WO2021047388A1 - 一种检索*** - Google Patents

一种检索*** Download PDF

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Publication number
WO2021047388A1
WO2021047388A1 PCT/CN2020/111297 CN2020111297W WO2021047388A1 WO 2021047388 A1 WO2021047388 A1 WO 2021047388A1 CN 2020111297 W CN2020111297 W CN 2020111297W WO 2021047388 A1 WO2021047388 A1 WO 2021047388A1
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Prior art keywords
layer
elements
retrieval
layers
command
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PCT/CN2020/111297
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English (en)
French (fr)
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高凡
刘择源
李大雷
熊东
刘美杉
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高凡
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Publication of WO2021047388A1 publication Critical patent/WO2021047388A1/zh

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    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F16/00Information retrieval; Database structures therefor; File system structures therefor
    • G06F16/50Information retrieval; Database structures therefor; File system structures therefor of still image data
    • G06F16/53Querying
    • G06F16/532Query formulation, e.g. graphical querying
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F16/00Information retrieval; Database structures therefor; File system structures therefor
    • G06F16/50Information retrieval; Database structures therefor; File system structures therefor of still image data
    • G06F16/58Retrieval characterised by using metadata, e.g. metadata not derived from the content or metadata generated manually
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F16/00Information retrieval; Database structures therefor; File system structures therefor
    • G06F16/50Information retrieval; Database structures therefor; File system structures therefor of still image data
    • G06F16/58Retrieval characterised by using metadata, e.g. metadata not derived from the content or metadata generated manually
    • G06F16/5866Retrieval characterised by using metadata, e.g. metadata not derived from the content or metadata generated manually using information manually generated, e.g. tags, keywords, comments, manually generated location and time information
    • 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]
    • G06F3/0481Interaction techniques based on graphical user interfaces [GUI] based on specific properties of the displayed interaction object or a metaphor-based environment, e.g. interaction with desktop elements like windows or icons, or assisted by a cursor's changing behaviour or appearance
    • 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
    • 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
    • G06F3/04883Interaction 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 for inputting data by handwriting, e.g. gesture or text
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F9/00Arrangements for program control, e.g. control units
    • G06F9/06Arrangements for program control, e.g. control units using stored programs, i.e. using an internal store of processing equipment to receive or retain programs
    • G06F9/44Arrangements for executing specific programs
    • G06F9/451Execution arrangements for user interfaces
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F2203/00Indexing scheme relating to G06F3/00 - G06F3/048
    • G06F2203/048Indexing scheme relating to G06F3/048
    • G06F2203/04806Zoom, i.e. interaction techniques or interactors for controlling the zooming operation

Definitions

  • the invention relates to a computing system, in particular to a retrieval system.
  • the element retrieval system in the prior art often uses a search method based on text or entries (for example, the object name or the language description of the object attributes and characteristics that the retrieval system has established) to find the desired target object, and the retrieval system All the elements in are usually displayed in a tree structure, that is, the top part is a root target element, and the root target element corresponds to the first-level target element of the root target element (the first-level target element can be regarded as the root target element).
  • each page displays N rows and M columns of elements: for example, patent document CN103853797A discloses a picture retrieval method, which vectorizes the text input by the user and puts it in the index of the text label according to the processing result.
  • Patent document CN107220299A discloses determining a keyword in a search command, based on the keyword to find a picture tag matching the keyword, and taking the picture corresponding to the picture tag as the search result; URL http://www. nipic.com/ , https://www.turbosquid.com, etc. also disclose a method for retrieving picture elements based on search terms, where the picture elements are displayed in the above-mentioned multi-page display mode. This has led to the use of text-based or item-based display methods for target objects that users do not understand or that are not easy to describe using words will consume a lot of time for users to find them.
  • the structure is used to display, when there are many child elements of a target element, due to the display space limitation, the user can only view part of the child elements of a target element, and the scroll wheel needs to be scrolled left and right or up and down to view the remaining child elements, or When the multi-page display mode is adopted, the user needs to manually turn the page to find the required element, which also affects the user's search speed to a certain extent.
  • the retrieval system includes a retrieval interface capable of receiving user commands input by a command input device and m system objects SB 1 , SB 2 displayed on the retrieval interface. ,...,SB m , where the j-th element layer of the i-th system object SB i includes n(i,j) different j-layer elements j-layer element P(i,j,k) different j+1 layer elements distributed around 1 ⁇ i ⁇ m, 1 ⁇ j ⁇ L i -1, 1 ⁇ k ⁇ n ( i, j), p (i, j, k) ⁇ 0, L i is the i-th system of elements contained in the object SB i
  • the total number of layers; each layer element of at least one layer of the system object is associated with a file; the user command includes at least a zoom-in command and a get command; when the zoom-in command is executed, it is used to control the m system objects SB 1 , SB 2
  • the present invention also discloses a non-transitory computer-readable storage medium that stores a computer program that can be executed by one or more processors of a computer device.
  • a retrieval interface is presented, wherein the retrieval interface displays m system objects SB 1 , SB 2 ,..., SB m , and the jth system object SB i Element layers include n(i,j) different j-layer elements j-layer element P(i,j,k) different j+1 layer elements distributed around 1 ⁇ i ⁇ m, 1 ⁇ j ⁇ L i -1,1 ⁇ k ⁇ n (i, j), p (i, j, k) ⁇ 0, L i is the i-th system of elements contained in the object SB i
  • the total number of layers; each layer element of at least one layer of the system object is associated with a file; the search interface can also receive user commands input by a command input device, and the user commands include at least a zoom command and a
  • the present invention also discloses a computer device, including: a display, one or more processors, a memory, the memory is used to store a computer program executable by the one or more processors, when the computer program When executed by the one or more processors, a retrieval interface is presented on the screen of the display, wherein the retrieval interface displays m system objects SB 1 , SB 2 ,..., SB m , the i-th
  • the j-th element layer of the system object SB i includes n(i,j) different j-layer elements j-layer element P(i,j,k) different j+1 layer elements distributed around 1 ⁇ i ⁇ m, 1 ⁇ j ⁇ L i -1,1 ⁇ k ⁇ n (i, j), p (i, j, k) ⁇ 0
  • L i is the i-th system of elements contained in the object SB i
  • the total number of layers; each layer element of at least one layer of the system object is associated with a file; the search interface can also receive user commands
  • Figure 1 is a schematic diagram of an embodiment of the retrieval system of the present invention
  • Figure 2 is the content presented when the system objects with different shapes of elements of the two layers of the present invention are displayed on the retrieval interface;
  • Figure 3 is an embodiment of the present invention in which the lower element is uniformly arranged around the upper element
  • Fig. 4 is another embodiment of the present invention in which the lower element is uniformly arranged around the upper element.
  • the present invention discloses a retrieval system.
  • the retrieval system can be designed in any format that is convenient for users.
  • the retrieval system can be designed as a web version (for example, web format) retrieval system , So that the user can call the retrieval system;
  • the retrieval system can be designed as a plug-in integrated into other software, so that the retrieval system can be invoked in other software;
  • the retrieval system can be designed as a client version retrieval software, that is, the retrieval software is compatible with the user's mobile communication terminal, so that the user can use the retrieval software on the mobile terminal.
  • the mobile communication terminal may be a communication terminal with various types of operating systems, for example, the operating system may be a Windows operating system, an Android operating system, or an Apple operating system, and the mobile communication terminal may It is a mobile phone, PAD or computer, etc.
  • the operating system may be a Windows operating system, an Android operating system, or an Apple operating system
  • the mobile communication terminal may It is a mobile phone, PAD or computer, etc.
  • FIG. 1 is a schematic diagram of an embodiment of the retrieval system of the present invention.
  • the retrieval system 1 includes a retrieval interface 2 capable of receiving user commands and m system objects SB 1 , SB 2 , ..., SB m displayed on the retrieval interface 2.
  • the m system objects SB 1 , SB 2 ,..., SB m may be different types of system objects.
  • the m system objects may be Including: vehicle type system object 21, scene type system object 22, role type system object 23, plane graphics type system object 24, and solid geometric graphics type system object 25, and those skilled in the art can understand that the above examples are only Exemplary examples are not the only examples that limit the protection scope of the claims of the present invention.
  • the j-th element layer of the i-th system object SB i includes n(i,j) different j-layer elements 1 ⁇ i ⁇ m, 1 ⁇ j ⁇ L i -1, the total number of element level L i is the i-th system object comprising SB i, wherein, j of Element P(i,j,k) different j+1 layer elements distributed around 1 ⁇ k ⁇ n(i,j), p(i,j,k) ⁇ 0.
  • the value range of p(i,j,k) is [0,20], more preferably 12.
  • the five system objects displayed on the search interface 2 respectively include level 1 elements 31, 32, 33, 34, 35, and level 1 elements 33 are distributed around 331, 332, 333, 334, and 335, totaling 5 A 2-layer element.
  • the layer elements of all layers may be picture elements or video elements.
  • the layer elements of different element layers as visual elements (for example, pictures, videos), the user can intuitively search for the required content according to the content displayed by the element (for example, more obvious characteristics such as shape).
  • the layer elements of all layers may be squares.
