Photovoltaic power station information processing method, device and platform and storage medium
By displaying map and panoramic information in the photovoltaic power station information processing system and allowing users to click on the device logo to view the location, the problem of difficulty for operation and maintenance personnel to quickly find the photovoltaic power station equipment is solved, and the precise positioning of the equipment and the rapid handling of faults is achieved.
Patent Information
- Application Number
- CN202311714584.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2023-12-13
- Publication Date
- 2025-06-13
AI Technical Summary
In daily maintenance, it is difficult for operation and maintenance personnel to quickly find the corresponding equipment of the photovoltaic power station, resulting in an increase in fault search and processing time.
In response to the trigger operation of the monitoring control, a first interface containing the photovoltaic power station map control is displayed, and in response to the trigger operation of the photovoltaic power station map control is displayed, the icons of the photovoltaic power stations in each area are displayed in the second interface. In response to the click operation of the photovoltaic power station icon, the target area is determined and panoramic information is obtained, the panoramic information of the target photovoltaic power station is displayed, and the device identifier is clicked in the panoramic information to display its location information.
It realizes accurate positioning of photovoltaic power plant equipment, reduces fault positioning time, and can send prompt information in a timely manner when a fault occurs, so as to facilitate users to quickly investigate and deal with it.
Smart Images

Figure CN120144031A_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of information processing technologies, and in particular, to a method, device, platform, and storage medium for processing photovoltaic power station information. Background Art
[0002] A photovoltaic power station refers to a facility that utilizes solar energy. Photovoltaic power generation is a technology that directly converts light energy into electrical energy using the photovoltaic effect at the semiconductor interface.
[0003] For the purpose of the target, photovoltaic equipment covers a wide area. Affected by geographical environmental factors, some photovoltaic power stations are relatively scattered. The same photovoltaic power station may be divided into multiple regions. During daily maintenance, operation and maintenance personnel need to go to the site to check the equipment status.
[0004] However, the distances between multiple regions of the same power station are far apart, and due to the diverse terrain, it is very difficult for operation and maintenance personnel to quickly find the corresponding photovoltaic equipment during daily maintenance, which increases the time for fault finding and handling. Summary of the Invention
[0005] This application provides a method, device, platform, and storage medium for processing photovoltaic power station information to solve the problem that it is very difficult for operation and maintenance personnel to quickly find the corresponding photovoltaic equipment during daily maintenance.
[0006] In a first aspect, this application provides a method for processing photovoltaic power station information, including:
[0007] In response to a trigger operation on a monitoring control, display a first interface including a photovoltaic power station map control;
[0008] In response to a trigger operation on the photovoltaic power station map control, display photovoltaic power station icons corresponding to each regional photovoltaic power station in a second interface;
[0009] In response to a click operation on a photovoltaic power station icon, determine a corresponding target area, obtain panoramic information of the target photovoltaic power station corresponding to the target area, and display the panoramic information of the target photovoltaic power station in a third interface;
[0010] In response to a click operation on an equipment identifier in the panoramic information, display the location information of the corresponding equipment.
[0011] Optionally, the determining the corresponding target area includes:
[0012] Obtain the photovoltaic power station icon identifier corresponding to the click operation;
[0013] Obtain the area associated with the photovoltaic power station icon identifier according to the photovoltaic power station icon identifier, and determine the associated area as the target area.
[0014] Optionally, obtaining the panoramic information of the target photovoltaic power station corresponding to the target area includes:
[0015] Obtaining the mapping relationship between the preset area and the collected panoramic information, and matching the target area with the mapping relationship;
[0016] Determining the collected panoramic information corresponding to the preset area that matches the target area as the panoramic information of the target photovoltaic power station, and obtaining the panoramic information of the target photovoltaic power station.
