Digital and graphical linkage display method, device, equipment and medium based on industrial Internet
Through the digital graph linkage display method based on the industrial Internet, combined with the data and process flow of industrial production equipment, linkage views are generated and display information is transformed according to user operations, which solves the problem of low efficiency of equipment-related data display in the prior art, and realizes efficient correlation and intuitive display of data.
Patent Information
- Application Number
- CN202210653556.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-06-09
- Publication Date
- 2025-06-06
- Estimated Expiration
- 2042-06-09
AI Technical Summary
In the prior art, there is a problem of low display efficiency when displaying data associated with devices, resulting in a lack of correlation and intuitiveness in data display.
Through a digital graph linkage display method based on industrial Internet, the production steps and associated operating parameter values are obtained to generate a first display view, and the continuous change information of the parameters is obtained to generate a second display view, and the two are combined into a linkage view for display. If the user clicks on any display view in the linkage view, obtains the time feature information and transforms the display information corresponding to the time feature information in the other display view.
By generating a linkage view and transforming display information according to user operations, the association between production data and device data and the linkage transformation display in the same display view are realized, which greatly improves the display efficiency of device-related data.
Smart Images

Figure CN114995313B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the field of data display technology, and in particular to a method, device, equipment and medium for digital and graphical linkage display based on the industrial Internet. Background Art
[0002] Nowadays, industrial production cannot do without equipment data collection. In order to see the various data indicators of the equipment more intuitively and conveniently during the production process, it is necessary to monitor the production equipment to obtain the corresponding parameter information. However, the function of monitoring the equipment in traditional technology is very simple, and it can only obtain the monitored equipment data for viewing. When it is necessary to view the production process data, it is necessary to retrieve the production process data independently stored in other equipment. Since the production process data and the equipment data are separated from each other, the display of related data lacks relevance and intuitiveness, resulting in low data display efficiency. Therefore, the existing technology has the problem of low display efficiency when displaying data associated with the equipment. Summary of the invention
[0003] The embodiments of the present invention provide a method, device, equipment and medium for displaying data and graphics in linkage based on the industrial Internet, aiming to solve the problem of low display efficiency in the prior art when displaying data associated with a device.
[0004] In a first aspect, an embodiment of the present invention provides a method for displaying a digital graph linkage based on the industrial Internet, which is applied in a terminal device and includes:
[0005] obtaining at least one production step;
[0006] Acquire an operation parameter value associated with each of the production steps from a database and generate a first display view, wherein the operation parameter value includes a numerical value corresponding to at least one parameter collected by a sensor from the industrial production equipment and / or status information of the industrial production equipment;
[0007] Acquire continuous change information of each parameter and generate a second display view; the continuous change information is information that the value of the parameter changes continuously over time;
[0008] Combining the first display view with the second display view to obtain a linkage view and displaying the resultant view;
[0009] If the monitored user operation information is clicking on any display view in the linkage view, obtaining the time characteristic information corresponding to the operation information;
[0010] The display information corresponding to the time feature information in another display view of the linkage view is changed and displayed according to the time feature information.
[0011] In a second aspect, an embodiment of the present invention provides a digital-graphic linkage display device based on the industrial Internet, which is configured in a terminal device and includes:
[0012] A production step acquisition unit, used to acquire at least one production step;
[0013] a first display view generating unit, configured to obtain an operation parameter value associated with each of the production steps from a database and generate a first display view, wherein the operation parameter value includes a numerical value corresponding to at least one parameter collected by a sensor from the industrial production equipment and / or status information of the industrial production equipment;
[0014] A second display view generating unit, used for acquiring continuous change information of each parameter and generating a second display view; the continuous change information is information that the value of the parameter changes continuously over time;
[0015] A view display unit, configured to combine the first display view and the second display view to obtain a linkage view and display the combined view;
[0016] A time characteristic information acquisition unit, configured to acquire time characteristic information corresponding to the operation information if the user's operation information monitored is clicking on any display view in the linkage view;
[0017] The display transformation unit is used to transform and display the display information corresponding to the time feature information in another display view of the linkage view according to the time feature information.
[0018] In the third aspect, an embodiment of the present invention further provides a computer device, which includes a memory, a processor, and a computer program stored in the memory and executable on the processor, and when the processor executes the computer program, the method for displaying digital graphics based on the industrial Internet as described in the first aspect above is implemented.
[0019] In a fourth aspect, an embodiment of the present invention further provides a computer-readable storage medium, wherein the computer-readable storage medium stores a computer program, and when the computer program is executed by a processor, the processor executes the method for displaying digital graphics based on the industrial Internet as described in the first aspect above.
[0020] The embodiment of the present invention provides a method, device, equipment and medium for linkage display of digital images based on the industrial Internet. At least one production step is obtained, and the operating parameter value associated with the generation step is obtained from the database to generate a first display view, and the continuous change information of each parameter is obtained to generate a second display view, and the first display view and the second display view are combined into a linkage view and displayed; if the user's operation information is monitored to click on any display view in the linkage view, the corresponding time feature information is obtained and the display information corresponding to the time feature information in the other display view is transformed and displayed. Through the above method, a linkage view formed by the combination of the first display view and the second display view can be generated for display, and the display information of another unoperated display view can be transformed and displayed according to the operation information input by the user. The production data and the equipment data can be associated and the display information can be linked and transformed in the same display view, which greatly improves the efficiency of displaying the data associated with the equipment. BRIEF DESCRIPTION OF THE DRAWINGS
[0021] In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the accompanying drawings required for use in the description of the embodiments will be briefly introduced below. Obviously, the accompanying drawings described below are some embodiments of the present invention. For ordinary technicians in this field, other accompanying drawings can be obtained based on these accompanying drawings without paying any creative work.