  • the side length of is the same as that of the j-level element Corresponding p(i,j,k) different j+1 layer elements
  • the layer elements of all layers may be circular, and the circular diameter dimensions B j and j+1 of the j layer elements
  • the diameter dimension is the same as that of the j layer element Corresponding p(i,j,k) different j+1 layer elements Q times the diameter size of any j+1 layer element.
  • the layer elements of all layers can also be set to other shapes, such as oval, square, round and chamfered, to organize different layer elements.
  • the value range of q is [3,7], preferably 3.
  • p(i,j,k) lower layers can be made The element surrounds the upper-level element.
  • the user can view all the lower-level elements at one time, thereby improving the search efficiency.
  • the search interface displays m system objects SB 1 , SB 2 ,..., SB m , any j-level element of the i-th system object SB i and other j-level elements of SB i, the other elements of layer j to j + 1 corresponding to the element layer to layer L i elements, the elements of any of a layer j corresponding to j + 1 of element content to L i layer elements presented non-overlapping, as shown in FIG. 2, FIG. 2
  • the p(i,j,k) j+1 layer elements can be arranged according to a preset arrangement ) Elements arranged in the j layer
  • the p(i,j,k) lower element Evenly arranged in the upper element
  • Figure 3 is an embodiment of the present invention where the lower element is evenly arranged around the upper element
  • Figure 4 is another embodiment of the present invention where the lower element is evenly arranged around the upper element
  • the j-level element When it is a circle, the elements of layer j Corresponding p(i,j,k) j+1 layer elements It is a circle, and p(i,j,k) j+1 layer elements
  • the center of the circle is equally spaced in the elements of layer j
  • the center of the circle is the center of the circle, and the radius is On the circumference of the circle, at this time, in order to make all the layer elements can be fully displayed, w and q
  • the layer elements of all layers can be picture elements in any format, such as gif format, jpg format, etc.
  • the pictures are preferably vector pictures to reduce image distortion caused by the layer elements when they are enlarged.
  • the zooming method commonly used in the art can be used to reduce the distortion of the picture or video caused by the zooming operation.
  • the m can be customized to update the content of the retrieval system 1.
  • the value range of m is [2, Fm], where, P X is the horizontal size of the screen of the device running the retrieval system, and P Y is the vertical size of the screen of the device running the retrieval system, Indicates that the ratio of 2 ⁇ P X and 7 ⁇ B 1 is rounded down, It means that the ratio of 2 ⁇ P Y and 7 ⁇ B 1 is rounded down, and B 1 is the square side length or circular diameter of any one-layer element.
  • the units of P X , P Y , and B 1 are the same, and may be a physical size or the number of pixels.
  • the value range of B 1 is [800, 1800], preferably 1200, so that at least all 1-layer elements in the system object can be clearly displayed by the retrieval system.
  • the with Customizable settings for example, you can set For pictures representing vehicles, These are pictures showing cars, airplanes, ships, etc. respectively.
  • the layer elements and the number of layer elements in different layers can be customized, for example, when Is a picture representing a vehicle, the You can also set the layer elements and the number of layer elements for pictures representing ancient, modern, future, etc. in a custom way, which can conveniently arrange and retrieve the elements, and then quickly find the target element.
  • each layer element of at least one layer of the system object is associated with a file.
  • each layer element of all element layers of the system object is associated with a file.
  • each element of the lowest layer of the system object is associated with a file.
  • the retrieval system 1 can operate the m system objects SB 1 , SB 2 ,..., SB m according to the user command input by the command input device in the retrieval interface 2 to control the The content of m system objects SB 1 , SB 2 ,..., SB m displayed in the retrieval interface 2.
  • the user command includes at least a zoom-in command and an acquisition command; when the zoom-in command is executed, it is used to perform a zoom-in operation on the m system objects SB 1 , SB 2 ,..., SB m;
  • the get command when executed, it is used to get the file associated with the layer element as a search result. For example, for a retrieval system of a web page version or a client version, when the get command is executed (that is, drag and drop on the retrieval interface) If there is a layer element), the file associated with the layer element (for example, a file in 3D format, etc.) is obtained as the search result.
  • the user can directly drag and drop the file corresponding to the picture or video to other software (such as 3DMax software) by dragging the picture element or video element, which facilitates the software design of the target scene and improves the retrieval system Convenience of use; and those skilled in the art will know that the user command may also include other types of commands, so that the user can use the retrieval system 1 conveniently.
  • the command input device may be a command input device commonly used in the prior art, such as a mouse, a touch keyboard, a game handle, and the like.
  • the present invention constructs a visualization system with pictures, videos, etc. by setting up multiple types of system objects that include multiple element layers and layer elements of different element layers surround the corresponding upper-level elements according to preset rules.
  • the element is a retrieval system for basic retrieval elements.
  • the retrieval system can display multiple sub-elements at the same time, so that users can intuitively search for the desired target object, reducing the search time for target objects that are difficult to describe in language.
  • the current display range of the search interface is the set of content currently displayed on the search interface.
  • a search interface displays two objects (the current display range of the search interface is two objects at this time).
  • the content displayed on the retrieval interface is any one of the two objects (at this time, the current display range is any one of the two objects).
  • the value range of the current display magnification value G of the search interface is G>0.
  • the operation result of the zoom-in command is that the elements of different layers are proportionally reduced;
  • G>1 the elements of different layers are displayed according to the enlarged size.
  • the value of the first threshold is B 1 /q u , so that each of the m system objects has at least (u+1) element levels when the retrieval system 1 is activated
  • the layer elements in are displayed in the retrieval interface 2, where the value range of u is [1,3], preferably 2.
  • the user can select the desired target element across the element layers under the condition of proficiently operating the retrieval system 1, thereby improving the retrieval efficiency. For example, when three element layers are displayed, the user can directly click to select Layer element on the 3rd element layer.
  • the retrieval system 1 when the retrieval system 1 receives the zoom-in command input by the user, the following method is executed:
  • Step 100 Acquire the current display magnification value G of the retrieval interface according to the magnification command, and calculate the j layer element according to the current display magnification value G
  • the enlarged display size F j G*B j , 1 ⁇ i ⁇ m, 1 ⁇ j ⁇ L i , 1 ⁇ k ⁇ n(i,j).
  • the display magnification value G may be obtained according to a preset input device magnification mapping table according to the scroll direction and amplitude of the scroll wheel of the input device, or the touch direction and the touch sliding range.
  • the input device magnification mapping table may be a mapping table including the input device type, sliding direction, sliding amplitude, and display magnification value;
  • the display magnification value G may also be the input device type, sliding direction, A function of the sliding amplitude;
  • the input device type can be, for example, a mouse, touch keyboard, gamepad, etc.
  • the sliding direction can be a preset sliding direction corresponding to the input device type, such as up, down, left, right, etc. Retrieve the sliding direction customized by the system 1.
  • the preset sliding direction may also have many other ways, and the above examples are not the only examples that limit the protection scope of the present invention.
  • the zoom-in command may also include a user's single-click or double-click instruction on the layer element.
  • the zoom-in command can be obtained according to a preset single-click or double-click instruction and a mapping table displaying the zoom value G.
  • the retrieval system 1 obtains the enlarged display sizes of the layer elements of different layers of the m system objects when receiving the zoom-in command input by the command input device.
  • Step 200 according to the position information add of the command input device within the display range of the retrieval interface before the input of the zoom command, combined with the elements of layer j
  • the enlarged display size F j determines the current display range of the retrieval interface.
  • the position information add of the command input device within the display range of the search interface before the zoom command input can be expressed in the form of coordinates, and those skilled in the art will know that the position information add It can also be expressed in other ways commonly used in the art.
  • the present invention it is possible to determine the layer element H of the v element layers displayed by the search interface that is the closest to the add in the display range of the search interface, with the layer element H as the center, combined with the j layer elements
  • the enlarged display size F j determines the current display range of the retrieval interface after receiving the enlargement command.
  • the retrieval system 1 when the retrieval system 1 is activated, m system objects will be displayed, and each system object has 3 element layers displayed. After that, the retrieval system 1 will capture the position information of the command input device before the zoom in the retrieval system to determine the zoomed retrieval interface display range, for example, when the retrieval system 1 captures the position and position of the command input device and The third layer element of the second element layer of the first system object displayed in the retrieval interface 2 If the location coincides, the retrieval system 1 uses the elements of this level For the display center, according to the enlarged size of each layer element, the enlarged display range is determined.
  • the received user command is a zoom-in command
  • it can be based on the zoom-in magnitude of the zoom-in command, the content display range in the search interface before zooming, and the input device in the search interface before zooming in. Enlarge the content displayed in the retrieval interface 2 before zooming in.
  • the zoomed new content display range can be calculated according to certain rules. , Combined with the acquired position information of the command input device to determine the content displayed in the new content display range. For example, a mouse wheel zooming method similar to an electronic map (such as Google Maps, etc.) can be used to zoom in.
