the user needs to perform character input operation, the user places the Bluetooth keyboard on the desktop, and the processor senses the contact area of the Bluetooth keyboard and the display device 2, so that the situation that the user places the Bluetooth keyboard on the desktop is determined, and the Bluetooth keyboard is in wireless connection with the processor 21 to receive the operation of the user on the Bluetooth keyboard. Preferably, the display device 2 further includes a pressure detection screen disposed below the touch display screen, and the area of contact between the object and the display device 2 is determined based on the pressure detection. Furthermore, a USB interface is arranged on the side face of the table body, a sound box is arranged on the upper surface of the table body, and the like, so that the charging requirements and the music playing requirements of users are met.
In one embodiment, as shown in fig. 3 or 4, the table body 1 comprises: the folding table comprises a table top 61, two telescopic supporting legs 63 and two rotating mechanisms 62, wherein the two telescopic supporting legs 63 and the two rotating mechanisms 62 are symmetrically arranged on two sides of the table top 61;
the fixed end of the rotating mechanism 62 is fixedly connected with the supporting leg 63, and the rotating end of the rotating mechanism 62 is fixedly connected with the table top 61.
The working principle and the beneficial effects of the technical scheme are as follows:
the telescopic supporting legs 63 and the rotating mechanism 62 are connected to the processor 21, corresponding virtual control buttons are displayed on the display device 2, a user controls the telescopic supporting legs 63 to adjust the height of the desktop 61 through the virtual control buttons, the rotating mechanism 62 is controlled to act, the angle of the desktop 61 is adjusted, and the height and the angle of the office table can be adjusted according to personal requirements of the user. In addition, a solid button can be arranged on the side surface of the table top 61 for controlling the extension and contraction of the supporting legs 63 and the rotation of the rotating mechanism 62.
In one embodiment, as shown in fig. 5, the display device 2 includes: a first display unit 11 and a second display unit 12; the first display unit 11 and the second display unit 12 are spliced into a complete screen, a lifting device is arranged below the second display unit 12, and the second display unit 12 is hinged to one end of the lifting device.
The working principle and the beneficial effects of the technical scheme are as follows:
during normal use, the first display unit 11 and the second display unit 12 are arranged on the surface of the intelligent office table as a whole and used as touch screens for office use. The second display unit can be lifted to a position higher than the surface of the office table through the lifting device, and then the worker manually turns the second display unit 12 to the vertical position, so that the worker can lift the head to work, and the neck is prevented from being excessively fatigued.
In one embodiment, processor 21 performs operations comprising:
displaying an icon of the virtual control 51 through the first display unit 11; the virtual control 51 includes: one or more of a calculator, a notepad, a notice, a to-do list, a completion list, a calendar, a virtual keyboard and a virtual mouse;
displaying the backlog through the first display unit 11;
receiving a first operation of dragging the backlog into a first preset area 53 of the first display unit 11 on the first display unit 11 by a user;
displaying the backlog through a second display unit when the first operation is received;
receiving the processing operation of a user on backlogs through a virtual keyboard;
when the processing operation indicates that the backlog is completed, marking the backlog as the completed backlog; adding the completion item into the completion item list;
the working principle and the beneficial effects of the technical scheme are as follows:
as shown in fig. 6, the first display unit 11 and the processor 21 cooperate with some virtual controls 51 mainly running the use required by the user for office work, such as calculator, notepad, notification, to-do list, completion list, calendar, virtual keyboard, virtual mouse. The virtual keyboard and the virtual mouse are matched and mainly used for processing backlogs by a user. The first display unit 11 is embedded on the upper surface of the office table, so that the virtual control 51 for assisting the user in working is provided, the objects placed on the desktop of the office table are reduced as much as possible, and the cleanness and tidiness of the desktop of the office table are guaranteed.