[0022] Figure 1 A schematic diagram of a flow chart of a method for displaying data and images in linkage based on the industrial Internet provided by an embodiment of the present invention;
[0023] Figure 2 A schematic diagram of an application scenario of a digital-graphic linkage display method based on the industrial Internet provided by an embodiment of the present invention;
[0024] Figure 3 A schematic diagram of the effect of the digital-graphic linkage display method based on the industrial Internet provided by an embodiment of the present invention;
[0025] Figure 4 A schematic diagram of a sub-process of a method for displaying data and images in linkage based on the industrial Internet provided by an embodiment of the present invention;
[0026] Figure 5 A schematic diagram of another sub-process of the method for displaying data and images in linkage based on the industrial Internet provided by an embodiment of the present invention;
[0027] Figure 6 A schematic diagram of another sub-process of the method for displaying data and images in linkage based on the industrial Internet provided by an embodiment of the present invention;
[0028] Figure 7A schematic diagram of another sub-process of the method for displaying data and images in linkage based on the industrial Internet provided by an embodiment of the present invention;
[0029] Figure 8 A schematic diagram of the latter sub-process of the method for displaying data and images in linkage based on the industrial Internet provided by an embodiment of the present invention;
[0030] Fig. 9 A schematic diagram of a subsequent sub-process of the method for displaying data and images in linkage based on the industrial Internet provided by an embodiment of the present invention;
[0031] Fig.10 A schematic block diagram of a digital-graphic linkage display device based on the industrial Internet provided by an embodiment of the present invention;
[0032] Fig.11 A schematic block diagram of a computer device provided in an embodiment of the present invention. DETAILED DESCRIPTION
[0033] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the described embodiments are part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.
[0034] It should be understood that when used in this specification and the appended claims, the terms "include" and "comprises" indicate the presence of described features, integers, steps, operations, elements and / or components, but do not exclude the presence or addition of one or more other features, integers, steps, operations, elements, components and / or combinations thereof.
[0035] It should also be understood that the terms used in this specification of the present invention are only for the purpose of describing specific embodiments and are not intended to limit the present invention. As used in the specification of the present invention and the appended claims, unless the context clearly indicates otherwise, the singular forms "a", "an" and "the" are intended to include plural forms.
[0036] It should be further understood that the term "and / or" used in the present description and the appended claims refers to any and all possible combinations of one or more of the associated listed items, and includes these combinations.
[0037] See also Figure 1 and Figure 2 , Figure 1 A schematic diagram of a flow chart of a method for displaying data and images in linkage based on the industrial Internet provided by an embodiment of the present invention; Figure 2A schematic diagram of an application scenario of a digital-graphic linkage display method based on the industrial Internet provided in an embodiment of the present invention; the digital-graphic linkage display method based on the industrial Internet is applied to a terminal device 2000 of a digital-graphic linkage display system 100 based on the industrial Internet, and the digital-graphic linkage display method based on the industrial Internet is executed by application software installed in the terminal device 2000. During the execution of the above method by the terminal device 2000, a network connection is established between the terminal device 2000 and the server 1000 to realize the transmission of data information, and obtain data from a database stored in the server 1000. The data in the database comes from a controller 3000 of an industrial production equipment 4000, and a sensor collects data from the industrial production equipment 4000 and outputs it to the controller through a PLC3000 (Programmable Logic Controller). Terminal device 2000 is a terminal device used to execute the digital graph linkage display method based on the industrial Internet to display various information associated with industrial production equipment. Terminal device 2000 can be a desktop computer, laptop computer, tablet computer or mobile phone that can process and display data. Server 1000 is a server end used to establish a network connection with terminal device 2000 for data transmission, which can be specifically server group 1001. Sensor 4001 is a sensing device that transmits the initial parameter information collected from the industrial production equipment to the PLC and further to the controller, such as a temperature sensor, water level sensor, flow rate sensor, etc. The controller can establish a network connection with server 1000 based on wireless network technologies such as Ethernet, 4G or 5G to wirelessly transmit data information, thereby transmitting the data obtained by the controller to the database of server 1000 for storage. Figure 1 As shown, the method includes steps S110 to S160.
[0038] S110, obtaining at least one production step.
[0039] The sensors configured on the industrial production equipment can collect the values corresponding to the various parameters of the industrial production equipment, and send the collected values to the controller as the initial parameter information. The server collects the values in the controller and stores them in the database configured in the server. The terminal device can obtain the data in the database and perform subsequent processing. Specifically, the database also stores one or more pre-set production steps, and the terminal device can obtain at least one production step from the database configured in the server.
[0040] For example, the industrial production equipment in the example of the present application is a dyeing machine used for printing and dyeing production. The server can establish a network connection with one or more dyeing machines. The server's database stores numerical values corresponding to one or more dyeing machines. The server can control the dyeing process of each dyeing machine in turn through the control information of the production steps, or send the control information of the production steps to the intelligent controller, and control the dyeing process of each dyeing machine through the intelligent controller; the sensor in the dyeing machine can monitor the dyeing machine to obtain initial parameter information, and transmit the obtained initial parameter information to the server.
[0041] In actual application, the initial parameter information corresponding to the industrial production equipment in the complete process flow can be received, and the terminal device can subsequently display the initial parameter information after the process flow is completed. Alternatively, the server can receive the initial parameter information of the sensor in the industrial production equipment in real time, and the terminal device can display the initial parameter information received in real time in combination with each production step.
[0042] Each sensor can send the collected parameter values as initial parameter information to the server. In this case, one initial parameter information only contains the value corresponding to one parameter. Alternatively, each sensor can integrate the collected initial parameter information to form initial parameter information with values corresponding to multiple parameters and send it to the server. Then one initial parameter information contains the values corresponding to multiple parameters at the same collection time.
[0043] For example, in the production process of equipment, each production step will record the values of various operating parameters in the production process, such as temperature, water level, etc., during execution, so that users can intuitively see the steps currently being executed. The collected initial parameters can be displayed in the right area in the form of a curve chart, and data can be added to the curve chart in real time based on the collected initial parameters to reflect real-time performance.
[0044] S120, acquiring an operating parameter value associated with each of the production steps from a database and generating a first display view.
[0045] An operating parameter value associated with each of the production steps is obtained from a database and a first display view is generated, wherein the operating parameter value includes a numerical value corresponding to at least one parameter collected by a sensor from the industrial production equipment and / or status information of the industrial production equipment.
[0046] A database is configured in the server, and a production step list consisting of multiple production steps and initial parameter information are stored in the database. The production step list contains multiple production steps, and the production steps contain set control information. The entire production process of the industrial production equipment can be controlled through the control information in each production step; the initial parameter information includes numerical values corresponding to multiple parameters, and the initial parameter information can intuitively reflect the equipment working status of the industrial production equipment at each time point.
[0047] The operating parameter values associated with each production step in the database can be obtained. The operating parameter values at least include the parameter values set by the control information, and the operating parameter values can also include part of the values in the initial parameter information. Figure 3 As shown, the first display view obtained is Figure 3 Middle left view.