  • the present invention also discloses a non-transitory computer-readable storage medium, the non-transitory computer-readable storage medium stores a computer program executable by one or more processors of a computer device, when the computer program When executed by the one or more processors, a retrieval interface is presented, wherein the retrieval interface displays m system objects SB 1 , SB 2 ,..., SB m , and the jth system object SB i Element layers include n(i,j) different j-layer elements j-layer element P(i,j,k) different j+1 layer elements distributed around 1 ⁇ i ⁇ m, 1 ⁇ j ⁇ L i -1,1 ⁇ k ⁇ n (i, j), p (i, j, k) ⁇ 0, L i is the i-th system of elements contained in the object SB i
  • the total number of layers; each layer element of at least one layer of the system object is associated with a file; the search interface can also receive user commands input by a command input device, and the user commands include
  • each layer element of at least one layer of the system object is associated with a file.
  • each layer element of all element layers of the system object is associated with a file.
  • each element of the lowest layer of the system object is associated with a file.
  • the retrieval interface is displayed on the screen of the display of the computer device (the screen of the display of the computer device may be simply referred to as the device screen).
  • the with Customizable settings for example, you can set For pictures representing vehicles, These are pictures showing cars, airplanes, ships, etc. respectively. And those skilled in the art will know that the layer elements and the number of layer elements in different layers can be customized, for example, when Is a picture representing a vehicle, the You can also set the layer elements and the number of layer elements for pictures representing ancient, modern, future, etc. in a custom way, which can conveniently arrange and retrieve the elements, and then quickly find the target element.
  • the retrieval interface displays m system objects SB 1 , SB 2 ,..., SB m , any j-level element of the i-th system object SB i and other j-levels of SB i elements, said other layer element j to j + 1 corresponding to the layer L i layer element to element, the element corresponding to any one of the layer j j + 1 of element content to L i layer elements presented non-overlapping.
  • the p(i,j,k) j+1 layer elements can be arranged according to a preset arrangement ) Elements arranged in the j layer
  • the p(i,j,k) lower element Evenly arranged in the upper element
  • Figure 3 is an embodiment of the present invention where the lower element is evenly arranged around the upper element
  • Figure 4 is another embodiment of the present invention where the lower element is evenly arranged around the upper element.
  • the j-layer Corresponding p(i,j,k) j+1 layer elements It is a circle, and p(i,j,k) j+1 layer elements
  • the center of the circle is equally spaced in the elements of layer j
  • the value range of m is set to [2, Fm], where, P X is the horizontal size of the screen of the device running the retrieval system, and P Y is the vertical size of the screen of the device running the retrieval system, Indicates that the ratio of 2 ⁇ P X and 7 ⁇ B 1 is rounded down, It means that the ratio of 2 ⁇ P Y and 7 ⁇ B 1 is rounded down, and B 1 is the square side length or circular diameter of any one-layer element.
  • the value range of B 1 is [800 pixels, 1800 pixels], preferably 1200 pixels.
  • Step 100 Acquire the current display magnification value G of the retrieval interface according to the magnification command, and calculate the j layer element according to the current display magnification value G
  • the enlarged display size F j G*B j , 1 ⁇ i ⁇ m, 1 ⁇ j ⁇ L i , 1 ⁇ k ⁇ n(i,j).
  • Step 200 according to the position information add of the command input device within the display range of the retrieval interface before the input of the zoom command, combined with the elements of layer j
  • the enlarged display size F j determines the current display range of the retrieval interface.
  • the present invention also discloses a computer device, including: a display, one or more processors, and a memory, where the memory is used to store a computer readable program that can be executed by the one or more processors.
  • a search interface is presented on the screen of the display (the screen of the display can be referred to as the device screen for short), wherein the search interface displays m system objects SB 1 ,SB 2 ,...,SB m , the j-th element layer of the i-th system object SB i includes n(i,j) different j-layer elements j-layer element P(i,j,k) different j+1 layer elements distributed around 1 ⁇ i ⁇ m, 1 ⁇ j ⁇ L i -1,1 ⁇ k ⁇ n (i, j), p (i, j, k) ⁇ 0, L i is the i-th system of elements contained in the object SB i
  • each layer element of at least one layer of the system object is associated with a file.
  • each layer element of all element layers of the system object is associated with a file,
  • each element of the lowest layer of the system object is associated with a file.