In one embodiment, processor 21 further performs operations comprising:
receiving a second operation of the user dragging the icon of the virtual control 51 into the second preset area 52 on the first display unit 11;
when the icon of the virtual control 51 moves to the second preset area 52, displaying the virtual control 51 in the second preset area 52 and receiving a third operation of the user on the virtual control 51;
the working principle and the beneficial effects of the technical scheme are as follows:
as shown in fig. 6, the virtual control 51 is contracted to be a virtual control 51 icon when not in use, and is displayed on the screen of the first display unit 11, when the virtual control 51 needs to be used, the user drags the icon to move the icon to the preset area, the virtual control 51 is displayed in the preset area, and when the virtual control 51 is displayed, the user can touch the first display unit 11 to perform related operations on the virtual control 51. For example: the preset area of the virtual keyboard is in the middle of the first display unit 11, when the virtual keyboard is not needed to be used, the virtual keyboard is dragged out of the middle of the first display unit 11, and the first display unit 11 displays an icon representing the virtual keyboard at a position close to the right side of the first display unit 11; when the virtual keyboard is needed to be used, after the icon is dragged to reach the preset position in the middle, the virtual keyboard is displayed, and a user can use the virtual keyboard for inputting, operating and the like. For another example: the preset area of the calculator is the left side of the preset area of the virtual keyboard; in addition, the other virtual controls 51 have respective preset regions.
Processor 21 also performs operations comprising:
when the to-do item sent by the external equipment is received through the communication module 22, the to-do item is verified;
after the verification is passed, displaying the backlogs in a third preset area through the first display unit 11 and adding the backlogs into a backlog list;
the verifying the backlog comprises the following steps:
first identification information of a device that transmits backlogs is acquired,
comparing the first identification information with second identification information stored in advance, and acquiring third identification information in backlogs when the comparison is the same; refusing to receive backlog when the comparison is different;
comparing the third identification information with fourth identification information stored in advance, and refusing to receive backlog when the comparison is different; when the comparison is the same, acquiring the execution date of the backlog and the completion time required for completing the backlog;
acquiring the total time required for completing the existing backlogs corresponding to the execution dates in the backlog list;
refusing to receive backlogs when the sum of the total time and the completion time is greater than a preset first time;
and when the sum of the total time and the completion time is less than or equal to the preset first time, the backlog verification is passed.
The working principle and the beneficial effects of the technical scheme are as follows:
as shown in fig. 6, the verification of the received backlogs according to the backlogs in the backlog list displayed by the first display unit 11 is mainly to prevent the backlogs from being piled up according to the time of the user's handling events, so that the user cannot complete the backlogs in the backlog list within a prescribed time.
In one embodiment, the first predetermined area 53 is an area where the virtual keyboard is located.
The working principle and the beneficial effects of the technical scheme are as follows:
as shown in fig. 6, after the user directly drags the backlog displayed on the first display unit 11 to the virtual keyboard position, the processor 21 directly sends the backlog to the second processor 23 through the communication module 22, the second processor 23 displays the backlog on the second display 12, and the user operates on the virtual keyboard and the virtual mouse to process the backlog. The virtual keyboard is directly used as the first preset area 53 corresponding to the backlog, so that the first preset area 53 does not need to be arranged at other positions of the first display unit 11, the utilization rate of the display interface of the first display unit 11 is improved, in addition, the moving process that a user needs to move a hand to the virtual keyboard after dragging the backlog to the first preset area 53 is omitted, and the working efficiency of the user is improved.
