CN111198908A - Power grid asset graph display method and device, storage medium and terminal - Google Patents
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Abstract
The embodiment of the application discloses a display method and device of a power grid asset diagram, a storage medium and a terminal, and belongs to the field of diagram processing. The method comprises the following steps: displaying a user interface including a first zone, a second zone, and a third zone, determining an asset measure unit selected by a user in the second zone, and an asset type selected in the third zone; and displaying an commissioning chart and a decommissioning chart associated with the asset metering unit and the asset type selected by the user in the first area, so as to realize simple screening charts.
Description
Technical Field
The application relates to the field of statistical chart processing, in particular to a power grid asset chart display method, a power grid asset chart display device, a storage medium and a terminal.
Background
The power grid asset wall is used for displaying the operation condition and the retirement condition of various types of assets in a power grid, such as: and displaying the relation between the commissioning quantity and the year of the asset and the relation between the decommissioning quantity and the year of the asset, and generating a corresponding chart by a user through the screening conditions on the graphical interface, wherein the corresponding chart comprises the following steps: the screening conditions comprise asset types, measurement units, curve types and the like, when the screening conditions comprise a large number of factors, more screening actions are performed on the graphical interface by a user, and the screening operation is complex.
Disclosure of Invention
The method, the device, the storage medium and the terminal for displaying the power grid asset graph can solve the problem that the screening operation on the asset wall graph is complex in the related technology. The technical scheme is as follows:
in a first aspect, an embodiment of the present application provides a method for displaying a power grid asset graph, where the method includes:
displaying a user interface; the user interface comprises a first area, a second area and a third area, wherein the first area is used for displaying a power grid asset graph, the second area comprises a plurality of options, and each option is associated with one asset metering unit; the third region includes a plurality of options, each option associating an asset type, an commissioning graph, and a decommissioning graph;
determining the asset metering unit selected by the user in the second area and the asset type selected in the third area;
displaying an commissioning chart and a decommissioning chart associated with the user-selected asset metering unit and the asset type in the first region.
Particularly, each option included in the third area is further provided with a check box; the third area further includes a full checkbox for selecting or canceling a selection state of all options included in the third area.
In particular, the commissioning chart and the decommissioning chart associated with the same option are the same in color; the commissioning and decommissioning charts associated with different options are different in color.
In particular, the types of commissioning and decommissioning charts are line charts, the abscissa unit of which is the year and the ordinate unit is the asset measure unit.
In particular, when a click event is detected for a commissioning or decommissioning chart, determining a location of the click event on the commissioning or decommissioning chart; displaying a measure value indicated by the asset measure unit corresponding to the location.
In particular, the commissioning graph and the decommissioning graph are line graphs.
In particular, the asset measure units are quantities; wherein the method further comprises: determining a first mapping relation between the investment volume and the year according to the total quantity of the assets; determining a second mapping relation between the retirement amount and the year according to the total quantity of the assets; wherein said displaying in said first area an commissioning graph and a decommissioning graph associated with said user-selected asset metering unit and said asset type comprises: displaying a commissioning chart associated with the asset type in the first area according to the first mapping relationship; displaying a retirement chart associated with the asset rationality in the first region according to the second mapping relationship.
In a second aspect, an embodiment of the present application provides a display device for a power grid asset wall, where the display device includes:
the display unit is used for displaying the interactive interface; the interactive interface comprises a first area, a second area and a third area, wherein the first area is used for displaying a power grid asset graph; the second region includes a plurality of options, each option associated with an asset measure unit; the third region includes a plurality of options, each option associating an asset type, an commissioning graph, and a decommissioning graph;
the processing unit is used for determining the asset metering unit selected by the user in the second area and the asset type selected in the third area;
the display unit is further used for displaying an commissioning chart and a decommissioning chart associated with the asset metering unit and the asset type selected by the user in the first area.
In a third aspect, embodiments of the present application provide a computer storage medium storing a plurality of instructions adapted to be loaded by a processor and to perform the above-mentioned method steps.
In a fourth aspect, an embodiment of the present application provides a terminal, which may include: a processor and a memory; wherein the memory stores a computer program adapted to be loaded by the processor and to perform the above-mentioned method steps.