  • the with Customizable settings for example, you can set For pictures representing vehicles, These are pictures showing cars, airplanes, ships, etc. respectively. And those skilled in the art will know that the layer elements and the number of layer elements in different layers can be customized, for example, when Is a picture representing a vehicle, the You can also set the layer elements and the number of layer elements for pictures representing ancient, modern, future, etc. in a custom way, which can conveniently arrange and retrieve the elements, and then quickly find the target element.
  • the retrieval interface displays m system objects SB 1 , SB 2 ,..., SB m , any j-level element of the i-th system object SB i and other j-levels of SB i elements, said other layer element j to j + 1 corresponding to the layer L i layer element to element, the element corresponding to any one of the layer j j + 1 of element content to L i layer elements presented non-overlapping.
  • the p(i,j,k) j+1 layer elements can be arranged according to a preset arrangement ) Elements arranged in the j layer
  • the p(i,j,k) lower element Evenly arranged in the upper element
  • Figure 3 is an embodiment of the present invention where the lower element is evenly arranged around the upper element
  • Figure 4 is another embodiment of the present invention where the lower element is evenly arranged around the upper element.
  • j-layer element when it is a circle, the elements of layer j Corresponding p(i,j,k) j+1 layer elements It is a circle, and p(i,j,k) j+1 layer elements
  • the center of the circle is equally spaced in the elements of layer j
  • the value range of m is set to [2, Fm], where, P X is the horizontal size of the screen of the device running the retrieval system, and P Y is the vertical size of the screen of the device running the retrieval system, Indicates that the ratio of 2 ⁇ P X and 7 ⁇ B 1 is rounded down, It means that the ratio of 2 ⁇ P Y and 7 ⁇ B 1 is rounded down, and B 1 is the square side length or circular diameter of any one-layer element.
  • the value range of B 1 is [800 pixels, 1800 pixels], preferably 1200 pixels.
  • Step 100 Acquire the current display magnification value G of the retrieval interface according to the magnification command, and calculate the j layer element according to the current display magnification value G
  • the enlarged display size F j G*B j , 1 ⁇ i ⁇ m, 1 ⁇ j ⁇ L i , 1 ⁇ k ⁇ n(i,j).
  • Step 200 according to the position information add of the command input device within the display range of the retrieval interface before the input of the zoom command, combined with the elements of layer j
  • the enlarged display size F j determines the current display range of the retrieval interface.

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Abstract

一种检索***(1),所述检索***(1)包括能够接收用户命令的检索界面(2)和在所述检索界面(2)显示的m个***对象SB 1,SB 2,…,SB m(21,22……,25),其中,第i个***对象SB i的第j个元素层包括n(i,j)个不同的j层元素如式I,j层元素如式II四周分布p(i,j,k)个不同的j+1层元素如式III,L i为第i个***对象SB i包含的元素层总数,所述***对象的至少一层的每一个层元素均与文件关联,进一步,所有层的层元素可以为图片元素或视频元素。

Description

一种检索*** 技术领域
本发明涉及计算***,尤其涉及一种检索***。
背景技术
现有技术中,在动画场景、电影场景、游戏场景等多种情形的搭建过程中,使用分类好的元素检索***是本领域中提高设计效率的常用方法。然而,在现有技术中的元素检索***,常采用基于文字或条目(例如检索***已制定的对象名称或对象属性及特性等的语言描述)的搜索方式来查找需要的目标对象,且检索***中的全部元素通常按照树状结构来显示,即最上部为一个根目标元素,根目标元素下面对应为与所述根目标元素的一级目标元素(一级目标元素可被视为所述根目标元素的子元素),每个一级目标元素的下面为与该一级目标元素对应的二级目标元素(二级目标元素也可视为所述一级目标元素的子元素),以此类推,或者采用多页显示,每页显示N行M列个元素:例如专利文献CN103853797A公开了一种图片检索方法,其将用户输入的文本向量化处理,并根据处理结果在文本标签的索引中检索图片;专利文件CN107220299A公开了确定检索命令中的一个关键词,基于该关键词查找与该关键词匹配的图片标签,并将该图片标签对应的图片作为检索结果;网址 http://www.nipic.com/https://www.turbosquid.com等也公开了一种基于检索词来检索图片元素的方法,其中图片元素在显示时采用以上所述的多页显示的方式。这导致了对于用户并不了解的目标对象或者不容易使用语言来描述的目标对象而言,采用基于文字或条目的显示方式将会消耗用户大量的时间来查找,另一方面,对于采用树状结构来显示的方式,会存在当一个目标元素的子元素较多时,由于显示空间限制,用户只能查看到一个目标元素的部分子元素,需要左右或者上下滚动滚轮来查看其余的子元素,或者在采用多页显示的方式时,需要用户手动翻页来查找所需的元素,这在一定程度上也影响了用户的查找速度。
发明内容
为解决上述技术问题,本发明公开了一种检索***,所述检索***包括能够接收命令输入设备所输入的用户命令的检索界面和在所述检索界面显示的m个***对象SB 1,SB 2,…,SB m,其中,第i个***对象SB i的第j个元素层包括n(i,j)个不同的j层元素
Figure PCTCN2020111297-appb-000001
j层元素
Figure PCTCN2020111297-appb-000002
四周分布p(i,j,k)个不同的j+1层元素
Figure PCTCN2020111297-appb-000003
1≤i≤m,1≤j≤L i-1, 1≤k≤n(i,j),p(i,j,k)≥0,L i为第i个***对象SB i包含的元素层总数;所述***对象的至少一层的每一个层元素均与文件关联;所述用户命令至少包括放大命令和获取命令;所述放大命令被执行时,用于对所述m个***对象SB 1,SB 2,…,SB m执行放大操作;所述获取命令被执行时,用于获取与层元素关联的文件,作为检索结果;进一步,所有层的层元素可以为图片元素(优选为矢量图片元素)或视频元素。
此外,本发明还公开了一种非瞬时性计算机可读存储介质,所述非瞬时性计算机可读存储介质存储有可由计算机设备的一个或多个处理器执行的计算机程序,当所述计算机程序被所述一个或多个处理器执行时,呈现一个检索界面,其中,所述检索界面显示有m个***对象SB 1,SB 2,…,SB m,第i个***对象SB i的第j个元素层包括n(i,j)个不同的j层元素
Figure PCTCN2020111297-appb-000004
j层元素
Figure PCTCN2020111297-appb-000005
四周分布p(i,j,k)个不同的j+1层元素
Figure PCTCN2020111297-appb-000006
1≤i≤m,1≤j≤L i-1,1≤k≤n(i,j),p(i,j,k)≥0,L i为第i个***对象SB i包含的元素层总数;所述***对象的至少一层的每一个层元素均与文件关联;所述检索界面还能够接收命令输入设备所输入的用户命令,所述用户命令至少包括放大命令和获取命令;所述放大命令被执行时,用于对所述m个***对象SB 1,SB 2,…,SB m执行放大操作;所述获取命令被执行时,用于获取与层元素关联的文件,作为检索结果;进一步,所有层的层元素可以为图片元素(优选为矢量图片元素)或视频元素。
最后,本发明还公开了一种计算机设备,包括:显示器、一个或多个处理器、存储器,所述存储器用于存储可由所述一个或多个处理器执行的计算机程序,当所述计算机程序被所述一个或多个处理器执行时,在所述显示器的屏幕上呈现一个检索界面,其中,所述检索界面显示有m个***对象SB 1,SB 2,…,SB m,第i个***对象SB i的第j个元素层包括n(i,j)个不同的j层元素
Figure PCTCN2020111297-appb-000007
j层元素
Figure PCTCN2020111297-appb-000008
四周分布p(i,j,k)个不同的j+1层元素