[0017] Optionally, the third interface further includes: a spatial distance measurement icon, a spatial area measurement icon, and a triangulation icon; the method further includes:
[0018] In response to a click operation on the spatial distance measurement icon, obtaining the first position and the second position clicked by the user in the panoramic information in the spatial distance measurement mode, calculating the actual distance according to the first position and the second position, and displaying the actual distance on the interface;
[0019] Or,
[0020] In response to a click operation on the spatial area measurement icon, obtaining the first position, the second position, the third position, and the fourth position clicked by the user in the panoramic information in the spatial area measurement mode, calculating the actual area according to the first position, the second position, the third position, and the fourth position, and displaying the actual area on the interface;
[0021] Or,
[0022] In response to a click operation on the triangulation icon, obtaining the triangular area selected by the user in the panoramic information in the triangulation mode, calculating the actual area of the selected triangular area, and displaying the actual area on the interface.
[0023] Optionally, it further includes:
[0024] In response to a trigger operation on the diagnosis control, displaying the electrical data of each branch, the electrical data of each combiner box, and a fault prompt message in the target area, where the fault prompt message is generated when abnormal electrical data of the branch and / or the combiner box is detected;
[0025] In response to a viewing operation on the fault prompt message, displaying the location information corresponding to the abnormal electrical data.
[0026] Optionally, it further includes:
[0027] If abnormal electrical data of the branch and / or the combiner box is detected, sending a prompt message including the location information corresponding to the abnormal electrical data to the corresponding user terminal.
[0028] In a second aspect, the present application provides a photovoltaic power station information processing device, including:
[0029] A first processing unit, configured to display a first interface including a photovoltaic power station map control in response to a trigger operation on a monitoring control;
[0030] The first processing unit is further configured to display photovoltaic power station icons corresponding to photovoltaic power stations in each region in a second interface in response to a trigger operation on the photovoltaic power station map control;
[0031] A second processing unit, configured to determine a corresponding target area in response to a click operation on a photovoltaic power station icon, obtain panoramic information of a target photovoltaic power station corresponding to the target area, and display the panoramic information of the target photovoltaic power station in a third interface;
[0032] The first processing unit is further configured to display location information of a corresponding device in response to a click operation on a device identifier in the panoramic information.
[0033] In a third aspect, the present application provides an operation and maintenance management platform, including: a processor, a memory, and a transceiver;
[0034] The processor, the memory, and the transceiver circuit are interconnected;
[0035] The memory stores computer-executable instructions;
[0036] The transceiver is configured to transmit and receive data;
[0037] The processor executes the computer-executable instructions stored in the memory, so that the processor executes the method described in the first aspect.
[0038] In a fourth aspect, the present application provides a computer-readable storage medium, in which computer-executable instructions are stored, and when the computer-executable instructions are executed by a processor, they are used to implement the method described in the first aspect.
[0039] The photovoltaic power station information processing method, device, platform and storage medium provided by this application display a first interface including a photovoltaic power station map control in response to a trigger operation on a monitoring control; in response to a trigger operation on the photovoltaic power station map control, display photovoltaic power station icons corresponding to photovoltaic power stations in each region in a second interface; in response to a click operation on a photovoltaic power station icon, determine a corresponding target area, obtain panoramic information of the target photovoltaic power station corresponding to the target area, and display the panoramic information of the target photovoltaic power station in a third interface; in response to a click operation on an equipment identifier in the panoramic information, display the location information of the corresponding equipment. The user can perform corresponding operations on the platform, and the platform can accurately locate photovoltaic power station equipment based on the user's relevant operations, so that the user can quickly locate faulty equipment. In addition, when a fault occurs, a prompt message can be sent to facilitate the user to quickly troubleshoot the fault and reduce the equipment fault duration. BRIEF DESCRIPTION OF THE DRAWINGS
[0040] The drawings herein are incorporated into the specification and form a part of this specification, showing embodiments consistent with the present application and used together with the specification to explain the principles of the present application.
[0041] Figure 1 It is a schematic diagram of an application scenario of the photovoltaic power station information processing method provided by this application;
[0042] Figure 2 It is a schematic flowchart of a photovoltaic power station information processing method provided by this application;
[0043] Figure 3 It is a schematic flowchart of another photovoltaic power station information processing method provided by this application;
[0044] Figure 4 It is a schematic structural diagram of a photovoltaic power station information processing device provided by this application;
[0045] Figure 5 It is a block diagram of an operation and maintenance management platform for implementing the photovoltaic power station information processing method of the embodiments of the present application.