The beneficial effects brought by the technical scheme provided by some embodiments of the application at least comprise:
the asset type, the commissioning chart and the decommissioning chart have an association relationship, when a terminal detects that a user selects an asset type event in a power grid asset wall, the commissioning chart and the decommissioning chart associated with the asset type are displayed on the power grid asset wall at the same time, the problem that operation is complex due to the fact that the commissioning chart and the decommissioning chart of the asset type need to be screened respectively in the related technology is solved, the user can display the commissioning chart and the decommissioning chart of a certain asset type at the same time through one-time screening operation, and therefore the operation times of the user can be reduced.
Drawings
In order to more clearly illustrate the embodiments of the present application or the technical solutions in the prior art, the drawings used in the description of the embodiments or the prior art will be briefly described below, it is obvious that the drawings in the following description are only some embodiments of the present application, and for those skilled in the art, other drawings can be obtained according to the drawings without creative efforts.
FIG. 1 is a diagram of a user screening commissioning and decommissioning diagrams in the related art;
FIG. 2 is a schematic flow chart diagram of a method for grid asset charting provided by an embodiment of the present application;
FIG. 3 is a diagram illustrating a user screening commissioning diagram and decommissioning diagram provided by an embodiment of the present application;
FIG. 4 is a schematic diagram of the structure of an apparatus provided herein;
fig. 5 is a schematic structural diagram of a terminal provided in the present application.
Detailed Description
In order to make the objects, technical solutions and advantages of the present application more clear, embodiments of the present application will be described in further detail below with reference to the accompanying drawings.
Fig. 1 is a schematic diagram of a power grid asset wall in the related art, the power grid asset wall includes an commissioning curve display area 13 and a decommissioning curve display area 14, the commissioning curve display area 13 is used for displaying commissioning curves, the commissioning curves represent the corresponding relationship between the commissioning amount and time of a certain type of asset, and the time may be year. Retirement curve display area 14 is for retirement curves that represent the amount of retirement for a certain type of asset versus time. For example: when a user needs to display the commissioning curve and the decommissioning curve of the main transformer, the operation process of the user is as follows: when a user colludes the 'main transformer commissioning' option, the terminal detects a trigger event on the option and marks the option. When a user colludes the option of 'main transformer retired', the terminal detects a trigger event occurring on the option, and the terminal marks the option. When a user clicks the screening legend 12, the terminal detects the trigger time occurring on the screening legend 12, the terminal displays the decommissioning curve of the main transformer in the decommissioning curve display area 14 according to the pre-stored or pre-configured mapping relationship between the decommissioning amount of the main transformer and the year, and the terminal displays the commissioning curve of the main transformer in the commissioning curve display area 13 according to the pre-stored or pre-configured mapping relationship between the commissioning amount of the main transformer and the year.
According to the process, when a user screens an commissioning curve and a retirement curve of a certain type of asset, two types of curves can be obtained only by screening twice, so that the operation times of the user are increased, and the operation complexity is increased.
The method for displaying the power grid asset graph provided by the embodiment of the present application will be described in detail below with reference to fig. 2 to 3. The display device of the grid asset graph in the embodiment of the present application may be the terminal shown in fig. 4 to 5.
Referring to fig. 2, a schematic flow chart of a method for displaying a power grid asset according to an embodiment of the present application is provided. As shown in fig. 2, the method of the embodiment of the present application may include the steps of:
s201, displaying a user interface.
The user interface comprises a first area, a second area and a third area, wherein the first area displays a power grid asset graph, and the type of the power grid asset sudden change comprises but is not limited to other types of icons in a graph, a histogram, a trend graph and a pie chart. The power grid asset graph comprises a graph of a mapping relation between the commissioning amount and the time of a certain type of asset and a graph of a mapping relation between the decommissioning amount and the time of a certain type of asset. The second area is used for screening asset measurement units, and the asset measurement units comprise any one of platforms, capacity and length; the second zone includes a plurality of options, each option associated with an asset measure unit. The third area is used for screening asset types, and each asset type is simultaneously associated with an commissioning chart and a decommissioning chart; the third zone includes a plurality of options, each option associating an asset type, an commissioning graph, and a decommissioning graph simultaneously. Types of commissioning and decommissioning charts include, but are not limited to: any one of a graph, a bar graph, a trend graph, and a pie graph.
