A dimming glass control method, system, terminal and medium
By displaying a pattern input interface on the human-computer interaction interface, users can draw diverse patterns on the dimming glass, solving the problem of the existing dimming glass having a single pattern and realizing flexible pattern changes and dynamic display.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-12-02
- Publication Date
- 2026-03-20
AI Technical Summary
Existing dimming glass can only display a specific pattern after being powered on, and the pattern cannot be changed and is limited to a single design.
By displaying a pattern input interface on the human-computer interaction interface, users can click or touch the sub-pattern control to draw the desired pattern, and display the pattern by controlling the pattern area on the conductive layer of the dimming glass, supporting diversified pattern control.
It enables diverse display of dimming glass patterns, supports flexible pattern changes and dynamic effects, and improves control efficiency and pattern diversity.
Smart Images

Figure CN115963965B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the field of light-adjustable glass, in particular to a light-adjustable glass control method, system, terminal and medium. BACKGROUND
[0002] Light-adjustable glass is a new type of special photoelectric glass product with a sandwich structure formed by integrating a light-adjustable film into the middle of two layers of glass and then integrating them into one after high-temperature and high-pressure gluing. Light-adjustable glass can realize the switching between transparent and opaque states of the glass by various means such as electric control, temperature control, light control and pressure control. Due to various conditions, the light-adjustable glass that has realized mass production on the market is almost electrically controlled.
[0003] The principle of electrically controlled light-adjustable glass is that when powered on, the electrode polarization crystal particles inside the light-adjustable film will be arranged in a certain direction, and light can pass through, at which time the light-adjustable film is in a transparent state. After power-off, the electrode polarization crystal particles inside the light-adjustable film will be randomly distributed in the light-adjustable film due to Brownian motion, so that light cannot pass through, making the light-adjustable film present an opaque state.
[0004] Currently, a specific pattern can be specified on the light-adjustable film, and the manufacturing method includes first manufacturing a specific electrode pattern on the conductive layer of the light-adjustable film, and then coating liquid crystal / polymer mixed material, which can present a specific pattern after being powered on.
[0005] For the related technology in the above, under the current preparation method, the light-adjustable glass can only display a specific pattern after being powered on, which cannot be changed and the pattern is single. SUMMARY
[0006] In a first aspect, in order to diversify the patterns displayed by the light-adjustable glass, the present application provides a light-adjustable glass control method.
[0007] The light-adjustable glass control method provided by the present application adopts the following technical solution:
[0008] A light-adjustable glass control method for controlling the display of patterns by light-adjustable glass, wherein the conductive layer of the light-adjustable film of the light-adjustable glass includes a plurality of pattern areas, and the method comprises:
[0009] obtaining a generation instruction;
[0010] obtaining light-adjustable film information of the light-adjustable glass according to the generation instruction, wherein the light-adjustable film information includes a quantity value of the pattern areas on the light-adjustable film, position parameters of each pattern area, and a layout of the plurality of pattern areas;
[0011] generating a pattern input interface on a human-computer interaction interface according to the light-adjustable film information of the light-adjustable glass, and generating sub-pattern controls corresponding to each pattern area on the pattern input interface;
[0012] Obtaining a triggering instruction of the sub-pattern control, and generating a setting pattern control on the human-computer interaction interface;
[0013] Obtaining a triggering instruction of the setting pattern control, and controlling the light-adjusting glass to display a corresponding first target pattern.
[0014] By using the above technical solution, the number of pattern areas, the position parameters of each pattern area and the layout of the plurality of pattern areas on the light-adjusting film are read, so that a pattern input interface is displayed on the human-computer interaction interface of the remote client. The user can draw a required setting pattern by clicking or touching the sub-pattern control on the pattern input interface. After clicking the setting pattern control, the light-adjusting glass after being powered on can display the first target pattern required by the user, so that the pattern displayed on the light-adjusting glass can be changed and diversified.
[0015] Preferably, the method for obtaining a triggering instruction of the sub-pattern control and generating a setting pattern control on the human-computer interaction interface comprises:
[0016] Obtaining a triggering instruction of the sub-pattern control;
[0017] According to the triggering instruction of the sub-pattern control, the triggered sub-pattern control is classified into a setting pattern group, and a confirmation control is generated on the human-computer interaction interface;
[0018] Obtaining a triggering instruction of the confirmation control, and generating a setting pattern control on the human-computer interaction interface.
[0019] By using the above technical solution, the system can classify the triggered sub-pattern control into a setting pattern group, and generate a confirmation control on the pattern input interface. After confirmation, the setting pattern is generated, so that the user can modify at any time, and the occurrence of incorrect selection of the sub-pattern control is reduced.
[0020] Preferably, after the step of classifying the triggered sub-pattern control into a setting pattern group according to the triggering instruction of the sub-pattern control, the method further comprises:
[0021] Obtaining a grouping instruction;
[0022] According to the grouping instruction, the pattern areas of the light-adjusting film corresponding to the setting pattern group are grouped, and a plurality of display pattern group controls are generated;
[0023] Obtaining a triggering instruction of the display pattern group control, and controlling the grouped pattern areas of the light-adjusting film.