Figure PCTCN2020111297-appb-000009
1≤i≤m,1≤j≤L i-1,1≤k≤n(i,j),p(i,j,k)≥0,L i为第i个***对象SB i包含的元素层总数;所述***对象的至少一层的每一个层元素均与文件关联;所述检索界面还能够接收命令输入设备所输入的用户命令,所述用户命令至少包括放大命令和获取命令;所述放大命令被执行时,用于对所述m个***对象SB 1,SB 2,…,SB m执行放大操作;所述获取命令被执行时,用于获取与层元素关联的文件,作为检索结果;进一步,所有层的层元素可以为图片元素(优选为矢量图片元素)或视频元素。
附图说明
图1是本发明检索***一实施例的示意图;
图2是本发明两个层元素形状不同的***对象在检索界面上显示时呈现的内容;
图3是本发明中下层元素均匀排列在上层元素四周的一实施例;
图4是本发明中下层元素均匀排列在上层元素四周的另一实施例。
具体实施方式
为使本发明的目的、技术方案和优点更加清楚,将结合附图对本发明作进一步地详细描述。这种描述是通过示例而非限制的方式介绍了与本发明的原理相一致的具体实施方式,这些实施方式的描述是足够详细的,以使得本领域技术人员能够实践本发明,在不脱离本发明的范围和精神的情况下可以使用其他实施方式并且可以改变和/或替换各要素的结构。因此,不应当从限制性意义上来理解以下的详细描述。
本发明公开了一种检索***,根据本发明,所述检索***可以设计成任意便于用户使用的格式,例如,一个实施方式中,该检索***可以设计为网页版本(例如web格式)的检索***,以便于用户调用该检索***;另一个实施方式中,所述检索***可以设计为插件集成在其他软件中,以便于在其他软件中调用该检索***;在本发明的又一个实施方式中,所述检索***可以设计为客户端版本的检索软件,即该检索软件和用户的移动通信终端兼容,以便用户在移动终端使用该检索软件。且本领域技术人员可以理解,所述移动通信终端可以为各种类型操作***的通信终端,例如,所述操作***可以为Windows操作***、安卓操作***或苹果操作***,所述移动通信终端可以为手机、PAD或者电脑等。
本发明公开了一种检索***,图1是本发明所述检索***一实施例的示意图。在图1中,所述检索***1包括能够接收用户命令的检索界面2和在所述检索界面2显示的m个***对象SB 1,SB 2,…,SB m。根据本发明,所述m个***对象SB 1,SB 2,…,SB m可以为不同类型的***对象,在本发明的一个实施例中,当m=5时,所述m个***对象可以包括:交通工具类***对象21、场景类***对象22、角色类***对象23、平面图形类***对象24以及立体几何图形类***对象25,且本领域技术人员可以理解,以上所举例子仅为示范性举例,不作为限定本发明权利要求保护范围的唯一示例。
根据本发明,第i个***对象SB i的第j个元素层包括n(i,j)个不同的j层元素
Figure PCTCN2020111297-appb-000010
1≤i≤m,1≤j≤L i-1,L i为第i个***对象SB i包含的元素层总数,其中,j层元素
Figure PCTCN2020111297-appb-000011
四周分布p(i,j,k)个不同的j+1层元素
Figure PCTCN2020111297-appb-000012
1≤k≤n(i,j),p(i,j,k)≥0。根据本发明,p(i,j,k)取值范围为[0,20],更优选为12。如图1所示,检索界面2显示的5个***对象分别包括了1层元素31、32、33、34、35,且1层元素33四周分布有331、332、333、334、335共计5个2层元素。
根据本发明,所有层的层元素可以为图片元素或视频元素。通过将不同元素层的层元素 以可视化的元素(例如图片、视频)进行展示,可使得用户直观根据元素显示的内容(例如形状等较明显的特性)来快速查找所需的内容。进一步,在本发明的一个实施方式中,所有层的层元素可以为正方形,此时,j层元素的正方形边长尺寸B j和j+1层元素的正方形边长尺寸B j+1满足以下关系:B j=q·B j+1,即任一个j层元素
Figure PCTCN2020111297-appb-000013
的边长为与该j层元素
Figure PCTCN2020111297-appb-000014
对应的p(i,j,k)个不同的j+1层元素
Figure PCTCN2020111297-appb-000015
中任一个j+1层元素的边长的q倍;在本发明的另一个实施方式中,所有层的层元素可以为圆形,且j层元素的圆形直径尺寸B j和j+1层元素的圆形直径尺寸B j+1满足以下关系:B j=q·B j+1,即任一个j层元素
Figure PCTCN2020111297-appb-000016
的直径尺寸为与该j层元素
Figure PCTCN2020111297-appb-000017
对应的p(i,j,k)个不同的j+1层元素
Figure PCTCN2020111297-appb-000018
中任一个j+1层元素的直径尺寸的q倍。且本领域技术人员可知,所有层的层元素还可以设置为其他形状,例如椭圆形、方形圆倒角形等以组织不同的层元素。根据本发明,q的取值范围为[3,7],优选为3,此时,通过设置上层元素和下层元素之间的边长尺寸关系,可以使得p(i,j,k)个下层元素围绕在上层元素的四周,此时用户可以一次性查看到全部的下层元素,进而提高查找效率。
根据本发明,所述检索界面在显示m个***对象SB 1,SB 2,…,SB m时,第i个***对象SB i的任一个j层元素与SB i的其他j层元素、所述其它j层元素对应的j+1层元素至L i层元素、所述任一个j层元素对应的j+1层元素至L i层元素呈现的内容无叠加,如图2所示,图2为本发明两个层元素形状不同的***对象在检索界面上显示时呈现的内容,此时,每个***对象的全部层元素均可以被无遮挡地显示出来,便于用户快速查找所需的元素。具体的,在本发明中,可按照预设的排列方式将所述p(i,j,k)个j+1层元素
Figure PCTCN2020111297-appb-000019
)排列在所述j层元素
Figure PCTCN2020111297-appb-000020
的四周,在本发明优选的实施例中,将所述p(i,j,k)个下层元素
Figure PCTCN2020111297-appb-000021
均匀排列在所述上层元素
Figure PCTCN2020111297-appb-000022
的四周,如图3和图4所示,图3为本发明中下层元素均匀排列在上层元素四周的一实施例,图4为本发明中下层元素均匀排列在上层元素四周的另一实施例,例如一个实施方式中,当j层元素
Figure PCTCN2020111297-appb-000023
为圆形时,j层元素
Figure PCTCN2020111297-appb-000024
对应的p(i,j,k)个j+1层元素
Figure PCTCN2020111297-appb-000025
为圆形,且p(i,j,k)个j+1层元素
Figure PCTCN2020111297-appb-000026
的圆心等间距分布在以j层元素
Figure PCTCN2020111297-appb-000027
圆心为圆心,半径为
Figure PCTCN2020111297-appb-000028
的圆的圆周上,此时,为了使得所有的层元素可以被完全显示,w和q满足以下关系:
Figure PCTCN2020111297-appb-000029
例如在p(i,j,k)=12的前提下,当q=3时,w=5,当q=5时,w=3,如图4所示;在另一个实施例中,当j层元素
Figure PCTCN2020111297-appb-000030
为正方形时,j层元素
Figure PCTCN2020111297-appb-000031
对应的p(i,j,k)个j+1层元素
Figure PCTCN2020111297-appb-000032
为正方形,且p(i,j,k)个j+1层元素
Figure PCTCN2020111297-appb-000033
的对称中心等间距分布在以j层元素
Figure PCTCN2020111297-appb-000034
对称中心为对称中心、边长尺寸为B j+(w-1)B j+1、一条边长和j层元素
Figure PCTCN2020111297-appb-000035
的一条边长平行的正方形的四条边上,此时,为了使得所有的层元素可以被完全显示,w和q满足以下关系:
Figure PCTCN2020111297-appb-000036
如图3所示;在p(i,j,k)=12的前提下,q和w的取值可分别为:q=3,w=5或者q=5,w=3。
根据本发明,所有层的层元素可以为任意格式的图片元素,例如gif格式、jpg格式等,进一步,所述图片优选为矢量图片,以减少所述层元素在放大时造成的图像失真。进一步,根据本发明,当放大任一层元素时,可以采用本领域中常用的放大方式来减少放大操作对图片或视频造成的失真。
根据本发明,所述m可以自定义设置,以便对该检索***1的内容进行更新。优选地,m的取值范围为[2,Fm],其中,
Figure PCTCN2020111297-appb-000037
P X为运行所述检索***的设备屏幕的横向尺寸,P Y为运行所述检索***的设备屏幕的纵向尺寸,
Figure PCTCN2020111297-appb-000038
表示2·P X和7·B 1的比值向下取整,
Figure PCTCN2020111297-appb-000039
表示2·P Y和7·B 1的比值向下取整,B 1为任意一个1层元素的正方形边长尺寸或者圆形直径尺寸。在本发明中,P X、P Y、B 1的单位相同,可以为物理尺寸,也可以为像素点个数。进一步,当采用像素点个数时,所述B 1的取值范围为[800,1800],优选为1200,以至少使得***对象中的全部1层元素可以被所述检索***清晰地显示。
具体的,在本发明中,所述
Figure PCTCN2020111297-appb-000040
Figure PCTCN2020111297-appb-000041
可自定义设置,例如,可以设置
Figure PCTCN2020111297-appb-000042
为表示交通工具的图片,
Figure PCTCN2020111297-appb-000043
为分别表示汽车、飞机、轮船等的图片。且本领域技术人员可知,不同层的层元素及层元素个数均可自定义设置,例如,当
Figure PCTCN2020111297-appb-000044
为表示交通工具的图片时,所述
Figure PCTCN2020111297-appb-000045
还可以为分别表示古代、现代、未来等的图片,通过自定义的方式来设置层元素和层元素个数,可方便地排列检索元素,进而快速查找到目标 元素。
根据本发明,所述***对象的至少一层的每一个层元素均与文件关联,一个优选的实施例中,所述***对象的全部元素层的每一个层元素均和文件关联,另一个优选的实施例中,所述***对象的最底层的每一个层元素均和文件关联。根据本发明,所述检索***1可以根据命令输入设备在所述检索界面2中输入的用户命令,对所述m个***对象SB 1,SB 2,…,SB m进行操作,以控制所述m个***对象SB 1,SB 2,…,SB m在所述检索界面2中显示的内容。在本发明中,所述用户命令至少包括放大命令和获取命令;所述放大命令被执行时,用于对所述m个***对象SB 1,SB 2,…,SB m执行放大操作;所述获取命令被执行时,用于获取与层元素关联的文件,作为检索结果,例如,对于网页版本或者客户端版本的检索***,所述获取命令被执行时(即在所述检索界面上拖拽一个层元素时),则获取该一个层元素关联的文件(例如3D格式的文件等)作为检索结果。此时,用户可以通过拖拽图片元素或视频元素的方式将与所述图片或视频对应的文件直接拖拽到其他软件(例如3DMax软件)中,便于目标场景的软件设计,提高了该检索***使用的便捷度;且本领域技术人员可知,所述用户命令还可以包括其他类型命令,以便于用户方便使用该检索***1。进一步,所述命令输入设备可以为现有技术中常用的命令输入设备,例如鼠标、触摸键盘、游戏手柄等。