[0048] In one embodiment, if Figure 4 As shown, step S120 includes sub-steps S121, S122 and S123.
[0049] S121, determining the operating parameters corresponding to the main function step and the parallel function step in each of the production steps; S122, obtaining the operating parameter values corresponding to the operating parameters of each of the production steps from the database.
[0050] Specifically, the production steps include a main function step and a parallel function step executed in parallel with the main function step. The operating parameters corresponding to the production steps can be determined according to the main function step and the parallel function step included in the production steps.
[0051] For example, Figure 3 As shown, the main function step in step 10 is calling for auxiliary agents, and the operating parameters of the main function step are "auxiliary agents". The parallel function step is adding water to barrel 1, and the operating parameters of the parallel function step include "barrel 1 water source", "barrel 1 water level", "barrel 1 stirring time", and "barrel 1 temperature".
[0052] The database contains numerical values corresponding to various parameters, and the operating parameter values corresponding to the operating parameters of the production step can be obtained from the database.
[0053] In one embodiment, if Figure 5 As shown, the step of obtaining the operating parameter value corresponding to the operating parameter of each production step from the database in step S120 includes sub-steps S1221, S1222 and S1223.
[0054] S1221. Determine the step time zone corresponding to each of the production steps.
[0055] The step time zone corresponding to each production step can be determined first. In the actual application process, only by starting to realize the production process control of the industrial production equipment through each production step can effective parameter information be obtained from the sensor. When the process flow of the industrial production equipment is completed (for example, all production steps in the production step list are executed), the corresponding step time zone can be determined according to the actual execution time of each production step, and the step time zone includes the start execution time and the end execution time of the production step. When the process flow of the industrial production equipment is started (for example, the first production step in the production step list at least starts to execute), the step time zone corresponding to each production step can be determined according to the preset execution time of each production step and the start execution time of the first production step. At this time, when the production step is executed, the step time zone includes the start execution time and the end execution time of the production step; when the production step starts to execute but is not executed, the step time zone includes the start execution time and the expected end execution time of the production step; when the production step has not started to execute, the step time zone includes the expected start execution time and the expected end execution time of the production step.
[0056] S1222. Determine the step time zone corresponding to each value in the database according to the collection time of the value, and obtain the value corresponding to the step time zone of each production step as the target value.
[0057] Each value in the initial parameter information corresponds to a collection time. The step time zone to which the value belongs can be determined based on the collection time. That is, it is determined whether the collection time of the value is within the step time zone of a certain production step, thereby determining the step time zone to which the value belongs, and obtaining the value contained in the step time zone of each production step as the target value.
[0058] S1223. Obtain the value corresponding to the operating parameter of the production step in the target value of each production step as the associated operating parameter value.
[0059] According to the target value of the production step, a value corresponding to the operating parameter of the production step can be obtained from the target value of each production step as the operating parameter value to be displayed.
[0060] S123. Generate a first display view including the operating parameter value corresponding to each of the production steps according to the order of the production steps and the operating parameter value of each of the production steps.
[0061] According to the order of the production steps in the database and the operation parameter values of each production step, the operation parameter values corresponding to each production step can be sorted and organized, and the corresponding first display view can be generated. Specifically, the first display view can be generated by DIV tag rendering, and the v-for instruction of Vue is used to render and generate based on an array. At the same time, the main function steps and parallel function steps of the production steps are also looped and rendered using the v-for instruction, and the icon icons are combined to identify and associate them to improve recognition. The operation parameter values in the first display view can record the detailed operation information of the steps in each production step, including the execution step noun, the start execution time (or the expected start execution time) and the end execution time (or the expected end execution time), the duration, the main function steps and the parallel function steps, and the operation parameter values corresponding to each operation parameter.
[0062] S130: Acquire continuous change information of each parameter and generate a second display view.
[0063] The continuous change information of each parameter is obtained and a second display view is generated; the continuous change information is information that the value of the parameter changes continuously over time. The database also contains parameters that have continuous changes, and the continuous change information of each parameter can be obtained from the database, and the corresponding second display view is generated according to the continuous change information.
[0064] like Figure 3 As shown, the generated second display view is as follows Figure 3 In the right view of the second display view, the second display view contains the main image, the attached image and the stacked image. The upper part of the second display view contains the parameter curve graph, which can be implemented using the canvas drawing tag. The second display view can use echarts charts for visual rendering. The continuous change information of each parameter is displayed in the form of a line graph to achieve real-time monitoring and data analysis and comparison effects. For example, the parameter curves in the main image and the attached image can be displayed based on the same timeline, and the main image, the secondary image and the stacked image can also be displayed based on the same timeline; the three device states are displayed in the form of stacked graphs, corresponding to the device running state, device alarm data, and device operation mode, respectively.
[0065] In one embodiment, if Figure 6 As shown, step S130 includes sub-steps S131, S132, S133 and S134.
[0066] S131. Obtain the value of each parameter to obtain continuous change information of each parameter.
[0067] Specifically, it can be determined whether the value of each parameter in the database changes continuously over time. If the value of the parameter changes continuously over time, all values corresponding to the parameter are obtained as corresponding continuous change information. If the value of the parameter does not change continuously over time, there is no corresponding continuous change information for the parameter, that is, there is no need to obtain the continuous change information of the parameter.
[0068] S132: Generate parameter curves corresponding to the parameters according to the continuous change information of the parameters.
[0069] A parameter curve corresponding to each parameter can be generated according to the continuous change information of each parameter. Specifically, the continuous change information of the parameter is sorted on the time axis in the plane coordinate system, and each value in the continuous change information is connected to obtain the corresponding parameter curve. Then, a parameter curve can be generated for each parameter with continuous change, and the horizontal axis (x-axis) of the parameter curve corresponds to time, and the vertical axis (y-axis) corresponds to the corresponding value.
[0070] S133: Generate a corresponding stacking diagram according to the device status parameter values pre-stored in the database.
[0071] The corresponding equipment status parameter values can be obtained from the database. The equipment status parameter values can be used to record the status of industrial production equipment at each moment. The equipment status parameter values include parameter values corresponding to equipment operating status, equipment alarm data, and equipment operation mode. The three equipment states are displayed in a stacked chart.
[0072] For example, in a specific embodiment of the present application, a segmented color changing method is used to display the stacked diagram (device operation status part: operation or alarm), and the device status color and alarm color of each segment are configured.