[0024] By using the above technical solution, each part of the pattern displayed on the light-adjusting glass can be controlled in groups, so that the pattern displayed on the light-adjusting glass is more flexible and more diversified, thereby improving the control efficiency of the light-adjusting glass.
[0025] Preferably, the trigger instruction of the confirmation control comprises:
[0026] generating a storage control according to the trigger instruction of the confirmation control;
[0027] establishing a pattern database and storing the set pattern in the pattern database according to the trigger instruction of the storage control;
[0028] generating a sorting control on the human-computer interaction interface according to the pattern database;
[0029] obtaining the trigger instruction of the sorting control, sorting the set pattern in the pattern database and generating a pattern sequence control on the human-computer interaction interface;
[0030] obtaining the trigger instruction of the pattern sequence control, and controlling the switchable glass to display the corresponding first target pattern in sequence.
[0031] By adopting the above technical solution, the system can store the set pattern input by the user, sort the set pattern in the pattern database, and display the set pattern of the pattern sequence in sequence when displaying the pattern, so that the switchable glass displays a specific dynamic effect, such as a clock animation.
[0032] Preferably, after the step of generating a pattern input interface on the human-computer interaction interface according to the switchable film information of the switchable glass, the method further comprises:
[0033] generating a simple input interface on the human-computer interaction interface according to the pattern input interface;
[0034] generating a simple pattern on the simple input interface according to the trigger instruction of the simple input interface;
[0035] obtaining the feature information of the simple pattern, the feature information comprising the outline, shape and size of the pattern, and dividing each component pattern of the simple pattern into a simple boundary area and a simple content area;
[0036] dividing the simple content area into a plurality of simple content sub-patterns according to the layout of the plurality of pattern areas on the switchable film;
[0037] obtaining a plurality of simple boundary sub-patterns according to the layout of the plurality of pattern areas on the switchable film and the simple boundary area;
[0038] generating a simple set pattern control according to the simple content sub-patterns and the simple boundary sub-patterns of the simple pattern;
[0039] obtaining the trigger instruction of the simple set pattern control, and controlling the switchable glass to display the corresponding second target pattern.
[0040] By adopting the technical scheme, the system can convert the simple pattern drawn by the user into a simple setting pattern that can be displayed by the light-adjusting film, so as to display the corresponding second target pattern, thereby improving the control efficiency of the light-adjusting film.
[0041] Preferably, the method further comprises:
[0042] obtaining a popular pattern generation instruction;
[0043] obtaining a popular pattern and light-adjusting film information according to the popular pattern generation instruction;
[0044] obtaining feature information of each popular pattern according to the popular pattern, the feature information including the contour, shape and size of the pattern, and determining whether there is a contained pattern in each constituent pattern of the popular pattern;
[0045] if not, generating a pattern display area according to the light-adjusting film information;
[0046] scaling the popular pattern according to the pattern display area and generating a scaled pattern, and dividing each constituent pattern of the scaled pattern into a boundary area and a content area;
[0047] dividing the content area into a plurality of content sub-patterns according to the layout of the plurality of pattern areas on the light-adjusting film;
[0048] obtaining a plurality of boundary sub-patterns according to the layout of the plurality of pattern areas on the light-adjusting film and the boundary area;
[0049] displaying a corresponding popular pattern control on the human-computer interaction interface according to the plurality of content sub-patterns and the boundary sub-patterns of each popular pattern;
[0050] controlling the light-adjusting glass to display a target popular pattern according to a trigger instruction of the popular pattern control.
[0051] By adopting the technical scheme, when the user wants to display a target popular pattern on the light-adjusting glass, the user can click the popular pattern generation button, the system obtains the feature information of the popular pattern, first determines whether there is a contained pattern in the popular pattern, if not, generates a pattern display area according to the light-adjusting film information, and scales the popular pattern to generate a scaled pattern to adapt to the size of the light-adjusting film, and divides each constituent pattern into a boundary area and a content area, then displays a popular pattern control corresponding to each popular pattern on the interface of the control end, the user can select the required popular pattern control, the system finds the pattern area corresponding to the content sub-pattern and the boundary sub-pattern on the light-adjusting film to display the popular pattern, thereby improving the control efficiency of the light-adjusting film and the display diversity of the light-adjusting film.
[0052] Preferably, after the step of determining whether there is a contained pattern in each constituent pattern of the popular pattern, the method comprises:
[0053] If yes, it is judged whether the adjacent containing patterns intersect;
[0054] If no, the popular patterns are scaled according to the pattern display area to generate scaled patterns, and each component pattern of the scaled patterns is cut into a boundary area and a content area, and the containing pattern is cut into a containing boundary area and a containing content area;
[0055] According to the layout of the multiple pattern areas on the dimming film, the content area is cut into multiple content sub-patterns, and the containing content area is cut into multiple containing content sub-patterns according to the layout of the multiple pattern areas on the dimming film;
[0056] According to the layout of the multiple pattern areas on the dimming film and the boundary area, multiple boundary sub-patterns are obtained, and according to the layout of the multiple pattern areas on the dimming film and the containing boundary area, multiple containing boundary sub-patterns are obtained;
[0057] According to the boundary sub-pattern, the content sub-pattern, the containing content sub-pattern and the containing boundary sub-pattern, a popular containing pattern control is generated on the human-computer interaction interface;
[0058] A trigger instruction of the popular containing pattern control is obtained, and the dimming glass displays the target popular containing pattern.