[0046] Through the above drawings, specific embodiments of the present application have been shown, and there will be more detailed descriptions hereinafter. These drawings and textual descriptions are not intended to limit the scope of the concept of the present application in any way, but to illustrate the concept of the present application to those skilled in the art by referring to specific embodiments. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0047] Exemplary embodiments will be described in detail herein, and examples thereof are shown in the accompanying drawings. When the following description refers to the accompanying drawings, unless otherwise indicated, the same numbers in different drawings represent the same or similar elements. The embodiments described in the following exemplary embodiments do not represent all embodiments consistent with the present application. On the contrary, they are merely examples of devices and methods consistent with some aspects of the present application as detailed in the appended claims.
[0048] To clearly understand the technical solution of the present application, the solutions of the prior art will be introduced in detail first.
[0049] Targets, photovoltaic devices cover a wide area. Affected by geographical environment factors, some photovoltaic power stations are relatively scattered. The same photovoltaic power station may be divided into multiple regions. During daily maintenance, operation and maintenance personnel need to go to the site to check the equipment conditions.
[0050] However, the distances between the same multiple regions are relatively far, and coupled with the diverse terrain, it is very difficult for operation and maintenance personnel to quickly find the corresponding photovoltaic devices during daily maintenance, increasing the time for fault finding and handling.
[0051] Therefore, aiming at the problem that it is very difficult for operation and maintenance personnel to quickly find the corresponding photovoltaic devices during daily maintenance in the prior art, the inventor found in the research that in response to a trigger operation on a monitoring control, a first interface including a photovoltaic power station map control is displayed. In response to a trigger operation on the photovoltaic power station map control, photovoltaic power station icons corresponding to each region of the photovoltaic power station are displayed in a second display interface. In response to a click operation on the photovoltaic power station icon, the corresponding target region is determined, and the panoramic information of the target photovoltaic power station corresponding to the target region is obtained. Further, the panoramic information of the target photovoltaic power station is displayed in a third interface. In response to a click operation on the equipment identifier in the panoramic information, the location information of the corresponding equipment is displayed. The user performs corresponding operations on the platform, and the platform can accurately locate the photovoltaic power station equipment based on the user's relevant operations, so that the user can quickly locate the faulty equipment.
[0052] Therefore, based on the above creative discovery, the inventor proposed the technical solution of the embodiments of the present application. The application scenario of the photovoltaic power station information processing method provided by the embodiments of the present application will be introduced below.
[0053] Such as Figure 1As shown in the figure, the application scenario corresponding to the photovoltaic power station information processing method provided in the embodiments of the present application includes: an operation and maintenance management platform. The operation and maintenance management platform responds to a trigger operation on a monitoring control and displays a first interface (not shown in the figure) including a photovoltaic power station map control; in response to a trigger operation on the photovoltaic power station map control, photovoltaic power station icons corresponding to photovoltaic power stations in each region are displayed in a second interface 101, including: a photovoltaic power station icon in area A, a photovoltaic power station icon in area B, and a photovoltaic power station icon in area C. In response to a click operation on the photovoltaic power station icon, the corresponding target area is determined, the panoramic information of the target photovoltaic power station corresponding to the target area is obtained, and the panoramic information of the target photovoltaic power station is displayed in a third interface 102; in response to a click operation on the device identifier in the panoramic information, the location information of the corresponding device is displayed. Among them, the device in the third interface 102 is a photovoltaic module, and the device also includes a busbar box, an inverter, etc. When the user clicks on the device identifier, the specific actual location can be viewed. When the user performs corresponding operations on the platform, the platform can accurately locate the photovoltaic power station devices based on the user's relevant operations, so that the user can quickly locate the faulty devices.
[0054] Embodiments of the present application will be specifically described below with reference to the accompanying drawings.