[0073] S134: Select at least one of the parameter curves to combine with the stacked graph to generate a second display view.
[0074] In actual application, at least one parameter curve can be selected and a corresponding second display view can be generated, and the second display view can intuitively display the continuous changes of the parameters. For example, one parameter curve can be added to the main graph, or four parameter curves can be selected and two of them can be added to the main graph and two to the sub-graph, and the parameter curve can be combined with the stacked graph to generate a second display view. The color of the line segments in each parameter curve and stacked graph in the generated second display view is different. The generated second display view uses the design idea of componentized embedded pages to realize the independent introduction of regions and the properties of mutual linkage between components, and then can be linked with the generated first display view to achieve the purpose of linkage display of production and equipment data graphs.
[0075] For example, Figure 3 As shown, in a specific embodiment of the present application, the second display view includes four parameter curves, two parameter curves corresponding to the main image, and the other two parameter curves corresponding to the attached image. Both the main image and the secondary image are implemented using a curve graph configuration, which consists of a legend, a prompt box, an x-axis, and a y-axis. The x-axis coordinate value of the secondary image can inherit the x-axis coordinate value of the main image, that is, the main image and the attached image have the same horizontal dimension in the x-axis dimension. Alternatively, the x-axis coordinate value of the secondary image and the horizontal coordinate of the stacked image both inherit the x-axis coordinate value of the main image.
[0076] In one embodiment, if Figure 7 As shown, step S130 also includes sub-steps S1301, S1302, S1303 and S1304.
[0077] S1301: If the first operation information monitored by the user is that the cursor falls into the area where the parameter curve of the second display view is located, generate a prompt box and add it to the second display view for display.
[0078] The terminal device can monitor the user's operation information. If the first operation information monitored by the user is that the cursor falls into the area where the parameter curve of the second display view is located, a corresponding prompt box can be generated and added to the second display view for display. Among them, the cursor can be a mouse cursor. Specifically, the device prompt parameter value corresponding to the parameter curve in the second display view can be obtained from the database, and a corresponding prompt box can be generated and added to the second display view. Specifically, in the initial state, the first group of values of the corresponding parameters displayed in the second display view in the database can be obtained as the device prompt parameter value, and a prompt box is generated according to the obtained device prompt parameter value and added to the second display view.
[0079] For example, in the second display view, the main graph includes the parameter curve corresponding to the parameter "nozzle temperature" and the parameter curve corresponding to the parameter "temperature rise and fall proportional valve", the sub-graph includes the parameter curve corresponding to the parameter "main cylinder water level" and the parameter curve corresponding to the parameter "bucket 1 water level", and the stacked graph includes the line segments corresponding to the two parameters "status" and "alarm". The first set of values (the values corresponding to the first acquisition time) corresponding to the six parameters of nozzle temperature, temperature rise and fall proportional valve, main cylinder water level, bucket 1 water level, status and alarm can be obtained from the database as the device prompt parameter values, and the corresponding prompt box is generated according to the device prompt parameter value and displayed in the second display view. For example, the prompt box finally displayed is as follows: Figure 3 as shown in the direction box in the upper right corner of the figure.
[0080] S1302: If the second operation information monitored by the user is that the cursor slides in the area where the parameter curve is located, generate a time mark line corresponding to the second operation information.
[0081] In a specific embodiment, the information displayed in the prompt box can also be adjusted according to the user's operation. Specifically, a corresponding time mark line can be generated according to the user's second operation information to obtain information corresponding to the user's second operation information for corresponding display. According to the user's second operation information, a time mark line corresponding to the second operation information can be generated in the sliding parameter curve, and the coordinate of the time mark line on the horizontal axis is the time information of the parameter curve.
[0082] In one embodiment, if Figure 8 As shown, step S1302 includes sub-steps S1321, S1322, S1323 and S1324.
[0083] S1321. Obtain the coordinate position of the cursor position in the second operation information relative to the upper left corner pixel of the second display view;
[0084] S1322, calculating the horizontal distance between the coordinate position and the starting position of the x-axis;
[0085] S1323, determining the logical coordinate value of the coordinate position on the x-axis corresponding to the x-axis starting position according to the horizontal spacing and the time value of the x-axis starting position;
[0086] S1324. Draw a vertical line perpendicular to the x-axis using the logical coordinate value to obtain a time mark line corresponding to the second operation information.
[0087] For example, in a specific implementation, a mouse click event can be configured and monitored in the curve graph of the second display view (the curve graph includes the main graph, the attached graph, and the stacked graph). When the user clicks any position in the curve graph, the triggering mouse click event can be monitored, and the coordinate position of the pixel in the upper left corner of the curve graph corresponding to the current mouse position can be obtained. By calculating the distance between the coordinate position corresponding to the current mouse position and the starting position of the x-axis, the time value of the starting position of the x-axis is known, and the specific time value corresponding to the current mouse position on the x-axis relative to the starting position of the x-axis can be determined, and the pixel coordinates of the current mouse position can be converted into the logical coordinate value on the x-axis. A vertical line perpendicular to the x-axis is drawn with the specific time value of the current mouse position to obtain the time mark line. The specific time value corresponding to the current mouse position can be stored in the public state information pool for use in subsequent acquisition of the values of other parameters.
[0088] At the same time, the left and right movement of the time mark line can also be controlled by the keyboard. A monitoring event can be defined globally. When the user clicks the curve to generate the time mark line, the keyboard control is allowed. If it moves to the left, the current time mark line index is reduced by one (moving left along the x-axis to the previous time point); if it moves to the right, it is increased by one (moving right along the x-axis to the next time point); at the same time, the boundary value is set, and the data range of the x-axis is not allowed to be exceeded.
[0089] S1303: Obtain from the database the value of the parameter curve included in the second display view and corresponding to the time point of the time mark line as the target device prompt parameter value.
[0090] The values of the parameter curves included in the second display view and corresponding to the time points and time mark lines can be obtained from the database as the target device prompt parameter values corresponding to the second display view and the time mark lines.
[0091] S1304: Update and display the information included in the prompt box of the second display view according to the prompt parameter value of the target device.
[0092] Since the prompt box has been generated in the second display view, the information contained in the prompt box can be updated and displayed according to the prompt parameter value of the target device, that is, the original value in the prompt box is replaced by the prompt parameter value of the target device and displayed.