[0059] By adopting the above technical scheme, the system can control the containing pattern in the popular pattern to display different transparency from the popular pattern, thereby presenting a complex pattern, and further making the patterns on the dimming glass more diverse.
[0060] In a second aspect, in order to make the patterns displayed by the dimming glass more diverse, the present application provides a control system of a dimming glass, which adopts the following technical scheme:
[0061] A control system of a dimming glass includes:
[0062] An instruction acquisition module is configured to acquire a generation instruction;
[0063] An information acquisition module is configured to acquire dimming film information of the dimming glass according to the generation instruction, wherein the dimming film information includes a quantity value of pattern areas on the dimming film, a position parameter of each pattern area, and a layout of the multiple pattern areas;
[0064] A pattern input interface generation module is configured to generate a pattern input interface on a human-computer interaction interface according to the dimming film information of the dimming glass, and generate a sub-pattern control corresponding to each pattern area on the pattern input interface;
[0065] A set pattern generation module is configured to acquire a trigger instruction of the sub-pattern control, and generate a set pattern control on the human-computer interaction interface;
[0066] The first target pattern generation module is configured to acquire a trigger instruction of the setting pattern control, and control the light-adjustable glass to display a corresponding first target pattern.
[0067] By reading the number of pattern areas, the position parameters of each pattern area, and the layout of the plurality of pattern areas on the light-adjustable film, the pattern input interface is displayed on the human-computer interaction interface of the remote client, the user can click or touch the sub-pattern control on the pattern input interface to draw the required setting pattern, and the light-adjustable glass displays the first target pattern required by the user after being powered on after the setting pattern control is clicked, so that the pattern displayed by the light-adjustable glass can be changed and diversified.
[0068] In a third aspect, the present application provides an intelligent terminal, which adopts the technical scheme as follows:
[0069] The intelligent terminal comprises a memory and a processor, and the memory stores a computer program capable of being loaded and executed by the processor to perform the control method of the light-adjustable glass.
[0070] By reading the number of pattern areas, the position parameters of each pattern area, and the layout of the plurality of pattern areas on the light-adjustable film by the processor, the pattern input interface is displayed on the human-computer interaction interface of the remote client by the processor, and the light-adjustable glass displays the first target pattern required by the user after being powered on by the processor, so that the pattern displayed by the light-adjustable glass can be changed and diversified.
[0071] In a fourth aspect, the present application provides a computer readable storage medium, which adopts the technical scheme as follows:
[0072] The computer readable storage medium stores a computer program capable of being loaded and executed by the processor to perform the control method of the light-adjustable glass.
[0073] By reading the number of pattern areas, the position parameters of each pattern area, and the layout of the plurality of pattern areas on the light-adjustable film, the pattern input interface is displayed on the human-computer interaction interface of the remote client, the user can click or touch the sub-pattern control on the pattern input interface to draw the required setting pattern, and the light-adjustable glass displays the first target pattern required by the user after being powered on after the setting pattern control is clicked, so that the pattern displayed by the light-adjustable glass can be changed and diversified.
[0074] In summary, the present application has at least one of the following beneficial technical effects:
[0075] 1. By reading the number value of the pattern area on the dimming film, the position parameter of each pattern area and the layout of the plurality of pattern areas, the pattern input interface is displayed on the human-computer interaction interface of the remote client, the user can click or touch the sub-pattern control on the pattern input interface to draw the required setting pattern, and click the setting pattern control to make the dimming glass display the first target pattern required by the user after being powered on, so that the pattern displayed by the dimming glass can be changed and diversified.
[0076] 2. The system can classify the triggered sub-pattern control into a setting pattern group, and generate a confirmation control on the pattern input interface, and generate a setting pattern after confirmation, so as to modify at any time and reduce the occurrence of wrong selection of sub-pattern control.
[0077] 3. The system can store the setting pattern input by the user, and can sort the setting pattern in the pattern database, and can display the setting pattern of the pattern sequence in turn when displaying the pattern, so that the dimming glass displays a specific dynamic effect. BRIEF DESCRIPTION OF DRAWINGS
[0078] Figure 1 is a partial structure diagram of the prior art dimming glass, mainly showing the dimming film and the pattern area.
[0079] Figure 2 is a method flowchart of a dimming glass control method of an embodiment of the present application, mainly showing steps S100-S400.
[0080] Figure 3 is a method flowchart of a dimming glass control method of an embodiment of the present application, mainly showing steps S310-S380.