In one embodiment, processor 21 performs operations comprising:
acquiring a first trajectory 54 of a user touching the display device 2;
a first coordinate (x) of a first start point of the first trajectory 54 is obtained1,y1) First direction vector v1={l1,m1And a first time t1
A second coordinate (x) of the first end point of the first trajectory 54 is obtained2,y2) A second direction vector v2={l2,m2And a second time t2
Calculating the distance L between the first endpoint and the first endpoint by the following formula:
Figure BDA0002552967710000111
when the first starting point position of the first track 54 is the icon of the virtual control 51 and the distance L is less than the preset distance, displaying the virtual control 51 corresponding to the icon and receiving a third operation of the user on the virtual control 51;
calculating the included angle theta between the first direction vector and the second direction vector1The calculation formula is as follows:
Figure BDA0002552967710000112
the first velocity V of the first trajectory 54 is calculated as:
Figure BDA0002552967710000113
when the included angle theta1When the first speed V is smaller than the first preset angle value and larger than the first preset speed value, and the first starting point position of the first trajectory 54 is the icon of the virtual control 51; a first coordinate set a ═ a of the second preset region 52 is acquired1,a2,…,ai,…,an}; ith element a in coordinate setiThe coordinates are expressed as (x)i,yi);
Determining that the first trajectory 54 points to the second predetermined area 52 when the presence element in the first set of coordinates is such that the following formula holds;
Figure BDA0002552967710000114
or
Figure BDA0002552967710000115
When the first track 54 points to the second preset area 52, displaying the virtual control 51 in the second preset area 52 and canceling the display of the icon corresponding to the virtual control 51;
when the included angle theta1When the first speed V is smaller than the first preset angle value and larger than the first preset speed value, and the first starting point position of the first track 54 is the backlog; acquiring second coordinates of the first preset area 53Set B ═ B1,b2,…,bj,…,bm}; j element b in coordinate setjThe coordinates are expressed as (x)j,yj);
Determining that the first trajectory 54 points to the first preset area 53 when the presence element in the second coordinate set makes the following formula;
Figure BDA0002552967710000121
or
Figure BDA0002552967710000122
When the first track 54 points to the first preset area 53, the to-do-items are sent to the second processor 23 and the display of the corresponding to-do-items is canceled.
The working principle and the beneficial effects of the technical scheme are as follows:
as shown in fig. 6, the first display screen is embedded in the upper end surface of the table body 1 to be used as a desktop, when a large-screen touch screen is used and the virtual control 51 or the to-do item is displayed at one end of the touch screen, but the first preset area 53 or the second preset area 52 is arranged at the other end of the touch screen, the virtual control 51 or the to-do item and the like are dragged from one end of the touch screen to the first preset area 53 or the second preset area 52 at the other end, and the dragging distance is long and the dragging time is long, which is inconvenient for the user to operate.
The scheme adopted by the embodiment is as follows:
firstly, integrating the speed of the first track 54 of the touch screen touched by the user and the included angle theta between the first end point and the first start point of the first track 541And whether the first start point position of the first trajectory 54 is the icon of the virtual control 51, and whether the first trajectory 54 is the drag icon is determined. When the included angle theta1When the first speed V is smaller than the first preset angle value, the first speed V is greater than the first preset speed value, and the first starting point position of the first track 54 is the icon of the virtual control 51, determining that the first track 54 is the dragged icon, then determining whether the first track 54 points to the second preset area 52, when the first track 54 points to the second preset area 52,displaying the virtual control 51 in the second preset area 52 and canceling the icon corresponding to the virtual control 51; the speed of dragging the icon of the virtual control 51 to the second preset area 52 by the user is increased, and the working efficiency is improved.
Integrating the speed of the first track 54 touched by the user, the included angle theta between the first end point and the first start point of the first track 541And whether the first start point position of the first trajectory 54 is a backlog, it is determined whether the first trajectory 54 is a drag backlog. When the included angle theta1When the first speed V is smaller than the first preset angle value, the first speed V is greater than the first preset speed value, and the first start point position of the first track 54 is the backlog, determining that the first track 54 is the drag backlog, then determining whether the first track 54 points to the first preset area 53, and when the first track 54 points to the first preset area 53, sending the backlog to the second processor 23 and canceling the display of the corresponding backlog; the speed of dragging the backlog to the first preset area 53 by the user is increased, and the work efficiency is improved.