For example: referring to fig. 3, the user interface of fig. 3 includes a first region 30, a second region 31, and a third region 32, the first region 30 including an commissioning curve display region 300 and a decommissioning curve display region 301. The second area 31 includes 3 options, "per table", "per capacity", and "per length", respectively, and 3 options correspond to the asset measure units of table, capacity, and length, respectively. The third area 32 includes a number of options: the system comprises a main transformer commissioning/main transformer decommissioning, a circuit breaker commissioning/circuit breaker decommissioning, a voltage transformer commissioning/voltage transformer decommissioning, a current transformer commissioning/current transformer decommissioning, a high-voltage cabinet commissioning/high-voltage cabinet decommissioning, an open isolating switch commissioning/open isolating switch decommissioning and a distribution transformer commissioning/distribution transformer decommissioning, wherein a hooking frame 321 is arranged in front of each option, and a user indicates to select a certain option when marking in the hooking frame.
S202, determining the asset metering unit selected by the user in the second area and the asset type selected in the third area.
When the terminal detects the selection operation on a certain option, the terminal determines the asset metering unit selected by the user according to a mapping relation between the pre-stored or pre-configured option and the asset metering unit. When the terminal detects the selection operation on a certain option, the terminal determines the type of the asset selected by the user and the commissioning chart and the decommissioning chart associated with the type of the asset according to the mapping relationship between the prestored or preconfigured option and the type of the asset, the commissioning chart and the decommissioning chart. The user does not limit the operation sequence of the second area and the third area in the present application.
For example: referring to fig. 3, when the terminal detects a mouse click operation by the user for "push (set)" in the second area, the terminal determines that the asset measurement unit selected by the user is: "table (sleeve)". When the terminal detects mouse click operations of a user for 'main transformer commissioning/main transformer decommissioning', 'circuit breaker commissioning/circuit breaker decommissioning', 'high-voltage cabinet commissioning/high-voltage cabinet decommissioning', 'open disconnecting switch commissioning/open disconnecting switch', 'distribution transformer commissioning/distribution transformer decommissioning', the terminal displays a mark of 'check mark' in a check frame in front of the 5 options to indicate that the option is selected. The asset types of the 5 options obtained by the terminal are respectively as follows: the terminal determines the mapping relation between the commissioning quantity and the year and the mapping relation between the decommissioning quantity and the year of the 5 asset types.
S203, displaying an operation chart and a retirement chart associated with the asset metering unit and the asset type selected by the user in the first area.
And the terminal displays the commissioning chart and the decommissioning chart of the asset in the asset metering unit in the first area according to the asset metering unit selected by the user in the second area and the asset type selected in the third area.
In one or more possible embodiments, each option included in the third area is further provided with a checkbox; the third area further includes a full checkbox for selecting or canceling a selection state of all options included in the third area.
For example: referring to fig. 3, the third area 32 includes a full box 320, and when the full box 320 is clicked, the terminal detects a mouse click event occurring on the full box 320, the terminal displays a "√" mark in the check box of the full box 320, and then displays a "√" mark in the check boxes of all the options in the third area 32, indicating that all the options are selected. Then, when the user clicks the full checkbox 320 again, the terminal clears the "√" flag in the checkbox of the full checkbox 320, and clears the "√" flag in the checkbox of all the options in the third area 32, indicating that all the options are in a non-selected state.
In one or more possible embodiments, the commissioning and decommissioning charts associated with the same option are the same color; the commissioning and decommissioning charts associated with different options are different in color.
In one or more possible embodiments, the types of commissioning and decommissioning charts are line charts, with the abscissa of the line chart in units of years and the ordinate in units of the asset measure units.
In one or more possible embodiments, the method further comprises:
when a click event to a commissioning chart or a decommissioning chart is detected, determining the position of the click event on the commissioning chart;
displaying a measure value indicated by the asset measure unit corresponding to the location.
When the terminal detects a click event of the commissioning chart or the retired chart, the position of the click event on the chart (commissioning chart or retired chart), namely the abscissa and the ordinate of the click event are determined, the abscissa of the chart represents the metering value of a certain type of asset, and the ordinate represents time.