[0081] Figure 4 is a method flowchart of a dimming glass control method of an embodiment of the present application, mainly showing steps S500-S560.
[0082] Figure 5 is a method flowchart of a dimming glass control method of an embodiment of the present application, mainly showing steps S610-S630.
[0083] Figure 6 is a method flowchart of a dimming glass control method of an embodiment of the present application, mainly showing steps S710-S730.
[0084] Figure 7 is a method flowchart of a dimming glass control method of an embodiment of the present application, mainly showing steps SA1-SA6.
[0085] Figure 8is a method flowchart of a control method of a dimming glass according to an embodiment of the present application, mainly showing steps SB1-SB6.
[0086] Label explanation: 1, dimming film; 2, pattern area. DETAILED DESCRIPTION
[0087] The present application will be further described in detail below in combination with all the drawings.
[0088] The acquisition of the instruction can be acquired by a mechanical key triggering mode or a virtual key triggering mode. In the mechanical key triggering mode, the current behavior information can be acquired by pressing the power-on key after starting up or by pressing the corresponding trigger key again after starting up. In the virtual key triggering mode, the current behavior information can be acquired by pressing the relevant virtual trigger key in the interface of the corresponding software.
[0089] The pattern is composed of multiple component patterns, and the component pattern is a single outline pattern.
[0090] Reference Figure 1 The dimming glass controlled by the method includes a dimming film. The conductive layer of the dimming film is laser-etched with multiple pattern areas. Each pattern area is connected with a corresponding independent electrode. Each independent electrode can be powered on to control the transparency or non-transparency of each pattern area.
[0091] The present application discloses a control method of a dimming glass. Reference Figure 2 The control method of the dimming glass specifically includes the following steps.
[0092] Step S100: acquiring a generation instruction.
[0093] Specifically, the user triggers the preset virtual key on the human-computer interface by means of mouse clicking or touching to trigger the generation instruction.
[0094] Step S200: acquiring dimming film information of the dimming glass according to the generation instruction. The dimming film information includes a quantity value of the pattern areas on the dimming film, position parameters of each pattern area, and a layout of multiple pattern areas.
[0095] Specifically, after laser etching of the conductive layer of the dimming film and installation of the independent electrode for each pattern area, the data for manufacturing the dimming film is stored in the data storage library. The data for manufacturing the dimming film can be read from the data storage library to obtain the quantity value of the pattern areas on the dimming film, the position parameters of each pattern area, and the layout of multiple pattern areas. The corresponding independent electrode of each pattern area can also be obtained from the data storage library or by trial and error.
[0096] Step S300: generating a pattern input interface on the human-computer interaction interface according to the dimming film information of the dimming glass, and generating sub-pattern controls corresponding to each pattern area on the pattern input interface.
[0097] Specifically, the pattern input interface is displayed on the human-computer interaction interface of the control end in a same proportion according to the size of the dimming film, and the sub-pattern controls that can be triggered are displayed on the pattern input interface in a same proportion with the pattern areas, the position of each sub-pattern control and the layout of the sub-pattern controls correspond to the pattern areas on the dimming film.
[0098] Referring to Figure 3 Step S310: obtaining a trigger instruction of the sub-pattern control.
[0099] Specifically, the user triggers the virtual button by means of mouse clicking or touching to trigger the sub-pattern control, and the sub-pattern control is lighted to enable the user to know whether the sub-pattern control is triggered.
[0100] Step S320: dividing the triggered sub-pattern controls into a set pattern group according to the trigger instruction of the sub-pattern control, and generating a confirmation control on the human-computer interaction interface.
[0101] Specifically, the system records the triggered sub-pattern controls and divides them into the set pattern group, during which the user can click the sub-pattern control again to cancel, and the confirmation control is generated on one side of the pattern input interface when the user clicks the sub-pattern control for the first time.
[0102] Step S330: obtaining a trigger instruction of the confirmation control, and generating a set pattern control on the human-computer interaction interface.
[0103] Specifically, the user can trigger the confirmation control by means of mouse clicking or touching, and the human-computer interaction interface generates the set pattern control, and the set pattern control has a thumbnail generated according to the pattern of the current set pattern group, to facilitate the user to identify.
[0104] Step S340: generating a storage control according to the trigger instruction of the confirmation control.
[0105] Step S350: establishing a pattern database and storing the set pattern into the pattern database according to the trigger instruction of the storage control.
[0106] Specifically, the user can trigger the confirmation control by means of mouse clicking or touching, and the human-computer interaction interface generates the storage control, and after the user triggers the storage control, the system establishes the pattern database and records the set pattern group corresponding to the set pattern.
[0107] Step S360: generating a sorting control on the human-computer interaction interface according to the pattern database.
[0108] Step S370: Obtain the triggering instruction of the sorting control, sort the set patterns in the pattern database, and generate a pattern sequence control on the human-computer interaction interface.
[0109] Step S380: Obtain the triggering instruction of the pattern sequence control, control the dimming glass to display the corresponding first target pattern in sequence.