[0055] Figure 2 The flowchart of a photovoltaic power station information processing method provided by the present application is shown. This method is applied to an operation and maintenance management platform. Among them, the operation and maintenance management platform can represent various forms of digital computers. Such as, servers, blade servers, mainframes, and other suitable computers. As Figure 2 shown, this method includes:
[0056] Step 201, in response to a trigger operation on a monitoring control, display a first interface including a photovoltaic power station map control.
[0057] In this embodiment, the execution entity is the operation and maintenance management platform. The user inputs an account and password on the operation and maintenance management platform, and after verification, logs in to the operation and maintenance management platform. The operation and maintenance management platform displays the monitoring control. The user clicks on the monitoring control, and the operation and maintenance management platform responds to the trigger operation on the monitoring control and displays a first interface including a photovoltaic power station map control.
[0058] Step 202, in response to a trigger operation on the photovoltaic power station map control, display photovoltaic power station icons corresponding to photovoltaic power stations in each region in a second interface.
[0059] In this embodiment, the user clicks on the photovoltaic power station map control, and the operation and maintenance management platform responds to the trigger operation on the photovoltaic power station map control and displays photovoltaic power station icons corresponding to photovoltaic power stations in each region in a second interface. The panoramic information of multiple photovoltaic power stations in different regions can be viewed on the operation and maintenance management platform.
[0060] Step 203: In response to a click operation on the photovoltaic power station icon, determine the corresponding target area, obtain the panoramic information of the target photovoltaic power station corresponding to the target area, and display the panoramic information of the target photovoltaic power station in the third interface.
[0061] In this embodiment, the user selects the icon of the photovoltaic power station to be viewed according to his own needs. In response to a click operation on the photovoltaic power station icon, the operation and maintenance management platform determines the corresponding target area, which is the area that the user wants to view, obtains the panoramic information of the target photovoltaic power station corresponding to the target area, and displays the panoramic information of the target photovoltaic power station in the third interface. The panoramic information is obtained by stitching the images of each area collected by the collection device.
[0062] Step 204: In response to a click operation on the device identifier in the panoramic information, display the location information of the corresponding device.
[0063] In this embodiment, the panoramic information includes the identifiers of multiple devices. In response to a click operation on the device identifier in the panoramic information, the location information of the corresponding device is displayed.
[0064] In this application, in response to a trigger operation on the monitoring control, a first interface including a photovoltaic power station map control is displayed. In response to a trigger operation on the photovoltaic power station map control, the photovoltaic power station icons corresponding to the photovoltaic power stations in each area are displayed in the second display interface. In response to a click operation on the photovoltaic power station icon, the corresponding target area is determined, the panoramic information of the target photovoltaic power station corresponding to the target area is obtained, and further the panoramic information of the target photovoltaic power station is displayed in the third interface. In response to a click operation on the device identifier in the panoramic information, the location information of the corresponding device is displayed. The user performs corresponding operations on the platform, and the platform can accurately locate the photovoltaic power station equipment based on the user's relevant operations, so that the user can quickly locate the faulty equipment.
[0065] Figure 3 It is a schematic flowchart of another photovoltaic power station information processing method provided by this application. This method is applied to an operation and maintenance management platform, as Figure 3 shown. This method includes:
[0066] Step 301: In response to a trigger operation on the monitoring control, display a first interface including a photovoltaic power station map control.
[0067] In this embodiment, the execution subject may be an operation and maintenance management platform. The user enters an account and password on the operation and maintenance management platform, and after passing the verification, logs in to the operation and maintenance management platform. The operation and maintenance management platform displays the monitoring control. The user clicks the monitoring control, and the operation and maintenance management platform, in response to the trigger operation on the monitoring control, displays a first interface including a photovoltaic power station map control.
[0068] Step 302: In response to a triggering operation on the photovoltaic power station map control, display the photovoltaic power station icons corresponding to the photovoltaic power stations in each region in the second interface.