[0093] In one embodiment, if Fig. 9 As shown, after step S1302, steps S1311 and S1312 are also included.
[0094] S1311. If the third operation information monitored by the user is clicking on the parameter curve in the second display view, obtain the value corresponding to the acquisition time and the time mark line from the database as the target parameter value; S1312. Fill the target parameter value into the parameter display panel in the second display view for display.
[0095] In order to display more complete numerical information in the second display view, a parameter display panel can be configured in the second display view; according to the user's click operation, the numerical value that is the same as the specific time value corresponding to the acquisition time point and the time mark line is obtained from the database as the target parameter value, and the target parameter value includes the numerical values corresponding to multiple parameters, and the obtained target parameter value can be filled into the parameter display panel, so as to realize the display of the target parameter value in the second display view. When the user's third operation information is a click operation, the numerical value corresponding to the time mark line at the user's click position can be obtained as the target parameter value.
[0096] For example, the lower right side of Figure 3 is the configured parameter display panel, which can be divided into multiple display areas. Figure 3 The corresponding display area includes "analog quantity", "digital quantity input" and "digital quantity output". Each display area can display the value corresponding to the corresponding type of parameter.
[0097] S140: Combine the first display view and the second display view to obtain a linkage view and display the resultant view.
[0098] The first display view and the second display view can be combined to obtain a linkage view and displayed. For example, in a specific embodiment of the present application, the first display view is placed on the left and the second display view is placed on the right to obtain a linkage view.
[0099] S150: If the monitored operation information of the user is clicking on any display view in the linkage view, obtain time characteristic information corresponding to the operation information.
[0100] The user's operation information may be monitored. If the user's operation information monitored is clicking the first display view or the second display view in the linkage view, the time characteristic information corresponding to the operation information may be obtained.
[0101] Specifically, when the user's operation information is to click on the curve graph of the second display view, the time mark line corresponding to the user operation information can be obtained, and the time mark line can be obtained; the changes of the time mark line can be monitored through the step recording component, and the specific time value corresponding to the time mark line can be obtained as the time feature information.
[0102] Each production step in the first display view occupies a certain step area. When the user's operation information is to click on the first display view, the production step corresponding to the area clicked by the user in the first display view can be obtained as the target production step, and the start execution time and end execution time of the target production step can be obtained as time feature information. The time feature information obtained at this time can be stored in the public status information pool.
[0103] S160: According to the time feature information, display information corresponding to the time feature information in another display view of the linkage view is changed and displayed.
[0104] The display information corresponding to the time feature information can be transformed and displayed in another display view of the linkage view according to the time feature information, so as to achieve the effect of two-way linkage of data and graphs in the linkage view.
[0105] If the time feature information is obtained from the second display view, a loop is used to determine whether each production step in the database contains a specific time value corresponding to the time mark line, so as to determine that the production step whose step time zone contains the specific time point is the target production step. The target production step is also the display information corresponding to the time feature information. The target production step is marked as highlighted in the first display view after the display is changed, such as Figure 3 In the figure, a box is added around step 12 to mark step 12 as highlighted. In addition, since the scroll bar in the first display view is at the top by default, the user may not be able to see the currently marked highlighted production step in the visible area after marking it as highlighted. Therefore, the production steps displayed in the first display view can be scrolled to scroll the currently marked highlighted production step into the visible area for display. In the specific implementation process, the native JS method can be used to obtain the corresponding placeholder height of each production step in the first display view, trigger the built-in API function scrollIntoView of the label object, pass in the corresponding dom object and placeholder height, and then the scroll distance of the scroll bar can be obtained and scrolled to the visible range of the currently marked highlighted production step.
[0106] If the time feature information is obtained from the first display view, a start time value closest to the start execution time in the time feature information and an end time value closest to the end execution time are determined in the x-axis through cyclic judgment, and a highlighted display area is determined according to the start time value and the end time value, and the highlighted display area is the display information corresponding to the time feature information. At this time, the display information corresponding to the time feature information can be transformed and displayed by: adding a background display color in the highlighted display area. And the color of the parameter curve located in the highlighted display area is highlighted.
[0107] For example, when a user clicks Figure 3 When the production step 12 of the first display view in the left area is used to control the temperature of the dyeing machine, such as the main cylinder temperature 40, the terminal device determines the production step 12 clicked by the user. Since the production step 12 is in the form of a time period (9:24:56-9:45:38) in the time dimension, the computer determines the time period of the production step 12 and compares the time period with the Figure 3 The time of the curve diagram of the second display view in the upper right area is matched to determine Figure 3 The target time period (9:24:56-9:45:38) matching the time period in the second display view in the upper right area is used as time feature information, and the display area in the curve graph falling into the target time period (9:24:56-9:45:38) is marked and displayed, such as highlighted or grayed out (such as Figure 3The grayscale part in the second display view), at this time, the user can quickly and accurately find the equipment data corresponding to the time period of the production step, that is, the equipment data displayed in grayscale in the curve chart of the second display view, including nozzle temperature, temperature rise and fall proportional valve, main cylinder water level and barrel 1 water level; in addition, when the user clicks on any position displayed in grayscale in the curve chart of the second display view, the specific values of these equipment data can also be displayed in the form of a prompt box to realize the visual linkage between production step 12 and production data.
[0108] When the user clicks Figure 3 When the user clicks any position of the curve graph of the second display view in the upper right area of the middle, the terminal device determines the coordinates of the position where the user clicks, determines the time node of the user clicking on the curve graph according to the coordinates as the time feature information, and compares the time node with the time feature information. Figure 3 The time periods of the various production steps in the first display view are matched to determine Figure 3 The step time zone containing the time node in the first display view is used as the target time period, and the current display area is jumped to the production step corresponding to the target time period or the production step corresponding to the target time period is marked and displayed (such as Figure 3 In order to realize the reverse linkage between production data and production steps. Figure 3 When the user clicks any position of the curve graph of the second display view in the upper right area, the terminal device determines the coordinates of the position clicked by the user, determines the time node of the curve graph according to the coordinates, obtains the value corresponding to the time node from the database as the target parameter value, and updates the target parameter value to Figure 3 The data is displayed in the parameter display panel in the lower right area of the image to achieve the linkage between production data and detailed numerical information.