[0110] Specifically, the sorting control is generated on the human-computer interaction interface through the pattern database. The user clicks the sorting control to generate a sorting interface. The user can sort the display order of the set patterns in the pattern database on the sorting interface, and control the display time of each pattern. Finally, the user can click to confirm to generate a pattern sequence control. The user can control the dimming glass to display the first target pattern corresponding to the set pattern in sequence according to the set time and order by clicking the pattern sequence control, so that the dimming glass can display dynamic patterns or real-time dynamic clocks.
[0111] Step S400: Obtain the triggering instruction of the set pattern control, control the dimming glass to display the corresponding first target pattern.
[0112] Specifically, the user can trigger the desired set pattern control by means of mouse clicking or touching. The system controls each pattern area corresponding to the independent electrode of the set pattern group, thereby controlling the transparency or non-transparency of the corresponding pattern area. The pattern areas not corresponding to the set pattern group are opposite, thereby displaying the corresponding first target pattern. The first target pattern can be transparent or non-transparent.
[0113] In addition to inputting the desired pattern through the pattern input interface, the desired pattern can also be inputted through another way. The specific method includes:
[0114] Referring to Figure 4 Step S500: Generate a simple input interface on the human-computer interaction interface according to the pattern input interface.
[0115] Step S510: Generate a simple pattern on the simple input interface according to the triggering instruction of the simple input interface.
[0116] Step S520: Obtain the feature information of the simple pattern, including the contour, shape and size of the pattern, and divide each component pattern of the simple pattern into a simple boundary area and a simple content area.
[0117] Specifically, a simple input interface of the same size is displayed beside the pattern input interface, and the user can randomly scribble on the simple input interface. The line thickness during drawing is greater than the size of the sub-pattern control corresponding to the two pattern areas. After drawing is completed, the user clicks to confirm and record the simple pattern of the current simple input interface. The system identifies the outline, shape and size of the simple pattern. The simple pattern can be composed of multiple component patterns. The system divides each component pattern into a simple boundary area and a simple content area. The simple boundary area is the part of the component pattern that is not covered by the corresponding entire pattern area and its adjacent connected corresponding pattern area. The simple content area is the other part of the component pattern excluding the simple boundary area.
[0118] Step S530: According to the layout of the multiple pattern areas on the dimming film, the simple content area is divided into multiple simple content sub-patterns;
[0119] Step S540: According to the layout of the multiple pattern areas on the dimming film and the simple boundary area, multiple simple boundary sub-patterns are obtained.
[0120] Specifically, the user divides the simple content area into multiple simple content sub-patterns according to the layout of the multiple pattern areas on the dimming film. Each simple content sub-pattern corresponds to a pattern area on the dimming film. The system establishes a sub-pattern coordinate system according to the simple input interface, with the origin as the starting point and the center point of each sub-pattern as an integer coordinate point. The integer coordinate point closest to the edge line of the boundary area away from the content area is found, and the sub-pattern corresponding to the integer coordinate point is selected as the simple boundary sub-pattern of the simple boundary area.
[0121] Step S550: A simple setting pattern control is generated according to the simple content sub-patterns and the simple boundary sub-patterns of the simple pattern;
[0122] Step S560: A trigger instruction of the simple setting pattern control is obtained, and the dimming glass is controlled to display the corresponding second target pattern.
[0123] Specifically, a simple setting pattern control is generated on the human-computer interaction interface through the simple content sub-patterns and the simple boundary sub-patterns of the simple pattern. Before the simple setting pattern control is generated, the simple setting pattern can be displayed on the pattern input interface through multiple sub-pattern controls. The user can modify it through the pattern input interface. After modification is confirmed, the simple setting pattern control is generated. The thumbnail of the simple setting pattern is displayed on the simple setting pattern control. After the user triggers the simple setting pattern control, the system controls the dimming glass to display the second target pattern corresponding to the simple setting pattern.
[0124] Reference Figure 5 Step S610: A grouping instruction is obtained;
[0125] Step S620: grouping the pattern areas of the light control film corresponding to the set pattern group according to the grouping instruction and generating a plurality of display pattern group controls;
[0126] Step S630: controlling the grouped pattern areas of the light control film according to the trigger instruction of the display pattern group control.
[0127] Specifically, the user triggers the preset virtual key on the human-computer interface by mouse clicking or touching to trigger the grouping instruction, and the system can group the pattern areas of the light control film corresponding to the set pattern group according to the user's instruction, and generate a plurality of display pattern group controls after clicking the set pattern control. The plurality of display pattern group controls can control the energization time and sequence of the pattern areas of the light control film corresponding to each display pattern group, so that the plurality of display pattern groups can be displayed in turn according to the setting when the light control glass is displayed, so that the single pattern display is more aesthetic, and the pattern display on the light control glass is more diverse, thereby improving the control efficiency of the light control glass.
[0128] Referring to Figure 6 , the method further comprises:
[0129] Step S710: obtaining a popular pattern generation instruction;
[0130] Specifically, the user triggers the preset virtual key on the human-computer interface by mouse clicking or touching to trigger the popular pattern generation instruction.