[0069] In this embodiment, when the user clicks on the photovoltaic power station map control, the operation and maintenance management platform responds to the triggering operation on the photovoltaic power station map control and displays the photovoltaic power station icons corresponding to the photovoltaic power stations in each region in the second interface. The panoramic information of photovoltaic power stations in multiple different regions can be viewed on the operation and maintenance management platform.
[0070] Step 303: In response to a click operation on the photovoltaic power station icon, obtain the photovoltaic power station icon identifier corresponding to the click operation, obtain the region associated with the photovoltaic power station icon identifier according to the photovoltaic power station icon identifier, determine the associated region as the target region, obtain the panoramic information of the target photovoltaic power station corresponding to the target region, and display the panoramic information of the target photovoltaic power station in the third interface.
[0071] In this embodiment, the user selects the icon of the photovoltaic power station to be viewed according to their own needs. In response to the click operation on the photovoltaic power station icon, the operation and maintenance management platform determines the corresponding target region, obtains the photovoltaic power station icon identifier corresponding to the user's click operation, obtains the region associated with the photovoltaic power station icon identifier according to the photovoltaic power station icon identifier, and determines the associated region as the target region. This target region is the region that the user wants to view. Obtain the panoramic information of the target photovoltaic power station corresponding to the target region and display the panoramic information of the target photovoltaic power station in the third interface. The panoramic information is obtained by stitching the images of each region collected by the acquisition device.
[0072] Step 304: In response to a click operation on the device identifier in the panoramic information, display the location information of the corresponding device.
[0073] In this embodiment, the panoramic information includes the identifiers of multiple devices. In response to a click operation on the device identifier in the panoramic information, the location information of the corresponding device is displayed. The above devices include inverters, busbar boxes, etc.
[0074] Optionally, the third interface further includes a summary list of photovoltaic power station equipment. The summary list of photovoltaic power station equipment includes the identification of each collector line and the expansion control of each collector line. If the user clicks on the identification of a certain collector line, the actual position of that collector line is displayed on the interface; if the user clicks on the expansion control of a certain collector line, the identification of each transformer substation corresponding to that collector line and the expansion control of each transformer substation are displayed on the interface. If the user clicks on the identification of a certain transformer substation, the actual position of that transformer substation is displayed on the interface; if the user clicks on the expansion control of a certain transformer substation, the identification of the inverter corresponding to that transformer substation and the expansion control of the inverter are displayed on the interface. If the user clicks on the identification of a certain inverter, the actual position of that inverter is displayed on the interface. If the user clicks on the expansion control of the inverter, the identification of each DC busbar box corresponding to the inverter and the expansion control of the DC busbar box are displayed on the interface. If the user clicks on the identification of a certain DC busbar box, the actual position of that DC busbar box is displayed on the interface; when the user clicks on the expansion button of the DC busbar box identification, the actual position of the branch corresponding to the DC busbar box is displayed on the interface. The user can understand the actual positions of each device in the photovoltaic power station through corresponding clicks, which is convenient for the user to go for maintenance.
[0075] In a possible implementation manner, obtaining the panoramic information of the target photovoltaic power station corresponding to the target area includes:
[0076] Obtaining the mapping relationship between the preset area and the collected panoramic information, and matching the target area with the mapping relationship; determining the collected panoramic information corresponding to the preset area that matches the target area as the panoramic information of the target photovoltaic power station, and obtaining the panoramic information of the target photovoltaic power station.
[0077] In this embodiment, the mapping relationship between the area and the collected panoramic information is pre-configured, the target area is matched with the preset area in the mapping relationship, and the panoramic information of the target photovoltaic power station is determined according to the matching result. Specifically, the collected panoramic information corresponding to the preset area that matches the target area is determined as the panoramic information of the target photovoltaic power station, and the panoramic information of the target photovoltaic power station is obtained.