通过上述内容可知,本发明通过设置包括多个元素层且不同元素层的层元素按照预设规则环绕在与其对应地上层元素四周的多个类型的***对象,构建了一个以图片、视频等可视化元素为基本检索元素的检索***,该检索***可同时显示多个子元素,使得用户可以直观地查找所需的目标对象,减少了对语言描述难度大的目标对象的查找时间。
根据本发明的一个实施例,所述检索界面2在显示所述m个***对象SB 1,SB 2,…,SB m时,如果F j≥第一阈值且放大后的j层元素
Figure PCTCN2020111297-appb-000046
位于检索界面的当前显示范围内,则显示放大后的j层元素
Figure PCTCN2020111297-appb-000047
否则不显示放大后的j层元素
Figure PCTCN2020111297-appb-000048
其中,F j=G*B j,G为检索界面的当前显示放大值,B j为j层元素
Figure PCTCN2020111297-appb-000049
的正方形边长尺寸或者圆形直径尺寸。本领域技术人员可以理解,检索界面的当前显示范围为所述检索界面当前可显示的内容的集合,在检索界面固定不变的情况下,当该检索界面中显示内容的被放大后,该检索界面可显示的内容会随之发生变化,例如一检索界面显示两个对象(此时检索界面的当前显示范围为两个对象),当用户输入放大命令放大所述两个对象到一定程度后,该检索界面显示的内容为两个对象中的任意一个(此时当前显示范围为两个对象中的任意一个)。
具体地,在本发明中,所述检索界面的当前显示放大值G的取值范围为G>0。且当G=1时,所述检索界面2按照不同层元素的原始尺寸大小进行显示,即所述检索***1被启动时 所述检索界面2显示的m个***对象相当于G=1时所述检索界面2显示的内容;当G<1时,则不同层元素按照缩小后的尺寸进行显示,此时,由于G<1,所以放大命令的操作结果为不同层元素被成比例地缩小;当G>1时,则不同层元素按照放大后的尺寸进行显示。
根据本发明,所述第一阈值的取值为B 1/q u,以使得所述m个***对象中的每一个在所述检索***1被启动时至少有(u+1)个元素层中的层元素显示在所述检索界面2中,其中,u的取值范围为[1,3],优选为2。通过采用多元素层显示方式,用户可以在熟练操作该检索***1的情况下,跨元素层选择需要的目标元素,进而提高检索效率,例如当显示3个元素层时,用户可以直接点击进而选择第3元素层上的层元素。
根据本发明,当所述检索***1接收到用户输入的放大命令时,执行以下方法:
步骤100,根据所述放大命令获取检索界面的当前显示放大值G,并根据所述当前显示放大值G计算j层元素
Figure PCTCN2020111297-appb-000050
放大后的显示尺寸F j=G*B j,1≤i≤m,1≤j≤L i,1≤k≤n(i,j)。具体地,在本发明中,所述显示放大值G可以根据所述输入设备的滚轮滚动方向和幅度、或者是触摸方向和触摸滑动幅度,按照预设的输入设备放大幅度映射表来获取。具体地,所述输入设备放大幅度映射表可以为包括输入设备类型、滑动方向、滑动幅度和显示放大值等在内的映射表;所述显示放大值G还可以为输入设备类型、滑动方向、滑动幅度的函数;其中,所述输入设备类型例如可以为鼠标、触摸键盘、游戏手柄等,滑动方向可以为和所述输入设备类型对应的预设滑动方向,例如上、下、左、右等检索***1自定义的滑动方向。且本领域技术人员可以理解,所述预设滑动方向还可以有其他多种方式,以上所举例子不作为限制本发明保护范围的唯一示例。根据本发明,所述放大命令还可以包括用户对于层元素的单击或双击指令,具体地,在发明中,可根据预设的单击或双击指令和显示放大值G的映射表来获取所述显示放大值G,其中G=f(q),例如,G=q。根据本发明,所述检索***1在接收到命令输入设备输入的放大命令时,分别获取所述m个***对象的不同层的层元素的放大后显示尺寸。
步骤200,根据所述放大命令输入前命令输入设备在所述检索界面的显示范围内的位置信息add,结合j层元素
Figure PCTCN2020111297-appb-000051
放大后的显示尺寸F j,确定所述检索界面的当前显示范围。具体的,在本发明中,所述放大命令输入前命令输入设备在所述检索界面的显示范围内的位置信息add可以采用坐标的方式来表示,且本领域技术人员可知,所述位置信息add也可以采用本领域中常用的其他方式来表示。根据本发明,可以确定所述检索界面中显示范围内与所述add距离最近的被所述检索界面显示的v个元素层的层元素H,以层元素H为中心,结合j层元素
Figure PCTCN2020111297-appb-000052
放大后的显示尺寸F j,确定所述检索界面在接收到放大命令后的当前显示范围。根据本发明, 当所述检索***1被启动时,可认为检索界面的当前显示界面为显示全部的m个***对象,且在G=1,第一阈值为B 1/q 2时,每个***对象的三个对象层中的层元素满足F j≥第一阈值且所述j层元素
Figure PCTCN2020111297-appb-000053
位于检索界面的当前显示范围的条件,因此,当所述检索***1被启动时,会显示m个***对象,且每个***对象有3个元素层中的层元素被显示。之后,所述检索***1会捕捉到命令输入设备在所述检索***中的放大前位置信息以确定放大后的检索界面显示范围,例如,当所述检索***1捕捉到命令输入设备的位置和所述检索界面2中显示的第1个***对象的第2元素层的第3个层元素
Figure PCTCN2020111297-appb-000054
位置重合,则所述检索***1以该层元素
Figure PCTCN2020111297-appb-000055
为显示中心,根据各个层元素放大后的尺寸,进而确定放大后的显示范围。
步骤300,如果F j≥第一阈值且放大后的j层元素
Figure PCTCN2020111297-appb-000056
位于检索界面的当前显示范围内,则显示放大后的j层元素
Figure PCTCN2020111297-appb-000057
否则不显示放大后的j层元素
Figure PCTCN2020111297-appb-000058
其中,F j=G*B j,G为检索界面的当前显示放大值,B j为j层元素
Figure PCTCN2020111297-appb-000059
的正方形边长尺寸或者圆形直径尺寸。根据本发明,当所述接收到的用户命令为放大命令时,可以根据所述放大命令的放大幅度、放大前所述检索界面中的内容显示范围以及放大前所述输入设备在所述检索界面中的位置信息,对放大前所述检索界面2中显示的内容进行放大,其中,可根据所述用户命令的缩放幅度和放大前内容显示范围,按照一定规则计算出放大后的新内容显示范围,结合获取的命令输入设备的位置信息,确定新内容显示范围中显示的内容。例如,可以采用类似于电子地图(例如谷歌地图等)的鼠标滚轮放大方法进行放大。
进一步,本发明还公开了一种非瞬时性计算机可读存储介质,所述非瞬时性计算机可读存储介质存储有可由计算机设备的一个或多个处理器执行的计算机程序,当所述计算机程序被所述一个或多个处理器执行时,呈现一个检索界面,其中,所述检索界面显示有m个***对象SB 1,SB 2,…,SB m,第i个***对象SB i的第j个元素层包括n(i,j)个不同的j层元素
Figure PCTCN2020111297-appb-000060
j层元素
Figure PCTCN2020111297-appb-000061
四周分布p(i,j,k)个不同的j+1层元素
Figure PCTCN2020111297-appb-000062
1≤i≤m,1≤j≤L i-1,1≤k≤n(i,j),p(i,j,k)≥0,L i为第i个***对象SB i包含的元素层总数;所述***对象的至少一层的每一个层元素均与文件关联;所述检索界面还能够接收命令输入设备所输入的用户命令,所述用户命令至少包括放大命令和获取命令;所述放大命令被执行时,用于对所述m个***对象SB 1,SB 2,…,SB m执行放大操作;所述获取命令被执行时,用于获取与层元素关联的文件,作为检索结果;进一步,所有层的层元素可以为图片元素(优选为矢量图片元素)或视频元素。具体地,根据本发明,所述***对象的至少一层的每一个 层元素均与文件关联,一个优选的实施例中,所述***对象的全部元素层的每一个层元素均和文件关联,另一个优选的实施例中,所述***对象的最底层的每一个层元素均和文件关联。根据本发明,所述检索界面在所述计算机设备的显示器的屏幕(所述计算机设备的显示器的屏幕可简称为设备屏幕)上显示。
进一步,根据本发明的一个实施例,所述
Figure PCTCN2020111297-appb-000063
Figure PCTCN2020111297-appb-000064
可自定义设置,例如,可以设置
Figure PCTCN2020111297-appb-000065
为表示交通工具的图片,
Figure PCTCN2020111297-appb-000066
为分别表示汽车、飞机、轮船等的图片。且本领域技术人员可知,不同层的层元素及层元素个数均可自定义设置,例如,当
Figure PCTCN2020111297-appb-000067
为表示交通工具的图片时,所述
Figure PCTCN2020111297-appb-000068
还可以为分别表示古代、现代、未来等的图片,通过自定义的方式来设置层元素和层元素个数,可方便地排列检索元素,进而快速查找到目标元素。
根据本发明的一个实施例,所有层的层元素为正方形,且j层元素的正方形边长尺寸B j和j+1层元素的正方形边长尺寸B j+1满足以下关系:B j=q·B j+1,其中,q的取值范围为[3,7];或者,所有层的层元素可以为圆形,且j层元素的圆形直径尺寸B j和j+1层元素的圆形直径尺寸B j+1满足以下关系:B j=q·B j+1,其中,q的取值范围为[3,7]。
根据本发明的一个实施例,所述检索界面在显示m个***对象SB 1,SB 2,…,SB m时,第i个***对象SB i的任一个j层元素与SB i的其他j层元素、所述其它j层元素对应的j+1层元素至L i层元素、所述任一个j层元素对应的j+1层元素至L i层元素呈现的内容无叠加。具体的,在本发明中,可按照预设的排列方式将所述p(i,j,k)个j+1层元素
Figure PCTCN2020111297-appb-000069
)排列在所述j层元素
Figure PCTCN2020111297-appb-000070
的四周,在本发明优选的实施例中,将所述p(i,j,k)个下层元素
Figure PCTCN2020111297-appb-000071
均匀排列在所述上层元素
Figure PCTCN2020111297-appb-000072
的四周,例如,图3为本发明中下层元素均匀排列在上层元素四周的一实施例,图4为本发明中下层元素均匀排列在上层元素四周的另一实施例,一个实施方式中,当j层元素
Figure PCTCN2020111297-appb-000073
为圆形时,j层元素
Figure PCTCN2020111297-appb-000074
对应的p(i,j,k)个j+1层元素
Figure PCTCN2020111297-appb-000075
为圆形,且p(i,j,k)个j+1层元素
Figure PCTCN2020111297-appb-000076
的圆心等间距分布在以j层元素
Figure PCTCN2020111297-appb-000077
圆心为圆心,半径为
Figure PCTCN2020111297-appb-000078
的圆的圆周上,此时,为了使得所有的层元素可以被完全显示,w和q满足以下关系:
Figure PCTCN2020111297-appb-000079
例如在p(i,j,k)=12 的前提下,当q=3时,w=5,当q=5时,w=3,如图4所示;在另一个实施例中,当j层元素