[0131] Step S720: obtaining a popular pattern and light control film information according to the popular pattern generation instruction.
[0132] Specifically, the popular pattern can be obtained by networking, and the light control film information in the data storage library can be read.
[0133] Step S730: obtaining feature information of each popular pattern according to the popular pattern, the feature information including the outline, shape and size of the pattern, and determining whether there is a contained pattern in each constituent pattern of each popular pattern.
[0134] Specifically, the system scans and reads the outline, shape and size of the popular pattern, and determines whether there is a contained pattern in the constituent pattern of the popular pattern. The contained pattern refers to the pattern in the constituent pattern that is different from the color of the constituent pattern.
[0135] Referring to Figure 7 , step SA1: if no, generating a pattern display area according to the light control film information;
[0136] Specifically, the pattern display area is obtained by the size of the light control film, the size, number value, position parameter of each pattern area and the layout of the plurality of pattern areas on the light control film. The pattern display area is composed of the part of the light control film engraved with the pattern area.
[0137] Step SA2: scale the popular pattern according to the pattern display area and generate a scaled pattern, and cut each component pattern of the scaled pattern into a boundary area and a content area;
[0138] Specifically, the popular pattern display area is obtained through the feature information of the popular pattern, and the popular pattern display area is composed of the outlines of each component pattern of the outermost popular pattern. The popular pattern display area is compared with the pattern display area. When comparing, the pattern formed by the part of the light control film engraved with the pattern area can be enlarged or reduced. If the pattern display area after enlargement or reduction can contain the popular pattern display area, and the boundary of the pattern display area after enlargement or reduction is tangent to or coincides with the outline of each component pattern of the outermost popular pattern, then the popular pattern display area is reduced or enlarged by the same ratio, so as to obtain a scaled pattern. Each component pattern of the scaled pattern is judged. If each component pattern is larger than the size of two pattern areas, each component pattern of the scaled pattern is cut into a boundary area and a content area.
[0139] Step SA3: according to the layout of the multiple pattern areas on the light control film, the content area is cut into multiple content sub-patterns;
[0140] Step SA4: according to the layout of the multiple pattern areas on the light control film and the boundary area, multiple boundary sub-patterns are obtained;
[0141] Specifically, the multiple content sub-patterns and the multiple boundary sub-patterns can be obtained according to the method steps of the simple content sub-pattern and the simple boundary sub-pattern.
[0142] Step SA5: according to the multiple content sub-patterns and the boundary sub-patterns of each popular pattern, the corresponding popular pattern control is displayed on the human-computer interaction interface;
[0143] Step SA6: according to the trigger instruction of the popular pattern control, the target popular pattern is displayed on the light control glass.
[0144] Specifically, the popular pattern control is generated on the human-computer interaction interface through the multiple content sub-patterns and the boundary sub-patterns of the popular pattern. Before the popular pattern control is generated, the popular pattern can be displayed through multiple sub-pattern controls on the pattern input interface. The user can modify it through the pattern input interface. After the modification is confirmed, the popular pattern control is generated. The thumbnail of the popular pattern is displayed on the popular pattern control. After the user triggers the popular pattern control, the system will control the light control glass to display the target popular pattern corresponding to the target popular pattern.
[0145] Reference Figure 8 Step SB1: if yes, it is judged whether the adjacent containing patterns intersect.
[0146] Specifically, it is judged whether each two adjacent contained patterns in a single component pattern exist intersecting or overlapping parts.
[0147] Step SB2: If no, the popular pattern is scaled according to the pattern display area to generate a scaled pattern, and each component pattern of the scaled pattern is cut into a boundary area and a content area by removing the contained pattern part, and the contained pattern is cut into a contained boundary area and a contained content area.
[0148] Specifically, if there are intersecting or overlapping parts, the popular pattern does not meet the display standard of the dimming film, and if there are no intersecting or overlapping parts, the scaled pattern is obtained in the same way, and each component pattern of the scaled pattern is cut into a boundary area and a content area by removing the contained pattern part, and the contained pattern of the scaled pattern is cut into a contained boundary area and a contained content area.
[0149] Step SB3: According to the layout of the multiple pattern areas on the dimming film, the content area is cut into multiple content sub-patterns, and according to the layout of the multiple pattern areas on the dimming film, the contained content area is cut into multiple contained content sub-patterns.
[0150] Step SB4: According to the layout of the multiple pattern areas on the dimming film and the boundary area, multiple boundary sub-patterns are obtained, and according to the layout of the multiple pattern areas on the dimming film and the contained boundary area, multiple contained boundary sub-patterns are obtained.
[0151] Step SB5: According to the boundary sub-pattern, the content sub-pattern, the contained content sub-pattern and the contained boundary sub-pattern, a popular contained pattern control is generated on the human-computer interaction interface.
[0152] Step SB6: A trigger instruction of the popular contained pattern control is obtained, and the dimming glass is controlled to display a target popular contained pattern.