[0109] This technical solution realizes the precise association of production data with its equipment data at the same time through two-way linkage between data and graphs. Users can view the data status of production and equipment in real time more intuitively and conveniently, and display data analysis and summary in real time, which reduces the frequency of failures, further improves product quality and equipment operation and maintenance efficiency, reduces enterprise labor and equipment costs, and truly realizes the interconnection and interoperability of production and equipment data.
[0110] In addition, the technical solution generates a time mark line based on the position where the user clicks, and requests the specific value of the time mark line from the background. On the one hand, the analog input and output, digital input and output and other information can be clearly understood. On the other hand, the step records in the left area are cyclically judged. When it is judged that the time point of the current time mark line is within the step time zone of a certain production step, the corresponding scroll bar index is found, and the display area is automatically scrolled to the corresponding production step for display. At the same time, the operating parameter value and parameter curve area corresponding to the production step are given a highlight effect. The user can intuitively and clearly view the specific production step corresponding to the current time point, so that the production information and equipment information of the production step are clearly visible, thereby improving the connectivity of the information; and by real-time monitoring of the equipment information (such as loss and temperature) and real-time display, the safety and rationality of production are guaranteed.
[0111] The technical method in the present application can be applied to the scenario of linked display of data associated with printing and dyeing production equipment, and can also be applied to the scenario of linked display of data associated with other similar production equipment.
[0112] In the method for displaying data and images in linkage based on the industrial Internet provided in an embodiment of the present invention, at least one production step is obtained, and the operating parameter value associated with the generation step is obtained from the database to generate a first display view, the continuous change information of each parameter is obtained to generate a second display view, and the first display view and the second display view are combined into a linkage view and displayed; if the user's operation information is monitored to click on any display view in the linkage view, the corresponding time feature information is obtained and the display information corresponding to the time feature information in the other display view is transformed and displayed. Through the above method, a linkage view formed by the combination of the first display view and the second display view can be generated for display, and the display information of another unoperated display view can be transformed and displayed according to the operation information input by the user, the production data and the equipment data can be associated and the display information can be linked and transformed in the same display view, which greatly improves the efficiency of displaying data associated with the equipment.
[0113] The embodiment of the present invention also provides a digital-graphic linkage display device based on the industrial Internet, which can be configured in the terminal device 2000, and is used to execute any embodiment of the digital-graphic linkage display method based on the industrial Internet. Fig.10 , Fig.10 A schematic block diagram of a digital-graphic linkage display device based on the Industrial Internet provided in an embodiment of the present invention.
[0114] like Fig.10As shown, the digital-graphic linkage display device 100 based on the industrial Internet includes a production step acquisition unit 110, a first display view generation unit 120, a second display view generation unit 130, a view display unit 140, a time feature information acquisition unit 150 and a transformation display unit 160.
[0115] The production step acquisition unit 110 is used to acquire at least one production step.
[0116] The first display view generating unit 120 is used to obtain the operating parameter value associated with each of the production steps from the database and generate a first display view, wherein the operating parameter value includes a numerical value corresponding to at least one parameter collected by a sensor from the industrial production equipment and / or status information of the industrial production equipment.
[0117] In a specific embodiment, the first display view generating unit 120 includes sub-units: an operating parameter determining unit, used to determine the operating parameters corresponding to the main function step and the parallel function step in each of the production steps; an operating parameter value acquiring unit, used to acquire the operating parameter values corresponding to the operating parameters of each of the production steps from the database; and a display view generating unit, used to generate a first display view including the operating parameter values corresponding to each of the production steps according to the sorting of the production steps and the operating parameter values of each of the production steps.
[0118] In a specific embodiment, the first display view generating unit 120 further includes subunits: a step time zone determining unit, used to determine the step time zone corresponding to each of the production steps; a target value acquiring unit, used to determine the step time zone corresponding to each value in the database according to the collection time of the value, and acquire the value corresponding to the step time zone of each of the production steps as the target value; an acquiring unit, used to acquire the value corresponding to the operating parameter of the production step in the target value of each of the production steps as the associated operating parameter value.
[0119] The second display view generating unit 130 is used to obtain continuous change information of each parameter and generate a second display view; the continuous change information is information about the continuous change of the value of the parameter over time.
[0120] In a specific embodiment, the second display view generating unit 130 includes subunits: a continuous change information acquiring unit, used to acquire the numerical value of each parameter to obtain the continuous change information of each parameter; a parameter curve generating unit, used to generate a parameter curve corresponding to each parameter according to the continuous change information of each parameter; a stacked chart generating unit, used to generate a corresponding stacked chart according to the device status parameter values pre-stored in the database; and a view generating unit, used to select at least one of the parameter curves and combine it with the stacked chart to generate a second display view.
[0121] In a specific embodiment, the second display view generating unit 130 further includes sub-units: a prompt box generating unit, which is used to generate a prompt box and add it to the second display view for display if the first operation information monitored by the user is that the cursor falls into the area where the parameter curve of the second display view is located; a time mark line generating unit, which is used to generate a time mark line corresponding to the second operation information if the second operation information monitored by the user is that the cursor slides in the area where the parameter curve is located; a target device prompt parameter value acquiring unit, which is used to acquire from the database the value of the parameter curve contained in the second display view and corresponding to the time mark line at a time point as the target device prompt parameter value; and an updating display unit, which is used to update and display the information contained in the prompt box of the second display view according to the target device prompt parameter value.
[0122] In a specific embodiment, the time marker line generation unit also includes subunits: a coordinate position acquisition unit, used to obtain the coordinate position of the cursor position in the second operation information relative to the upper left corner pixel of the second display view; a calculation unit, used to calculate the horizontal spacing between the coordinate position and the starting position of the x-axis; a logical coordinate value determination unit, used to determine the logical coordinate value corresponding to the coordinate position on the x-axis relative to the starting position of the x-axis based on the horizontal spacing and the time value of the starting position of the x-axis; a time marker line acquisition unit, used to draw a vertical line perpendicular to the x-axis with the logical coordinate value to obtain a time marker line corresponding to the second operation information.
[0123] In a specific embodiment, the second display view generating unit 130 further includes subunits: a target parameter value acquiring unit, which is used to acquire the value corresponding to the acquisition time and the time mark line from the database as the target parameter value if the third operation information of the user is clicked on the parameter curve in the second display view; and a target parameter value display unit, which is used to fill the target parameter value into the parameter display panel in the second display view for display.
[0124] The view display unit 140 is used to combine the first display view and the second display view to obtain a linkage view and display the combined view.