[0078] In a possible implementation manner, the third interface further includes: a spatial distance measurement icon, a spatial area measurement icon, and a triangulation icon; the method further includes:
[0079] In response to a click operation on the spatial distance measurement icon, obtain the first and second positions clicked by the user in the panoramic information in the spatial distance measurement mode, calculate the actual distance based on the first and second positions, and display the actual distance on the interface; or, in response to a click operation on the spatial area measurement icon, obtain the first, second, third, and fourth positions clicked by the user in the panoramic information in the spatial area measurement mode, calculate the actual area based on the first, second, third, and fourth positions, and display the actual area on the interface; or, in response to a click operation on the triangulation icon, obtain the triangular area selected by the user in the panoramic information in the triangulation mode, and display the actual area on the interface based on the actual area of the selected triangular area.
[0080] In this embodiment, in response to a click operation on the spatial distance measurement icon, switch to the spatial distance measurement mode. If the user wants to know the distance between two positions in the panoramic information, the user can click on these two positions to obtain the first and second positions clicked by the user in the panoramic information in the spatial distance measurement mode, calculate the actual distance based on the first and second positions, and display the actual distance between the first and second positions on the interface. The user can understand the actual distance through the spatial distance measurement tool, which is convenient for the user to use.
[0081] Among them, in response to a click operation on the spatial area measurement icon, switch to the spatial area measurement. If the user wants to know the area size of a certain area in the panoramic information, the user can click on four positions, and these four positions form the area. Obtain the first, second, third, and fourth positions clicked by the user in the panoramic information in the spatial area measurement mode, further calculate the actual area based on the first, second, third, and fourth positions, and display the actual area of the area enclosed by the four positions on the interface. The user can understand the actual area through the spatial area measurement, which is convenient for the user to use.
[0082] Among them, due to the particularity of the photovoltaic power station, some areas are relatively narrow and irregular, and the triangulation tool can be used for measurement. In response to a click operation on the triangulation icon, switch to the triangulation mode, obtain the triangular area selected by the user in the panoramic information in the triangulation mode, further calculate the actual area of the selected triangular area, and display the actual area on the interface. The user can understand the actual area through the triangulation, which is convenient for the user to use.
[0083] Optionally, the third interface further includes: a lighting analysis icon. If the user wants to understand the lighting data of the panoramic information, the user can click on the analysis icon. In response to a click operation on the lighting analysis icon, obtain the current lighting data and display the current lighting data so that the user can understand the lighting situation on site.
[0084] In a possible implementation, the method further includes:
[0085] In response to a trigger operation on the diagnostic control, display the electrical data of each branch, the electrical data of each busbar trunking unit, and a fault prompt message in the target area, where the fault prompt message is generated when abnormal electrical data of a branch and / or a busbar trunking unit is detected; in response to a viewing operation on the fault prompt message, display the location information corresponding to the abnormal electrical data.
[0086] In this embodiment, the operation and maintenance management platform displays the diagnostic control. In response to a trigger operation on the control, display the current electrical data of each branch and the current electrical data of each busbar trunking unit in the target area, and a fault prompt message. Among them, the fault message is generated when abnormal electrical data of a branch and / or a busbar trunking unit is detected, and is used to prompt the user which branch and / or busbar trunking unit has abnormal electrical data. The user can view the prompt message to timely understand where the problem occurs. In response to the user's viewing operation on the fault message, display the location information corresponding to the abnormal electrical data. The location information refers to the actual location information of the branch and / or busbar trunking unit where the abnormal electrical data appears, saving a lot of time for troubleshooting.
[0087] In a possible implementation, the method further includes:
[0088] If abnormal electrical data of a branch and / or a busbar trunking unit is detected, send a prompt message including the location information corresponding to the abnormal electrical data to the corresponding user terminal.
[0089] In this embodiment, detect the electrical data of the branch and / or the busbar trunking unit, compare the detected electrical data of the branch with its corresponding threshold. If the difference between the electrical data of the branch and its corresponding threshold is large, it indicates that the branch has a fault, and then determine that the electrical data of the branch is abnormal; compare the detected electrical data of the busbar trunking unit with its corresponding threshold. If the difference between the electrical data of the busbar trunking unit and its corresponding threshold is large, it indicates that the busbar trunking unit has a fault, and then determine that the electrical data of the busbar trunking unit is abnormal; if abnormal electrical data of a branch and / or a busbar trunking unit is detected, send a prompt message including the location information corresponding to the abnormal electrical data to the corresponding user terminal, which is used to prompt the relevant operation and maintenance personnel so that the operation and maintenance personnel can arrive at the scene in time to handle the fault.