In one or more possible embodiments, the commissioning graph and the decommissioning graph are line graphs.
Wherein the line graph is a chart consisting of a plurality of line segments
In one or more possible embodiments, the asset measure units are quantities;
wherein the method further comprises:
determining a first mapping relation between the investment volume and the year according to the total quantity of the assets;
determining a second mapping relation between the retirement amount and the year according to the total quantity of the assets;
wherein said displaying in said first area an commissioning graph and a decommissioning graph associated with said user-selected asset metering unit and said asset type comprises:
displaying a commissioning chart associated with the asset type in the first area according to the first mapping relationship;
displaying a retirement chart associated with the asset type in the first region according to the second mapping relationship.
The terminal is pre-stored or pre-configured with a first mapping relationship and a second mapping relationship, the first mapping relationship is a mapping relationship between the commissioning amount and the year of a certain asset type, the second mapping relationship is a mapping relationship between the decommissioning amount and the year of the certain asset type, the commissioning amount and the decommissioning amount of the asset type are determined according to the total mass amount, and specific numerical values of the commissioning amount and the decommissioning amount of each year may be determined according to actual needs, which is not limited in the embodiment of the present application.
When the scheme of the embodiment of the application is executed, the asset type, the commissioning chart and the decommissioning chart have an association relation, when the terminal detects that a user selects an asset type event in the power grid asset wall, the commissioning chart and the decommissioning chart associated with the asset type are displayed on the power grid asset wall at the same time, the problem that operation is complex due to the fact that the commissioning chart and the decommissioning chart of the asset type need to be screened respectively in the related technology is solved, the user can display the commissioning chart and the decommissioning chart of a certain asset type at the same time only through one screening operation, and therefore the operation times of the user can be reduced.
The following are embodiments of the apparatus of the present application that may be used to perform embodiments of the method of the present application. For details which are not disclosed in the embodiments of the apparatus of the present application, reference is made to the embodiments of the method of the present application.
Referring to fig. 4, a schematic structural diagram of a display device of a grid asset graph according to an exemplary embodiment of the present application is shown, which is hereinafter referred to as device 4. The apparatus 4 may be implemented as all or part of a terminal by software, hardware or a combination of both. The device 4 comprises: a display unit 401 and a processing unit 402.
A display unit 401, configured to display an interactive interface; the interactive interface comprises a first area, a second area and a third area, wherein the first area is used for displaying a power grid asset wall; the second region includes a plurality of options, each option associated with an asset measure unit; the third region includes a plurality of options, each option associating an asset type, an commissioning graph, and a decommissioning graph;
a processing unit 402, configured to determine an asset measure unit selected by the user in the second area and an asset type selected in the third area;
the display unit 401 is further configured to display an commissioning chart and a decommissioning chart associated with the asset metering unit and the asset type selected by the user in the first area.
In one or more embodiments, each option included in the third area is further provided with a checkbox; the third area further includes a full checkbox for selecting or canceling a selection state of all options included in the third area.
In one or more embodiments, the commissioning and decommissioning charts associated with the same option are the same color; the commissioning and decommissioning charts associated with different options are different in color.
In one or more embodiments, the types of commissioning and decommissioning charts are line charts having units of year on the abscissa and units of the asset measure on the ordinate.
In one or more embodiments, processing unit 402 is further to: when a click event to a commissioning chart or a decommissioning chart is detected, determining the position of the click event on the commissioning chart or the decommissioning chart;
the display unit 401 is further configured to display the metering value indicated by the asset metering unit corresponding to the position.
In one or more embodiments, the commissioning graph and the decommissioning graph are line graphs.
In one or more embodiments, the asset measure units are quantities;
wherein the processing unit 402 is further configured to:
determining a first mapping relation between the investment volume and the year according to the total quantity of the assets;
determining a second mapping relation between the retirement amount and the year according to the total quantity of the assets;
wherein, the display unit 401 displays an commissioning chart and a decommissioning chart associated with the asset metering unit selected by the user and the asset type in the first area, and includes:
displaying a commissioning chart associated with the asset type in the first area according to the first mapping relationship;
displaying a retirement chart associated with the asset rationality in the first region according to the second mapping relationship.