[0153] Specifically, the multiple content sub-patterns, the multiple boundary sub-patterns, the content sub-pattern and the contained boundary sub-pattern can be obtained according to the method steps of the simple content sub-pattern and the simple boundary sub-pattern, the popular contained pattern control can be obtained according to the method steps of the popular pattern control, and when the dimming glass is controlled to display, the contained pattern and the popular pattern excluding the contained pattern part display different transparencies.
[0154] A dimming glass control system comprises:
[0155] An instruction obtaining module is configured to obtain a generation instruction.
[0156] An information obtaining module is configured to obtain dimming film information of the dimming glass according to the generation instruction, wherein the dimming film information comprises a quantity value of pattern areas on the dimming film, a position parameter of each pattern area and a layout of the multiple pattern areas.
[0157] The pattern input interface generation module is configured to generate a pattern input interface on the human-computer interaction interface according to the dimming film information of the dimming glass, and generate sub-pattern controls corresponding to each pattern area on the pattern input interface.
[0158] The setting pattern generation module is configured to acquire a triggering instruction of the sub-pattern control, and generate a setting pattern control on the human-computer interaction interface.
[0159] The first target pattern generation module is configured to acquire a triggering instruction of the setting pattern control, and control the dimming glass to display a corresponding first target pattern.
[0160] The embodiment also provides an intelligent terminal, which comprises a memory and a processor. The processor can be a central processing component such as a CPU or an MPU, or a host system constructed with a CPU or an MPU as a core. The memory can be a storage device such as a RAM, a ROM, an EPROM, an EEPROM, a FLASH, a magnetic disk, an optical disk, etc. The memory stores a computer program capable of being loaded by the processor and executing the control method and system of the dimming glass.
[0161] The embodiment also provides a computer readable storage medium, which can be various media capable of storing program codes such as a U disk, a mobile hard disk, a read-only memory (ROM), a random access memory (RAM), a magnetic disk or an optical disk. The computer readable storage medium stores a computer program capable of being loaded by the processor and executing the control method and system of the dimming glass.
[0162] The embodiment of the control method, system, terminal and medium of the dimming glass is as follows: the number of pattern areas, the position parameters of each pattern area and the layout of the plurality of pattern areas on the dimming film are read to display a pattern input interface on a human-computer interaction interface of a remote client. A user can draw a required setting pattern by clicking or touching a sub-pattern control on the pattern input interface. The dimming glass displays a first target pattern required by the user after the setting pattern control is clicked, so that the pattern displayed by the dimming glass can be changed and diversified.
[0163] The above are preferred embodiments of the present application, and do not limit the protection scope of the present application. Any equivalent changes made according to the structure, shape and principle of the present application should be covered within the protection scope of the present application.
Claims
1. A method for controlling a dimming glass, the method being used to control the display of a pattern on the dimming glass, wherein the conductive layer of the dimming film of the dimming glass includes a plurality of pattern areas, characterized in that: Obtain the generation instructions; The dimming film information of the dimming glass is obtained according to the generation instruction. The dimming film information includes the number of pattern areas on the dimming film, the position parameters of each pattern area, and the layout of multiple pattern areas. Based on the dimming film information of the dimming glass, a pattern input interface is generated in the human-computer interaction interface, and sub-pattern controls corresponding to each pattern area are generated in the pattern input interface. Obtain the trigger command of the sub-pattern control and generate the set pattern control in the human-computer interaction interface; Obtain the trigger command of the set pattern control, and control the dimming glass to display the corresponding first target pattern. The method for obtaining the trigger command of the sub-pattern control and generating the set pattern control in the human-computer interaction interface includes: Get the trigger command of the child pattern control; Based on the triggering instructions of the sub-pattern controls, the triggered sub-pattern controls are divided into set pattern groups, and a confirmation control is generated on the human-computer interaction interface; Obtain the trigger command for the confirmation control and generate the set pattern control in the human-computer interaction interface. The step of obtaining the trigger command for the confirmation control, after generating the set pattern control in the human-computer interaction interface, includes: Generate a storage control based on the trigger command of the confirmation control; Based on the trigger command of the storage control, a pattern database is established and the set pattern is stored in the pattern database; A sorting control is generated on the human-computer interaction interface based on the pattern database: Obtain the trigger command of the sorting control, sort the set patterns in the pattern database, and generate a pattern sequence control in the human-computer interaction interface; Obtain the trigger command of the pattern sequence control and control the dimming glass to display the corresponding first target pattern in sequence.
2. The method for controlling dimming glass according to claim 1, characterized in that: After the step of classifying the triggered sub-pattern controls into set pattern groups based on the triggering instructions of the sub-pattern controls, the method further includes: Get grouping instructions; Based on the grouping instructions, the pattern areas of the dimming film corresponding to the set pattern group are grouped and multiple display pattern group controls are generated; The trigger command of the display pattern group control is used to group and control the pattern area of the dimming film after grouping.