In addition, when the first starting point of the first track 54 is the icon of the virtual control 51, the distance between the first starting point and the first end point of the first track 54 where the user touches the touch screen is determined according to the preset distance, and whether the user needs to directly open the virtual control 51 at the icon position for use is determined, so that the display device 2 displays a plurality of virtual controls 51 and receives the user's operation on the plurality of virtual controls 51, and the requirement of the user on the virtual control 51 in work is met.
In one embodiment, processor 21 performs operations comprising:
acquiring a first trajectory 54 of a user touching the display device 2;
a first coordinate (x) of a first start point of the first trajectory 54 is obtained1,y1) A first time t1
A second coordinate (x) of the first end point of the first trajectory 54 is obtained2,y2) A second time t2
Acquiring a second track 55 within a preset second time after acquiring the first track 54;
a third coordinate (x) of a second start point of the second trajectory 55 is acquired3,y3) A third time t3
A fourth coordinate (x) of the second end of the second trajectory 55 is obtained4,y4) A fourth time t4
The first velocity V of the first trajectory 54 is calculated as:
Figure BDA0002552967710000131
the difference Δ V between the velocity of the first trajectory 54 and the velocity of the second trajectory 55 is calculated as follows:
Figure BDA0002552967710000132
calculating the angle theta between the first locus 54 and the second locus 552The calculation formula is as follows:
Figure BDA0002552967710000141
when the included angle theta2When the first speed V is smaller than the second preset angle value, the first speed V is greater than the first preset speed value, the difference value Δ V is smaller than or equal to the second preset speed value, the first starting point position of the first track 54 is the icon of the virtual control 51, and the second ending point position of the second track 55 is the second preset area 52, displaying the virtual control 51 in the second preset area 52 and canceling the display of the icon corresponding to the virtual control 51;
when the included angle theta2And when the first speed V is smaller than the second preset angle value, the first speed V is greater than the first preset speed value, the difference Δ V is smaller than or equal to the second preset speed value, the first start point position of the first track 54 is the to-do-list, and the second end point position of the second track 55 is the first preset area 53, the to-do-list is sent to the second processor 23, and the display of the corresponding to-do-list is cancelled.
The working principle and the beneficial effects of the technical scheme are as follows:
as shown in fig. 6, the first display screen is embedded in the upper end surface of the table body 1 to be used as a desktop, when a large-sized touch screen is used and the virtual control 51 or the to-do item is displayed at one end of the touch screen, but the first preset area 53 or the second preset area 52 is arranged at the other end of the touch screen, the virtual control 51 or the to-do item and the like are dragged from one end of the touch screen to the first preset area 53 or the second preset area 52 at the other end, and when an article such as a book is placed on the desktop on a dragging path, the article needs to be bypassed, so that the dragging distance becomes long and the time is long, which is inconvenient for a user to operate.
The user only needs to touch the virtual control 51 or the to-do-event position to form the first track 54, and directly touch the second preset area 52 or the first preset area 53 to form the second track 55 in the second preset area 52 or the first preset area 53 across the area of the object on the display device 2 within the preset second time after the first track 54 is formed by the touch. When touched, ensuring that the first starting point of the first track 54 is the virtual control 51 or the backlog, and ensuring that the end point of the second track 55 is the second preset area 52 or the first preset area 53; the processor determines the angle theta between the second track 55 and the second track 552The first track 54 and the second track 55 are associated by the first speed V of the first track 54 and the difference Δ V between the speed of the first track 54 and the speed of the second track 55, and it is determined that the user performs dragging the virtual control 51 to the second preset area 52 or dragging the to-do-item to the first preset area 53, so as to perform corresponding operations, and thus, the user does not need to drag the item around the display device 2, and the work efficiency is improved. In addition, the comprehensive judgment of the first track 54 and the second track 55 can also be applied to the dragging operation of crossing other function areas between the second preset area 52 and the virtual control 51, so as to avoid the situation that the processor 21 considers that the function area is the target area of the dragging operation when passing through other function areas during the conventional dragging operation.