It should be noted that, when the device 4 provided in the foregoing embodiment executes the method for displaying the grid asset graph, only the division of the above function modules is taken as an example, and in practical applications, the function distribution may be completed by different function modules according to needs, that is, the internal structure of the equipment is divided into different function modules, so as to complete all or part of the functions described above. In addition, the display device of the power grid asset graph provided by the embodiment and the display method embodiment of the power grid asset graph belong to the same concept, and details of the implementation process are shown in the method embodiment and are not described herein.
The above-mentioned serial numbers of the embodiments of the present application are merely for description and do not represent the merits of the embodiments.
An embodiment of the present application further provides a computer storage medium, where the computer storage medium may store a plurality of instructions, where the instructions are suitable for being loaded by a processor and executing the method steps in the embodiments shown in fig. 2 to fig. 3, and a specific execution process may refer to specific descriptions of the embodiments shown in fig. 2 to fig. 3, which is not described herein again.
The present application further provides a computer program product storing at least one instruction, which is loaded and executed by the processor to implement the method for displaying a grid asset graph according to the above embodiments.
Please refer to fig. 5, which provides a schematic structural diagram of a terminal according to an embodiment of the present application. As shown in fig. 5, the terminal 5 may include: at least one processor 501, at least one network interface 504, a user interface 503, memory 505, at least one communication bus 502.
Wherein a communication bus 502 is used to enable connective communication between these components.
The user interface 503 may include a Display screen (Display) and a Camera (Camera), and the optional user interface 503 may also include a standard wired interface and a wireless interface.
The network interface 504 may optionally include a standard wired interface, a wireless interface (e.g., WI-FI interface), among others.
The Memory 505 may include a Random Access Memory (RAM) or a Read-Only Memory (Read-Only Memory). Optionally, the memory 505 includes a non-transitory computer-readable medium. The memory 505 may be used to store instructions, programs, code sets, or instruction sets. The memory 505 may include a stored program area and a stored data area, wherein the stored program area may store instructions for implementing an operating system, instructions for at least one function (such as a touch function, a sound playing function, an image playing function, etc.), instructions for implementing the various method embodiments described above, and the like; the storage data area may store data and the like referred to in the above respective method embodiments. The memory 505 may alternatively be at least one memory device located remotely from the processor 501. As shown in fig. 5, the memory 505, which is a type of computer storage medium, may include therein an operating system, a network communication module, a user interface module, and an application program.
In the terminal 5 shown in fig. 5, the user interface 503 is mainly used for providing an input interface for a user to obtain data input by the user; and the processor 501 may be configured to call the application program stored in the memory 505, and specifically perform the following operations:
displaying a user interface through a display screen; the user interface comprises a first area, a second area and a third area, wherein the first area is used for displaying a power grid asset chart; the second region includes a plurality of options, each option associated with an asset measure unit; the third region includes a plurality of options, each option associating an asset type, an commissioning graph, and a decommissioning graph;
determining the asset metering unit selected by the user in the second area and the asset type selected in the third area;
displaying, via a display screen, an commissioning chart and a decommissioning chart associated with the user-selected asset metering unit and the asset type in the first region.
In one or more possible embodiments, each option included in the third area is further provided with a checkbox; the third area further includes a full checkbox for selecting or canceling a selection state of all options included in the third area.
In one or more possible embodiments, the commissioning and decommissioning charts associated with the same option are the same color; the commissioning and decommissioning charts associated with different options are different in color.
In one or more possible embodiments, the types of commissioning and decommissioning charts are line charts, with the abscissa of the line chart in units of years and the ordinate in units of the asset measure units.
In one or more possible embodiments, when a click event on an commissioning chart or a decommissioning chart is detected, determining a position of the click event on the commissioning chart or the decommissioning chart;
and displaying the metering value indicated by the asset metering unit corresponding to the position through a display screen.
In one or more possible embodiments, the commissioning graph and the decommissioning graph are line graphs.