3. The method for controlling dimming glass according to claim 1, characterized in that: After the step of generating a pattern input interface based on the dimming film information of the dimming glass in the human-computer interaction interface, the method further includes: A simplified input interface is generated based on the pattern input interface in the human-computer interaction interface; Based on the trigger command of the simplified input interface, a simplified pattern is generated on the simplified input interface; Obtain the feature information of the simple pattern, including the outline, shape and size of the pattern, and divide the various component patterns of the simple pattern into a simple boundary area and a simple content area; Based on the layout of multiple pattern areas on the dimming film, the simple content area is divided into multiple simple content sub-patterns; Multiple simple boundary sub-patterns are obtained based on the layout of multiple pattern areas and simple boundary areas on the dimming film; Generate a simple setting pattern control based on the simple content sub-patterns and simple boundary sub-patterns of the simple pattern; Obtain the trigger command of the simple pattern setting control and control the dimming glass to display the corresponding second target pattern.
4. The method for controlling dimming glass according to claim 1, characterized in that: The method further includes: Get popular pattern generation instructions; Based on the popular pattern generation instructions, obtain the popular pattern and dimming film information; Based on the popular patterns, obtain the feature information of each popular pattern, including the outline, shape and size of the pattern, and determine whether each of the constituent patterns of each popular pattern contains another pattern. If not, generate a pattern display area based on the dimming film information; Based on the pattern display area, popular patterns are scaled up and scaled to generate scaled patterns, and the individual patterns of the scaled patterns are divided into boundary areas and content areas; Based on the layout of multiple pattern areas on the dimming film, the content area is divided into multiple content sub-patterns; Multiple boundary sub-patterns are obtained based on the layout of multiple pattern areas and boundary areas on the dimming film; Based on the multiple content sub-patterns and boundary sub-patterns of each popular pattern, the corresponding popular pattern control is displayed on the human-computer interaction interface; The target popular pattern is displayed on the dimming glass based on the trigger command of the popular pattern control.
5. The method for controlling dimming glass according to claim 4, characterized in that: After determining whether each component pattern of a popular pattern contains a pattern, the following steps are included: If so, then determine whether adjacent containing patterns intersect; If not, scale the popular pattern according to the pattern display area and generate a scaled pattern. Then, divide each component pattern of the scaled pattern into a boundary area and a content area, excluding the part containing the pattern. Divide the containing pattern into a boundary area and a content area. Based on the layout of multiple pattern areas on the dimming film, the content area is divided into multiple content sub-patterns, and based on the layout of multiple pattern areas on the dimming film, the content area is divided into multiple content sub-patterns. Multiple boundary sub-patterns are obtained based on the layout of multiple pattern areas and the boundary area on the dimming film; multiple boundary sub-patterns are obtained based on the layout of multiple pattern areas and the boundary area on the dimming film. Generate popular pattern controls in the human-computer interaction interface based on boundary sub-patterns, content sub-patterns, content-containing sub-patterns, and boundary-containing sub-patterns. Obtain the trigger command for the popular pattern control and control the dimming glass to display the target popular pattern.
6. A control system for a dimming glass, the system implementing the control method for the dimming glass as described in any one of claims 1 to 5, characterized in that: The instruction acquisition module is used to acquire the generation instructions; The information acquisition module is used to acquire dimming film information of dimming glass according to the generation instruction. The dimming film information includes the number of pattern areas on the dimming film, the position parameters of each pattern area, and the layout of multiple pattern areas. The pattern input interface generation module is used to generate a pattern input interface on the human-computer interaction interface based on the dimming film information of the dimming glass, and to generate sub-pattern controls corresponding to each pattern area on the pattern input interface. It is also used to obtain the triggering instructions of the sub-pattern controls. Based on the triggering instructions of the sub-pattern controls, the triggered sub-pattern controls are divided into set pattern groups, and a confirmation control is generated on the human-computer interaction interface; Obtain the trigger command for the confirmation control and generate the set pattern control in the human-computer interaction interface. It is also used to generate storage controls based on the trigger instructions of the confirmation control; Based on the trigger command of the storage control, a pattern database is established and the set pattern is stored in the pattern database; A sorting control is generated on the human-computer interaction interface based on the pattern database: Obtain the trigger command of the sorting control, sort the set patterns in the pattern database, and generate a pattern sequence control in the human-computer interaction interface; Obtain the trigger command of the pattern sequence control and control the dimming glass to display the corresponding first target pattern in sequence; The pattern generation module is used to obtain the trigger command of the sub-pattern control and generate the pattern control in the human-computer interaction interface; The first target pattern generation module is used to obtain the trigger command of the set pattern control and control the dimming glass to display the corresponding first target pattern.
7. A smart terminal, characterized in that, It includes a memory and a processor, wherein the memory stores a computer program that can be loaded by the processor and executed as described in any one of claims 1 to 5 for controlling a dimming glass.
8. A computer-readable storage medium, characterized in that, The computer program is stored and can be loaded by a processor and executed as described in any one of claims 1 to 5.
Citation Information
Patent Citations
Intelligent lighting pattern control method, control equipment and system
CN109661088A
Dimming film, dimming film control circuit and dimming glass
CN204462593U