It will be apparent to those skilled in the art that various changes and modifications may be made in the present invention without departing from the spirit and scope of the invention. Thus, if such modifications and variations of the present invention fall within the scope of the claims of the present invention and their equivalents, the present invention is also intended to include such modifications and variations.

Claims (5)

1. An intelligent office table comprises a table body (1), a display device (2) and an information processing device (3), and is characterized in that,
the display device (2) is horizontally embedded on the upper end face of the table body (1); the display device (2) comprises a touch display screen;
the information processing apparatus (3) includes: a processor (21) and a communication module (22); the processor (21) is electrically connected with the display device (2); the processor (21) is in communication connection with the communication module (22);
the display device (2) includes: a first display unit (11) and a second display unit (12); the first display unit (11) and the second display unit (12) are spliced into a complete screen, a lifting device is arranged below the second display unit (12), and the second display unit (12) is hinged to one end of the lifting device;
the processor (21) performs operations comprising:
displaying an icon of a virtual control (51) through the first display unit (11); the virtual control (51) comprises: one or more of a calculator, a notepad, a notice, a to-do list, a completion list, a calendar, a virtual keyboard and a virtual mouse;
displaying backlogs through the first display unit (11);
receiving a first operation of dragging the backlog into a first preset area (53) of the first display unit (11) on the first display unit (11) by a user;
displaying the backlog through the second display unit (12) when the first operation is received;
receiving the processing operation of the user on the backlog through the virtual keyboard;
when the processing operation indicates that the backlog is completed, marking the backlog as a completed event; adding the completion item into the completion item list;
the processor (21) further performs operations comprising:
receiving a second operation of dragging the icon of the virtual control (51) into a second preset area (52) on the first display unit (11) by a user;
when the icon of the virtual control (51) moves to the second preset area (52), displaying the virtual control (51) in the second preset area (52) and receiving a third operation of the virtual control (51) by a user;
the processor (21) further performs operations comprising:
when the backlog sent by the external equipment is received through the communication module (22), the backlog is verified;
after the verification is passed, displaying the backlogs in a third preset area through the first display unit (11) and adding the backlogs into the backlog list;
the verifying the backlog comprises:
acquiring first identification information of a device sending the backlog,
comparing the first identification information with second identification information stored in advance, and acquiring third identification information in the backlog when the comparison is the same; refusing to receive the backlog when the comparison is different;
comparing the third identification information with prestored fourth identification information, and refusing to receive the backlog when the comparison is different; when the comparison is the same, acquiring the execution date of the backlog and the completion time required for completing the backlog;
acquiring the total time required for completing the existing backlogs corresponding to the execution date in the backlog list;
refusing to receive the backlog when the sum of the total time and the completion time is greater than a preset first time;
when the sum of the total time and the completion time is less than or equal to a preset first time, the to-do-item verification is passed;
the processor (21) further performs the following operations:
acquiring a first trajectory (54) of a user touching the display device (2);
acquiring a first coordinate (x) of a first start point of the first trajectory (54)1,y1) First direction vector v1={l1,m1And a first time t1
Acquiring a second coordinate (x) of a first end point of the first trajectory (54)2,y2) A second direction vector v2={l2,m2And a second time t2
Calculating the distance L between the first starting point and the first end point, wherein the calculation formula is as follows:
Figure FDA0003409744150000031
when the first starting point position of the first track (54) is an icon of a virtual control (51) and the distance L is smaller than a preset distance, displaying the virtual control (51) corresponding to the icon and receiving a third operation of a user on the virtual control (51);
calculating an included angle theta between the first direction vector and the second direction vector1The calculation formula is as follows:
Figure FDA0003409744150000032