In one or more possible embodiments, the asset measure units are quantities;
wherein the processor 501 is further configured to:
determining a first mapping relation between the investment volume and the year according to the total quantity of the assets;
determining a second mapping relation between the retirement amount and the year according to the total quantity of the assets;
wherein the processor 501 displays an commissioning chart and a decommissioning chart associated with the user-selected asset metering unit and the asset type in the first area through a display screen, including:
displaying a commissioning chart associated with the asset type in the first area according to the first mapping relation through a display screen;
and displaying a retirement chart associated with the asset rationality in the first area according to the second mapping relation through a display screen.
In the embodiment of the application, the asset type, the commissioning chart and the decommissioning chart have an association relationship, when a terminal detects that a user selects an asset type event in a power grid asset wall, the commissioning chart and the decommissioning chart associated with the asset type are displayed on the power grid asset wall at the same time, the problem that operation is complex due to the fact that the commissioning chart and the decommissioning chart of the asset type need to be screened respectively in the related technology is solved, and the user can display the commissioning chart and the decommissioning chart of a certain asset type at the same time only through one screening operation, so that the operation times of the user can be reduced.
It will be understood by those skilled in the art that all or part of the processes of the methods of the embodiments described above can be implemented by a computer program, which can be stored in a computer-readable storage medium, and when executed, can include the processes of the embodiments of the methods described above. The storage medium may be a magnetic disk, an optical disk, a read-only memory or a random access memory.
The above disclosure is only for the purpose of illustrating the preferred embodiments of the present application and is not to be construed as limiting the scope of the present application, so that the present application is not limited thereto, and all equivalent variations and modifications can be made to the present application.
Claims (10)
1. A method for displaying a grid asset graph, the method comprising:
displaying a user interface; the user interface comprises a first area, a second area and a third area, wherein the first area is used for displaying a power grid asset chart; the second region includes a plurality of options, each option associated with an asset measure unit; the third region includes a plurality of options, each option associating an asset type, an commissioning graph, and a decommissioning graph;
determining the asset metering unit selected by the user in the second area and the asset type selected in the third area;
displaying an commissioning chart and a decommissioning chart associated with the user-selected asset metering unit and the asset type in the first region.
2. The method according to claim 1, wherein each option included in the third area is further provided with a checkbox; the third area further includes a full checkbox for selecting or canceling a selection state of all options included in the third area.
3. The method of claim 1, wherein the commissioning chart and the decommissioning chart associated with the same option are the same color; the commissioning and decommissioning charts associated with different options are different in color.
4. The method of claim 1, wherein the types of commissioning and decommissioning charts are line graphs, with the abscissa of the line graphs in years and the ordinate in units of the asset measure.
5. The method of claim 4, further comprising:
when a click event to a commissioning chart or a decommissioning chart is detected, determining the position of the click event on the commissioning chart or the decommissioning chart;
displaying a measure value indicated by the asset measure unit corresponding to the location.
6. The method of claim 1, wherein the commissioning graph and the decommissioning graph are line graphs.
7. The method of claim 1, wherein the asset metric units are quantities;
wherein the method further comprises:
determining a first mapping relation between the investment volume and the year according to the total quantity of the assets;
determining a second mapping relation between the retirement amount and the year according to the total quantity of the assets;
wherein said displaying in said first area an commissioning graph and a decommissioning graph associated with said user-selected asset metering unit and said asset type comprises:
displaying a commissioning chart associated with the asset type in the first area according to the first mapping relationship;
displaying a retirement chart associated with the asset rationality in the first region according to the second mapping relationship.
8. A display device for a power grid asset wall, the device comprising:
the display unit is used for displaying the interactive interface; the interactive interface comprises a first area, a second area and a third area, wherein the first area is used for displaying a power grid asset wall; the second region includes a plurality of options, each option associated with an asset measure unit; the third region includes a plurality of options, each option associating an asset type, an commissioning graph, and a decommissioning graph;
the processing unit is used for determining the asset metering unit selected by the user in the second area and the asset type selected in the third area;
the display unit is further used for displaying an commissioning chart and a decommissioning chart associated with the asset metering unit and the asset type selected by the user in the first area.
9. A computer storage medium, characterized in that it stores a plurality of instructions adapted to be loaded by a processor and to carry out the method steps according to any one of claims 1 to 7.
10. A terminal, comprising: a processor and a memory; wherein the memory stores a computer program adapted to be loaded by the processor and to perform the method steps of any of claims 1 to 7.
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