[0125] The time characteristic information acquisition unit 150 is used to acquire the time characteristic information corresponding to the operation information if the user's operation information monitored is clicking on any display view in the linkage view.
[0126] The display transformation unit 160 is used to transform and display the display information corresponding to the time feature information in another display view of the linkage view according to the time feature information.
[0127] The digital-graphic linkage display device based on the industrial Internet provided in the embodiment of the present invention applies the digital-graphic linkage display method based on the industrial Internet, obtains at least one production step, and obtains the operating parameter value associated with the generation step from the database to generate a first display view, obtains the continuous change information of each parameter to generate a second display view, and combines the first display view and the second display view into a linkage view and displays it; if the user's operation information is monitored to click on any display view in the linkage view, the corresponding time feature information is obtained and the display information corresponding to the time feature information in the other display view is transformed and displayed. Through the above method, a linkage view formed by the combination of the first display view and the second display view can be generated for display, and the display information of another unoperated display view can be transformed and displayed according to the operation information input by the user. The production data and the equipment data can be associated and the display information can be linked and transformed in the same display view, which greatly improves the efficiency of displaying the data associated with the equipment.
[0128] The above-mentioned digital and graphic linkage display device based on the industrial Internet can be implemented in the form of a computer program, and the computer program can be used in Fig.11 Runs on the computer device shown.
[0129] See also Fig.11 , Fig.11 1 is a schematic block diagram of a computer device provided in an embodiment of the present invention. The computer device may be a terminal device 2000 for executing a digital-graphic linkage display method based on the industrial Internet to display various information associated with industrial production equipment.
[0130] See also Fig.11 The computer device 500 includes a processor 502 , a memory and a network interface 505 connected via a system bus 501 , wherein the memory may include a storage medium 503 and an internal memory 504 .
[0131] The storage medium 503 may store an operating system 5031 and a computer program 5032. When the computer program 5032 is executed, the processor 502 may execute a digital graph linkage display method based on the industrial Internet, wherein the storage medium 503 may be a volatile storage medium or a non-volatile storage medium.
[0132] The processor 502 is used to provide computing and control capabilities to support the operation of the entire computer device 500 .
[0133] The internal memory 504 provides an environment for the operation of the computer program 5032 in the storage medium 503. When the computer program 5032 is executed by the processor 502, the processor 502 can execute a digital and graphic linkage display method based on the industrial Internet.
[0134] The network interface 505 is used for network communication, such as providing data information transmission, etc. Those skilled in the art will understand that Fig.11 The structure shown in the figure is only a block diagram of a part of the structure related to the solution of the present invention, and does not constitute a limitation on the computer device 500 to which the solution of the present invention is applied. The specific computer device 500 may include more or fewer components than those shown in the figure, or combine certain components, or have a different arrangement of components.
[0135] Among them, the processor 502 is used to run the computer program 5032 stored in the memory to implement the corresponding functions in the above-mentioned digital and graphic linkage display method based on the industrial Internet.
[0136] Those skilled in the art will understand that Fig.11 The embodiments of the computer device shown in the figure do not constitute a limitation on the specific composition of the computer device. In other embodiments, the computer device may include more or fewer components than shown in the figure, or combine certain components, or arrange the components differently. For example, in some embodiments, the computer device may only include a memory and a processor. In such embodiments, the structure and function of the memory and the processor are the same as those of the embodiment of the present invention. Fig.11 The embodiments shown are consistent and will not be described again here.
[0137] It should be understood that in the embodiment of the present invention, the processor 502 may be a central processing unit (CPU), and the processor 502 may also be other general-purpose processors, digital signal processors (DSP), application-specific integrated circuits (ASIC), field-programmable gate arrays (FPGA) or other programmable logic devices, discrete gate or transistor logic devices, discrete hardware components, etc. Among them, the general-purpose processor may be a microprocessor or the processor may also be any conventional processor, etc.
[0138] In another embodiment of the present invention, a computer-readable storage medium is provided. The computer-readable storage medium may be a volatile or non-volatile computer-readable storage medium. The computer-readable storage medium stores a computer program, wherein when the computer program is executed by a processor, the steps included in the above-mentioned industrial Internet-based digital image linkage display method are implemented.
[0139] Those skilled in the art can clearly understand that, for the convenience and simplicity of description, the specific working process of the above-described equipment, devices and units can refer to the corresponding process in the aforementioned method embodiment, and will not be repeated here. Those of ordinary skill in the art can appreciate that the units and algorithm steps of each example described in conjunction with the embodiments disclosed herein can be implemented with electronic hardware, computer software or a combination of the two. In order to clearly illustrate the interchangeability of hardware and software, the composition and steps of each example have been generally described in the above description according to the function. Whether these functions are executed in hardware or software depends on the specific application and design constraints of the technical solution. Professional and technical personnel can use different methods to implement the described functions for each specific application, but such implementation should not be considered to exceed the scope of the present invention.
[0140] In the several embodiments provided by the present invention, it should be understood that the disclosed equipment, devices and methods can be implemented in other ways. For example, the device embodiments described above are only schematic. For example, the division of the units is only a logical function division. There may be other division methods in actual implementation. Units with the same function may also be combined into one unit. For example, multiple units or components may be combined or integrated into another system, or some features may be ignored or not executed. In addition, the mutual coupling or direct coupling or communication connection shown or discussed may be an indirect coupling or communication connection through some interfaces, devices or units, or may be an electrical, mechanical or other form of connection.
[0141] The units described as separate components may or may not be physically separated, and the components shown as units may or may not be physical units, that is, they may be located in one place or distributed on multiple network units. Some or all of the units may be selected according to actual needs to achieve the purpose of the embodiments of the present invention.
[0142] In addition, each functional unit in each embodiment of the present invention may be integrated into one processing unit, or each unit may exist physically separately, or two or more units may be integrated into one unit. The above-mentioned integrated unit may be implemented in the form of hardware or in the form of software functional units.
[0143] If the integrated unit is implemented in the form of a software functional unit and sold or used as an independent product, it can be stored in a computer-readable storage medium. Based on this understanding, the technical solution of the present invention is essentially or the part that contributes to the prior art, or all or part of the technical solution can be embodied in the form of a software product, and the computer software product is stored in a computer-readable storage medium, including a number of instructions for a computer device (which can be a personal computer, a server, or a network device, etc.) to perform all or part of the steps of the method described in each embodiment of the present invention. The aforementioned computer-readable storage medium includes: various media that can store program codes, such as a USB flash drive, a mobile hard disk, a read-only memory (ROM, Read-Only Memory), a magnetic disk or an optical disk.