a first velocity V of the first trajectory (54) is calculated by:
Figure FDA0003409744150000033
when the included angle theta1The first speed V is greater than a first preset speed value and is smaller than a first preset angle value, and when a first starting point position of the first track (54) is an icon of the virtual control (51); a first coordinate set A ═ a of a second preset area (52) is acquired1,a2,…,ai,…,an}; ith element a in coordinate setiThe coordinates are expressed as (x)i,yi);
Determining that the first trajectory (54) points to the second preset area (52) when the presence element in the first coordinate set makes the following formula;
Figure FDA0003409744150000034
or
Figure FDA0003409744150000035
When the first track (54) points to the second preset area (52), displaying the virtual control (51) in the second preset area (52) and canceling the display of the icon corresponding to the virtual control (51);
when the included angle theta1The first speed V is greater than a first preset speed value and is smaller than a first preset angle value, and when the first starting point position of the first track (54) is a backlog; a second coordinate set B ═ B { B } of the first predetermined region (53) is obtained1,b2,…,bj,…,bm}; j element b in coordinate setjThe coordinates are expressed as (x)j,yj);
Determining that the first trajectory (54) points to the first preset area (53) when the presence element in the second coordinate set makes the following formula;
Figure FDA0003409744150000041
or
Figure FDA0003409744150000042
When the first track (54) points to the first preset area (53), the backlog is sent to a second processor (23) and the display corresponding to the backlog is cancelled.
2. The intelligent desk of claim 1, wherein the processor (21) executes comprising:
acquiring, by the display device (2), an area of a surface of the display device (2) in contact with the display device (2) of an object placed on the surface of the display device (2);
based on the area, a preset area and object corresponding table, distinguishing and judging the object;
and executing a preset display scheme when the object is a first preset object.
3. The intelligent desk according to claim 1, wherein the desk body (1) comprises: the foldable table comprises a table top, two telescopic supporting legs and two rotating mechanisms, wherein the two telescopic supporting legs and the two rotating mechanisms are symmetrically arranged on two sides of the table top;
the fixed end of the rotating mechanism is fixedly connected with the supporting legs, and the rotating end of the rotating mechanism is fixedly connected with the tabletop.
4. The intelligent desk according to claim 1, wherein the first predetermined area (53) is the area where the virtual keyboard is located.
5. The intelligent desk of claim 1, wherein the processor (21) performs operations comprising:
acquiring a first trajectory (54) of a user touching the display device (2);
acquiring a first coordinate (x) of a first start point of the first trajectory (54)1,y1) A first time t1
Acquiring a second coordinate (x) of a first end point of the first trajectory (54)2,y2) A second time t2
Acquiring a second track (55) within a preset second time after acquiring the first track (54);
obtaining a third coordinate (x) of a second starting point of the second trajectory (55)3,y3) A third time t3
Obtaining said second trajectory (55)Fourth coordinate (x) of the second end point4,y4) A fourth time t4
A first velocity V of the first trajectory (54) is calculated by:
Figure FDA0003409744150000051
calculating a difference Δ V between the velocity of the first trajectory (54) and the velocity of the second trajectory (55), the calculation formula being as follows:
Figure FDA0003409744150000052
calculating an angle θ between the first trajectory (54) and the second trajectory (55)2The calculation formula is as follows:
Figure FDA0003409744150000053
when the angle theta is larger than2When the first speed V is smaller than a second preset angle value, the first speed V is larger than a first preset speed value, the difference value delta V is smaller than or equal to a second preset speed value, a first starting point position of the first track (54) is an icon of the virtual control (51), and a second ending point position of the second track (55) is a second preset area (52), displaying the virtual control (51) in the second preset area (52) and canceling the display of the icon corresponding to the virtual control (51);
when the angle theta is larger than2And when the first speed V is smaller than a second preset angle value, the first speed V is larger than a first preset speed value, the difference value delta V is smaller than or equal to a second preset speed value, the first starting point position of the first track (54) is the backlog, and the second ending point position of the second track (55) is a first preset area (53), the backlog is sent to the second processor (23) and the display corresponding to the backlog is cancelled.
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