Figure PCTCN2020111297-appb-000080
为正方形时,j层元素
Figure PCTCN2020111297-appb-000081
对应的p(i,j,k)个j+1层元素
Figure PCTCN2020111297-appb-000082
为正方形,且p(i,j,k)个j+1层元素
Figure PCTCN2020111297-appb-000083
的对称中心等间距分布在以j层元素
Figure PCTCN2020111297-appb-000084
对称中心为对称中心、边长尺寸为B j+(w-1)B j+1、一条边长和j层元素
Figure PCTCN2020111297-appb-000085
的一条边长平行的正方形的四条边上,此时,为了使得所有的层元素可以被完全显示,w和q满足以下关系:
Figure PCTCN2020111297-appb-000086
根据本发明的一个实施例,m的取值范围设置为[2,Fm],其中,
Figure PCTCN2020111297-appb-000087
P X为运行所述检索***的设备屏幕的横向尺寸,P Y为运行所述检索***的设备屏幕的纵向尺寸,
Figure PCTCN2020111297-appb-000088
表示2·P X和7·B 1的比值向下取整,
Figure PCTCN2020111297-appb-000089
表示2·P Y和7·B 1的比值向下取整,B 1为任意一个1层元素的正方形边长尺寸或者圆形直径尺寸。其中,B 1的取值范围为[800个像素,1800个像素],优选为1200个像素。
根据本发明的一个实施例,所述检索界面在显示所述m个***对象SB 1,SB 2,…,SB m时,如果F j≥第一阈值且放大后的j层元素
Figure PCTCN2020111297-appb-000090
位于检索界面的当前显示范围内,则显示放大后的j层元素
Figure PCTCN2020111297-appb-000091
否则不显示放大后的j层元素
Figure PCTCN2020111297-appb-000092
其中,F j=G*B j,G为检索界面的当前显示放大值。具体地,在该实施例中,当接收到用户输入的放大命令时,执行以下方法:
步骤100,根据所述放大命令获取检索界面的当前显示放大值G,并根据所述当前显示放大值G计算j层元素
Figure PCTCN2020111297-appb-000093
放大后的显示尺寸F j=G*B j,1≤i≤m,1≤j≤L i,1≤k≤n(i,j)。
步骤200,根据所述放大命令输入前命令输入设备在所述检索界面的显示范围内的位置信息add,结合j层元素
Figure PCTCN2020111297-appb-000094
放大后的显示尺寸F j,确定所述检索界面的当前显示范围。
步骤300,如果F j≥第一阈值且放大后的j层元素
Figure PCTCN2020111297-appb-000095
位于检索界面的当前显示范围内,则显示放大后的j层元素
Figure PCTCN2020111297-appb-000096
否则不显示放大后的j层元素
Figure PCTCN2020111297-appb-000097
其中,F j=G*B j,G为检索界面的当前显示放大值,B j为j层元素
Figure PCTCN2020111297-appb-000098
的正方形边长尺寸或者圆形直径尺寸。
本发明还公开了一种计算机设备,包括:显示器、一个或多个处理器、存储器,其中,所述存储器用于存储可由所述一个或多个处理器执行的计算机可读程序,当所述计算机程序被所述一个或多个处理器执行时,在所述显示器的屏幕(所述显示器的屏幕可简称为设备屏 幕)上呈现一个检索界面,其中,所述检索界面显示有m个***对象SB 1,SB 2,…,SB m,第i个***对象SB i的第j个元素层包括n(i,j)个不同的j层元素
Figure PCTCN2020111297-appb-000099
j层元素
Figure PCTCN2020111297-appb-000100
四周分布p(i,j,k)个不同的j+1层元素
Figure PCTCN2020111297-appb-000101
1≤i≤m,1≤j≤L i-1,1≤k≤n(i,j),p(i,j,k)≥0,L i为第i个***对象SB i包含的元素层总数;所述***对象的至少一层的每一个层元素均与文件关联;所述检索界面还能够接收命令输入设备所输入的用户命令,所述用户命令至少包括放大命令和获取命令;所述放大命令被执行时,用于对所述m个***对象SB 1,SB 2,…,SB m执行放大操作;所述获取命令被执行时,用于获取与层元素关联的文件,作为检索结果;进一步,所有层的层元素可以为图片元素(优选为矢量图片元素)或视频元素。具体地,根据本发明,所述***对象的至少一层的每一个层元素均与文件关联,一个优选的实施例中,所述***对象的全部元素层的每一个层元素均和文件关联,另一个优选的实施例中,所述***对象的最底层的每一个层元素均和文件关联。
进一步,根据本发明的一个实施例,所述
Figure PCTCN2020111297-appb-000102
Figure PCTCN2020111297-appb-000103
可自定义设置,例如,可以设置
Figure PCTCN2020111297-appb-000104
为表示交通工具的图片,
Figure PCTCN2020111297-appb-000105
为分别表示汽车、飞机、轮船等的图片。且本领域技术人员可知,不同层的层元素及层元素个数均可自定义设置,例如,当
Figure PCTCN2020111297-appb-000106
为表示交通工具的图片时,所述
Figure PCTCN2020111297-appb-000107
还可以为分别表示古代、现代、未来等的图片,通过自定义的方式来设置层元素和层元素个数,可方便地排列检索元素,进而快速查找到目标元素。
根据本发明的一个实施例,所有层的层元素为正方形,且j层元素的正方形边长尺寸B j和j+1层元素的正方形边长尺寸B j+1满足以下关系:B j=q·B j+1,其中,q的取值范围为[3,7];或者,所有层的层元素可以为圆形,且j层元素的圆形直径尺寸B j和j+1层元素的圆形直径尺寸B j+1满足以下关系:B j=q·B j+1,其中,q的取值范围为[3,7]。
根据本发明的一个实施例,所述检索界面在显示m个***对象SB 1,SB 2,…,SB m时,第i个***对象SB i的任一个j层元素与SB i的其他j层元素、所述其它j层元素对应的j+1层元素至L i层元素、所述任一个j层元素对应的j+1层元素至L i层元素呈现的内容无叠加。具体的,在本发明中,可按照预设的排列方式将所述p(i,j,k)个j+1层元素
Figure PCTCN2020111297-appb-000108
)排列在所述j层元素
Figure PCTCN2020111297-appb-000109
的四周,在本发明优选的实施例中,将所述p(i,j,k)个下层元素
Figure PCTCN2020111297-appb-000110
均匀排列在所述上层元素
Figure PCTCN2020111297-appb-000111
的四周,例如,图3为本发明中下层元素均 匀排列在上层元素四周的一实施例,图4为本发明中下层元素均匀排列在上层元素四周的另一实施例,一个实施方式中,当j层元素
Figure PCTCN2020111297-appb-000112
为圆形时,j层元素
Figure PCTCN2020111297-appb-000113
对应的p(i,j,k)个j+1层元素
Figure PCTCN2020111297-appb-000114
为圆形,且p(i,j,k)个j+1层元素
Figure PCTCN2020111297-appb-000115
的圆心等间距分布在以j层元素
Figure PCTCN2020111297-appb-000116
圆心为圆心,半径为
Figure PCTCN2020111297-appb-000117
的圆的圆周上,此时,为了使得所有的层元素可以被完全显示,w和q满足以下关系:
Figure PCTCN2020111297-appb-000118
例如在p(i,j,k)=12的前提下,当q=3时,w=5,当q=5时,w=3,如图4所示;在另一个实施例中,当j层元素
Figure PCTCN2020111297-appb-000119
为正方形时,j层元素
Figure PCTCN2020111297-appb-000120
对应的p(i,j,k)个j+1层元素
Figure PCTCN2020111297-appb-000121
为正方形,且p(i,j,k)个j+1层元素
Figure PCTCN2020111297-appb-000122
的对称中心等间距分布在以j层元素
Figure PCTCN2020111297-appb-000123
对称中心为对称中心、边长尺寸为B j+(w-1)B j+1、一条边长和j层元素
Figure PCTCN2020111297-appb-000124
的一条边长平行的正方形的四条边上,此时,为了使得所有的层元素可以被完全显示,w和q满足以下关系:
Figure PCTCN2020111297-appb-000125
根据本发明的一个实施例,m的取值范围设置为[2,Fm],其中,
Figure PCTCN2020111297-appb-000126
P X为运行所述检索***的设备屏幕的横向尺寸,P Y为运行所述检索***的设备屏幕的纵向尺寸,
Figure PCTCN2020111297-appb-000127
表示2·P X和7·B 1的比值向下取整,
Figure PCTCN2020111297-appb-000128
表示2·P Y和7·B 1的比值向下取整,B 1为任意一个1层元素的正方形边长尺寸或者圆形直径尺寸。其中,B 1的取值范围为[800个像素,1800个像素],优选为1200个像素。
根据本发明的一个实施例,所述检索界面在显示所述m个***对象SB 1,SB 2,…,SB m时,如果F j≥第一阈值且放大后的j层元素
Figure PCTCN2020111297-appb-000129
位于检索界面的当前显示范围内,则显示放大后的j层元素
Figure PCTCN2020111297-appb-000130
否则不显示放大后的j层元素
Figure PCTCN2020111297-appb-000131
其中,F j=G*B j,G为检索界面的当前显示放大值。具体地,在该实施例中,当接收到用户输入的放大命令时,执行以下方法:
步骤100,根据所述放大命令获取检索界面的当前显示放大值G,并根据所述当前显示放大值G计算j层元素
Figure PCTCN2020111297-appb-000132
放大后的显示尺寸F j=G*B j,1≤i≤m,1≤j≤L i,1≤k≤n(i,j)。
步骤200,根据所述放大命令输入前命令输入设备在所述检索界面的显示范围内的位置信 息add,结合j层元素
Figure PCTCN2020111297-appb-000133
放大后的显示尺寸F j,确定所述检索界面的当前显示范围。
步骤300,如果F j≥第一阈值且放大后的j层元素
Figure PCTCN2020111297-appb-000134
位于检索界面的当前显示范围内,则显示放大后的j层元素
Figure PCTCN2020111297-appb-000135
否则不显示放大后的j层元素
Figure PCTCN2020111297-appb-000136
其中,F j=G*B j,G为检索界面的当前显示放大值,B j为j层元素
Figure PCTCN2020111297-appb-000137
的正方形边长尺寸或者圆形直径尺寸。
此外,根据公开的本发明的说明书,本发明的其他实现对于本领域的技术人员是明显的。实施方式和/或实施方式的各个方面可以单独或者以任何组合用于本发明的***和方法中。说明书和其中的示例应该是仅仅看作示例性,本发明的实际范围和精神由所附权利要求书表示。