[0144] The above is only a specific embodiment of the present invention, but the protection scope of the present invention is not limited thereto. Any technician familiar with the technical field can easily think of various equivalent modifications or replacements within the technical scope disclosed by the present invention, and these modifications or replacements should be included in the protection scope of the present invention. Therefore, the protection scope of the present invention shall be based on the protection scope of the claims.
Claims
1. A digital and graphic linkage display method based on industrial Internet, It is characterized in that The method is applied in a terminal device, comprising: Obtaining at least one production step; Acquire an operation parameter value associated with each of the production steps from a database and generate a first display view, wherein the operation parameter value includes a numerical value corresponding to at least one parameter collected by a sensor from the industrial production equipment and / or status information of the industrial production equipment; Acquire continuous change information of each parameter and generate a second display view; the continuous change information is information that the value of the parameter changes continuously over time; Combining the first display view with the second display view to obtain a linkage view and displaying the resultant view; If the monitored user operation information is clicking on any display view in the linkage view, obtaining the time characteristic information corresponding to the operation information; According to the time feature information, display information corresponding to the time feature information in another display view of the linkage view is changed and displayed; The obtaining of continuous change information of each parameter and generating a second display view comprises: Obtain the value of each parameter to obtain the continuous change information of each parameter; Generating parameter curves corresponding to the parameters according to the continuous change information of the parameters; Generate a corresponding stacked chart according to the device status parameter values pre-stored in the database; the device status parameter values include parameter values corresponding to the device operating status, device alarm data, and device operation mode; use segmented color change to display in the stacked chart and configure the device status color and alarm color of each segment; At least one of the parameter curves is selected to be combined with the stacked graph to generate a second display view.
2. According to the method for displaying data and images based on the industrial Internet according to claim 1, It is characterized in that The step of acquiring the operation parameter value associated with each of the production steps from the database and generating a first display view comprises: Determine the operating parameters corresponding to the main function step and the parallel function step in each of the production steps; Acquire the operating parameter value corresponding to the operating parameter of each production step from the database; According to the order of the production steps and the operating parameter value of each production step, a first display view including the operating parameter value corresponding to each production step is generated.
3. According to the method for displaying data and images based on the industrial Internet according to claim 1, It is characterized in that The obtaining the operation parameter value corresponding to the operation parameter of each production step from the database includes: determining the step time zone corresponding to each production step; Determine the step time zone corresponding to each value in the database according to the collection time of the value, and obtain the value corresponding to the step time zone of each production step as the target value; A value corresponding to the operating parameter of the production step in the target value of each production step is obtained as an associated operating parameter value.
4. According to the method for displaying data and images based on the industrial Internet according to claim 1, It is characterized in that After obtaining the continuous change information of each parameter and generating the second display view, the method further includes: If the first operation information monitored by the user is that the cursor falls into the area where the parameter curve of the second display view is located, a prompt box is generated and added to the second display view for display; If the second operation information monitored by the user is that the cursor slides in the area where the parameter curve is located, a time mark line corresponding to the second operation information is generated; Acquire from the database the value of the parameter curve included in the second display view and corresponding to the time point of the time mark line as the target device prompt parameter value; The information contained in the prompt box of the second display view is updated and displayed according to the prompt parameter value of the target device.
5. According to the method for displaying data and images based on the industrial Internet according to claim 4, It is characterized in that The generating a time mark line corresponding to the second operation information includes: Obtaining a coordinate position of a cursor position in the second operation information relative to an upper left corner pixel of the second display view; Calculate the horizontal distance between the coordinate position and the starting position of the x-axis; Determine the logical coordinate value of the coordinate position on the x-axis corresponding to the starting position of the x-axis according to the horizontal spacing and the time value of the starting position of the x-axis; A vertical line perpendicular to the x-axis is drawn using the logical coordinate value to obtain a time mark line corresponding to the second operation information.
6. According to the method for displaying data and images based on the industrial Internet according to claim 4, It is characterized in that After generating the time mark line corresponding to the second operation information, the method further includes: If the third operation information monitored by the user is clicking on the parameter curve in the second display view, the value corresponding to the acquisition time and the time mark line is obtained from the database as the target parameter value; The target parameter value is filled into the parameter display panel in the second display view for display.
7. A digital and graphic linkage display device based on the industrial Internet, It is characterized in that The device is configured in a terminal device, and the device includes: A production step acquisition unit, used to acquire at least one production step; a first display view generating unit, configured to obtain an operation parameter value associated with each of the production steps from a database and generate a first display view, wherein the operation parameter value includes a numerical value corresponding to at least one parameter collected by a sensor from the industrial production equipment and / or status information of the industrial production equipment; A second display view generating unit, used for acquiring continuous change information of each parameter and generating a second display view; the continuous change information is information that the value of the parameter changes continuously over time; A view display unit, configured to combine the first display view and the second display view to obtain a linkage view and display the combined view; A time characteristic information acquisition unit, configured to acquire time characteristic information corresponding to the operation information if the user's operation information monitored is clicking on any display view in the linkage view; a display transformation unit, configured to transform and display display information corresponding to the time feature information in another display view of the linkage view according to the time feature information; The obtaining of continuous change information of each parameter and generating a second display view comprises: Obtain the value of each parameter to obtain the continuous change information of each parameter; Generating parameter curves corresponding to the parameters according to the continuous change information of the parameters; Generate a corresponding stacked chart according to the device status parameter values pre-stored in the database; the device status parameter values include parameter values corresponding to the device operating status, device alarm data, and device operation mode; use segmented color change to display in the stacked chart and configure the device status color and alarm color of each segment; At least one of the parameter curves is selected to be combined with the stacked graph to generate a second display view.
8. A computer device comprising a memory, a processor and a computer program stored in the memory and executable on the processor, It is characterized in that When the processor executes the computer program, the method for displaying data and graphics linked to the industrial Internet as described in any one of claims 1 to 6 is implemented.
9. A computer-readable storage medium, It is characterized in that The computer-readable storage medium stores a computer program, and when the computer program is executed by a processor, the method for displaying digital graphics based on the industrial Internet as described in any one of claims 1 to 6 is implemented.
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