[0090] In response to a trigger operation on the monitoring control, this application displays a first interface containing a photovoltaic power station map control. In response to a trigger operation on the photovoltaic power station map control, photovoltaic power station icons corresponding to each area of the photovoltaic power station are displayed in a second display interface. In response to a click operation on the photovoltaic power station icon, the corresponding target area is determined, and the panoramic information of the target photovoltaic power station corresponding to the target area is obtained. Further, the panoramic information of the target photovoltaic power station is displayed in a third interface. In response to a click operation on the device identifier in the panoramic information, the location information of the corresponding device is displayed. The user performs corresponding operations on the platform, and the platform can accurately locate the photovoltaic power station devices based on the user's relevant operations, so that the user can quickly locate the faulty devices. In addition, when a fault occurs, a prompt message can be sent to facilitate the user to quickly troubleshoot the fault and reduce the duration of device failure.
[0091] Figure 4 FIG. is a schematic structural diagram of a photovoltaic power station information processing device provided by this application, as Figure 4 shown, the photovoltaic power station information processing device 400 provided in this embodiment includes a first processing unit 401 and a second processing unit.
[0092] Among them, the first processing unit 401 is configured to display a first interface containing a photovoltaic power station map control in response to a trigger operation on the monitoring control. The first processing unit 401 is further configured to display photovoltaic power station icons corresponding to each area of the photovoltaic power station in a second interface in response to a trigger operation on the photovoltaic power station map control. The second processing unit 402 is configured to determine the corresponding target area in response to a click operation on the photovoltaic power station icon, obtain the panoramic information of the target photovoltaic power station corresponding to the target area, and display the panoramic information of the target photovoltaic power station in a third interface. The first processing unit 401 is further configured to display the location information of the corresponding device in response to a click operation on the device identifier in the panoramic information.
[0093] Optionally, the second processing unit 402 is further configured to obtain the photovoltaic power station icon identifier corresponding to the click operation; obtain the area associated with the photovoltaic power station icon identifier according to the photovoltaic power station icon identifier, and determine the associated area as the target area.
[0094] Optionally, the second processing unit 402 is further configured to obtain the mapping relationship between the preset area and the collected panoramic information, and match the target area with the mapping relationship; determine the collected panoramic information corresponding to the preset area that matches the target area as the panoramic information of the target photovoltaic power station, and obtain the panoramic information of the target photovoltaic power station.
[0095] Optionally, the second processing unit 402 is further configured to, in response to a click operation on the spatial distance measurement icon, obtain a first position and a second position clicked by the user in the panoramic information in the spatial distance measurement mode, calculate the actual distance based on the first position and the second position, and display the actual distance on the interface; or, in response to a click operation on the spatial area measurement icon, obtain a first position, a second position, a third position, and a fourth position clicked by the user in the panoramic information in the spatial area measurement mode, calculate the actual area based on the first position, the second position, the third position, and the fourth position, and display the actual area on the interface; or, in response to a click operation on the triangulation icon, obtain a triangular area selected by the user in the triangulation mode, calculate the actual area of the selected triangular area, and display the actual area on the interface.
[0096] Optionally, if abnormal electrical data of a branch circuit and / or a busbar chamber is detected, a prompt message including the position information corresponding to the abnormal electrical data is sent to the corresponding user terminal.
[0097] Figure 5 It is a block diagram of an operation and maintenance management platform for implementing the photovoltaic power station information processing method according to an embodiment of the present application, as Figure 5 shown. The operation and maintenance management platform 500 includes: a memory 501, a processor 502, and a transceiver 503.
[0098] The processor 502, the memory 501, and the transceiver 503 are circuit-connected;
[0099] The transceiver 503 is configured to send and receive data;
[0100] The memory 501 stores computer-executable instructions;
[0101] The processor 502 executes the computer-executable instructions stored in the memory 501, so that the processor 502 executes the method provided in any of the above embodiments.