Claims (20)

  1. 一种检索***,其特征在于,所述检索***包括能够接收命令输入设备所输入的用户命令的检索界面和在所述检索界面显示的m个***对象SB 1,SB 2,…,SB m,其中,第i个***对象SB i的第j个元素层包括n(i,j)个不同的j层元素
    Figure PCTCN2020111297-appb-100001
    j层元素
    Figure PCTCN2020111297-appb-100002
    四周分布p(i,j,k)个不同的j+1层元素
    Figure PCTCN2020111297-appb-100003
    1≤i≤m,1≤j≤L i-1,1≤k≤n(i,j),p(i,j,k)≥0,L i为第i个***对象SB i包含的元素层总数;所述***对象的至少一层的每一个层元素均与文件关联;
    所述用户命令至少包括放大命令和获取命令;所述放大命令被执行时,用于对所述m个***对象SB 1,SB 2,…,SB m执行放大操作;所述获取命令被执行时,用于获取与层元素关联的文件,作为检索结果;
    进一步,所有层的层元素可以为图片元素(优选为矢量图片元素)或视频元素。
  2. 根据权利要求1所述的检索***,其特征在于,所述检索界面在显示m个***对象SB 1,SB 2,…,SB m时,第i个***对象SB i的任一个j层元素与SB i的其他j层元素、所述其它j层元素对应的j+1层元素至L i层元素、所述任一个j层元素对应的j+1层元素至L i层元素呈现的内容无叠加。
  3. 根据权利要求2所述的检索***,其特征在于,所有层的层元素可以为正方形,且j层元素的正方形边长尺寸B j和j+1层元素的正方形边长尺寸B j+1满足以下关系:B j=q·B j+1,其中,q的取值范围为[3,7]。
  4. 根据权利要求3所述的检索***,其特征在于,p(i,j,k)个j+1层元素
    Figure PCTCN2020111297-appb-100004
    的对称中心等间距分布在以j层元素
    Figure PCTCN2020111297-appb-100005
    对称中心为对称中心、边长尺寸为B j+(w-1)B j+1、一条边长和j层元素
    Figure PCTCN2020111297-appb-100006
    的一条边长平行的正方形的四条边上,其中,w和q满足以下关系:
    Figure PCTCN2020111297-appb-100007
  5. 根据权利要求2所述的检索***,其特征在于,所有层的层元素可以为圆形,且j层元素的圆形直径尺寸B j和j+1层元素的圆形直径尺寸B j+1满足以下关系:B j=q·B j+1,其中,q的取值范围为[3,7]。
  6. 根据权利要求5所述的检索***,其特征在于,p(i,j,k)个j+1层元素
    Figure PCTCN2020111297-appb-100008
    的圆心等间距分布在以j层元素
    Figure PCTCN2020111297-appb-100009
    圆心为圆心,半径为
    Figure PCTCN2020111297-appb-100010
    的圆的圆周上,其中,w和q满足以下关系:
    Figure PCTCN2020111297-appb-100011
  7. 根据权利要求3或5所述的检索***,其特征在于,m的取值范围为[2,Fm],其中,
    Figure PCTCN2020111297-appb-100012
    P X为运行所述检索***的设备屏幕的横向尺寸,P Y为运行所述检索***的设备屏幕的纵向尺寸,
    Figure PCTCN2020111297-appb-100013
    表示2·P X和7·B 1的比值向下取整,
    Figure PCTCN2020111297-appb-100014
    表示2·P Y和7·B 1的比值向下取整,B 1为任意一个1层元素的正方形边长尺寸或者圆形直径尺寸。
  8. 根据权利要求7所述的检索***,其特征在于,B 1的取值范围为[800个像素,1800个像素],优选为1200个像素。
  9. 根据权利要求3或5所述的检索***,其特征在于,所述检索界面在显示所述m个***对象SB 1,SB 2,…,SB m时,如果F j≥第一阈值且放大后的j层元素
    Figure PCTCN2020111297-appb-100015
    位于检索界面的当前显示范围内,则显示放大后的j层元素
    Figure PCTCN2020111297-appb-100016
    否则不显示放大后的j层元素
    Figure PCTCN2020111297-appb-100017
    其中,F j=G*B j,G为检索界面的当前显示放大值。
  10. 根据权利要求9所述的检索***,其特征在于,所述第一阈值的取值为B 1/q 2
  11. 一种非瞬时性计算机可读存储介质,其特征在于,所述非瞬时性计算机可读存储介质存储有可由计算机设备的一个或多个处理器执行的计算机程序,当所述计算机程序被所述一个或多个处理器执行时,呈现一个检索界面,其中,所述检索界面显示有m个***对象SB 1,SB 2,…,SB m,第i个***对象SB i的第j个元素层包括n(i,j)个不同的j层元素
    Figure PCTCN2020111297-appb-100018
    j层元素
    Figure PCTCN2020111297-appb-100019
    四周分布p(i,j,k)个不同的j+1层元素
    Figure PCTCN2020111297-appb-100020
    1≤i≤m,1≤j≤L i-1,1≤k≤n(i,j),p(i,j,k)≥0,L i为第i个***对象SB i包含的元素层总数;所述***对象的至少一层的每一个层元素均与文件关联;
    所述检索界面还能够接收命令输入设备所输入的用户命令,所述用户命令至少包括放大命令和获取命令;所述放大命令被执行时,用于对所述m个***对象SB 1,SB 2,…,SB m执行放大操作;所述获取命令被执行时,用于获取与层元素关联的文件,作为检索结果;
    进一步,所有层的层元素可以为图片元素(优选为矢量图片元素)或视频元素。
  12. 根据权利要求11所述的非瞬时性计算机可读存储介质,其特征在于,所有层的层元素为正方形,且j层元素的正方形边长尺寸B j和j+1层元素的正方形边长尺寸B j+1满足以下关系:B j=q·B j+1,其中,q的取值范围为[3,7]。
  13. 根据权利要求11所述的非瞬时性计算机可读存储介质,其特征在于,所有层的层元素可以为圆形,且j层元素的圆形直径尺寸B j和j+1层元素的圆形直径尺寸B j+1满足以下关系:B j=q·B j+1,其中,q的取值范围为[3,7]。
  14. 根据权利要求12所述的非瞬时性计算机可读存储介质,其特征在于,p(i,j,k)个j+1层元素
    Figure PCTCN2020111297-appb-100021
    的对称中心等间距分布在以j层元素
    Figure PCTCN2020111297-appb-100022
    对称中心为对称中心、边长尺寸为B j+(w-1)B j+1、一条边长和j层元素
    Figure PCTCN2020111297-appb-100023
    的一条边长平行的正方形的四条边上,其中,w和q满足以下关系:
    Figure PCTCN2020111297-appb-100024
  15. 根据权利要求13所述的非瞬时性计算机可读存储介质,其特征在于,p(i,j,k)个j+1层元素
    Figure PCTCN2020111297-appb-100025
    的圆心等间距分布在以j层元素
    Figure PCTCN2020111297-appb-100026
    圆心为圆心,半径为
    Figure PCTCN2020111297-appb-100027
    的圆的圆周上,其中,w和q满足以下关系:
    Figure PCTCN2020111297-appb-100028
  16. 根据权利要求12或13所述的非瞬时性计算机可读存储介质,其特征在于,m的取值范围为[2,Fm],其中,
    Figure PCTCN2020111297-appb-100029
    P X为运行所述检索***的设备屏幕的横向尺寸,P Y为运行所述检索***的设备屏幕的纵向尺寸,
    Figure PCTCN2020111297-appb-100030
    表示2·P X和7·B 1的比值向下取整,
    Figure PCTCN2020111297-appb-100031
    表示2·P Y和7·B 1的比值向下取整,B 1为任意一个1层元素的正方形边长尺寸或者圆形直径尺寸。
  17. 根据权利要求12或13所述的非瞬时性计算机可读存储介质,其特征在于,所述检索界面在显示所述m个***对象SB 1,SB 2,…,SB m时,如果F j≥第一阈值且放大后的j层元素
    Figure PCTCN2020111297-appb-100032
    位于检索界面的当前显示范围内,则显示放大后的j层元素
    Figure PCTCN2020111297-appb-100033
    否则不显示放大后的j层元素
    Figure PCTCN2020111297-appb-100034
    其中,F j=G*B j,G为检索界面的当前显示放大值。
  18. 一种计算机设备,其特征在于,包括:显示器、一个或多个处理器、存储器,所述 存储器用于存储可由所述一个或多个处理器执行的计算机程序,当所述计算机程序被所述一个或多个处理器执行时,在所述显示器的屏幕上呈现一个检索界面,其中,所述检索界面显示有m个***对象SB 1,SB 2,…,SB m,第i个***对象SB i的第j个元素层包括n(i,j)个不同的j层元素
    Figure PCTCN2020111297-appb-100035
    j层元素
    Figure PCTCN2020111297-appb-100036
    四周分布p(i,j,k)个不同的j+1层元素
    Figure PCTCN2020111297-appb-100037
    1≤i≤m,1≤j≤L i-1,1≤k≤n(i,j),p(i,j,k)≥0,L i为第i个***对象SB i包含的元素层总数;所述***对象的至少一层的每一个层元素均与文件关联;
    所述检索界面还能够接收命令输入设备所输入的用户命令,所述用户命令至少包括放大命令和获取命令;所述放大命令被执行时,用于对所述m个***对象SB 1,SB 2,…,SB m执行放大操作;所述获取命令被执行时,用于获取与层元素关联的文件,作为检索结果;
    进一步,所有层的层元素可以为图片元素(优选为矢量图片元素)或视频元素。
  19. 根据权利要求18所述的计算机设备,其特征在于,所述检索界面在显示m个***对象SB 1,SB 2,…,SB m时,第i个***对象SB i的任一个j层元素与SB i的其他j层元素、所述其它j层元素对应的j+1层元素至L i层元素、所述任一个j层元素对应的j+1层元素至L i层元素呈现的内容无叠加。
  20. 根据权利要求19所述的计算机设备,其特征在于,所有层的层元素为正方形,且j层元素的正方形边长尺寸B j和j+1层元素的正方形边长尺寸B j+1满足以下关系:B j=q·B j+1,其中,q的取值范围为[3,7];或者,所有层的层元素可以为圆形,且j层元素的圆形直径尺寸B j和j+1层元素的圆形直径尺寸B j+1满足以下关系:B j=q·B j+1,其中,q的取值范围为[3,7]。
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