[0102] In an exemplary embodiment, a computer-readable storage medium is further provided. The computer-readable storage medium stores computer-executable instructions, and the computer-executable instructions are executed by the processor to execute the method in any one of the above embodiments.
[0103] In an exemplary embodiment, a computer program product is further provided, including a computer program, and the computer program is executed by the processor to execute the method in any one of the above embodiments.
[0104] Other embodiments of the present application will be readily apparent to those skilled in the art upon consideration of the specification and practice of the invention disclosed herein. The present application is intended to cover any variations, uses, or adaptations of the present application, which follow the general principles of the present application and include known common general knowledge or conventional technical means in the technical field not disclosed in the present application. The specification and examples are only to be considered as exemplary, and the true scope and spirit of the present application are pointed out by the following claims.
[0105] It should be understood that the present application is not limited to the exact structures described above and shown in the drawings, and various modifications and changes can be made without departing from its scope. The scope of the present application is only limited by the appended claims.
Claims
1. A method for processing photovoltaic power station information, characterized in that, the method includes: responding to a trigger operation on a monitoring control, and displaying a first interface including a photovoltaic power station map control; responding to a trigger operation on the photovoltaic power station map control, and displaying photovoltaic power station icons corresponding to photovoltaic power stations in each region in a second interface; responding to a click operation on a photovoltaic power station icon, determining a corresponding target region, obtaining panoramic information of a target photovoltaic power station corresponding to the target region, and displaying the panoramic information of the target photovoltaic power station in a third interface; responding to a click operation on a device identifier in the panoramic information, and displaying location information of the corresponding device.
2. The method according to claim 1, characterized in that, the determining the corresponding target region includes: obtaining a photovoltaic power station icon identifier corresponding to the click operation; obtaining a region associated with the photovoltaic power station icon identifier according to the photovoltaic power station icon identifier, and determining the associated region as the target region.
3. The method according to claim 1, characterized in that, the obtaining the panoramic information of the target photovoltaic power station corresponding to the target region includes: obtaining a mapping relationship between a preset region and the collected panoramic information, and matching the target region with the mapping relationship; determining the collected panoramic information corresponding to the preset region matched with the target region as the panoramic information of the target photovoltaic power station, and obtaining the panoramic information of the target photovoltaic power station.
4. The method according to claim 1, characterized in that, the third interface further includes: a space distance measurement icon, a space area measurement icon, and a triangulation icon; the method further includes: responding to a click operation on the space distance measurement icon, obtaining a first position and a second position clicked by a user in the panoramic information in a space distance measurement mode, calculating an actual distance according to the first position and the second position, and displaying the actual distance in the interface; or, responding to a click operation on the space area measurement icon, obtaining a first position, a second position, a third position, and a fourth position clicked by a user in the panoramic information in a space area measurement mode, calculating an actual area according to the first position, the second position, the third position, and the fourth position, and displaying the actual area in the interface; or, responding to a click operation on the triangulation icon, obtaining a triangular region selected by a user in the panoramic information in a triangulation mode, calculating an actual area of the selected triangular region, and displaying the actual area in the interface.
5. The method according to claim 1, characterized in that, it further includes: responding to a trigger operation on a diagnosis control, and displaying electrical data of each branch, electrical data of each combiner box, and a fault prompt message in the target region, where the fault prompt message is generated when it is detected that the electrical data of the branch and / or the combiner box is abnormal; responding to a viewing operation on the fault prompt message, and displaying location information corresponding to the abnormal electrical data.
6. The method according to claim 5, characterized in that, it further includes: If abnormal electrical data of a branch circuit and / or a busbar box is detected, a prompt message including the location information corresponding to the abnormal electrical data is sent to the corresponding user terminal.
7. A photovoltaic power station information processing device, characterized in that the device includes: A first processing unit, configured to display a first interface including a photovoltaic power station map control in response to a trigger operation on a monitoring control; The first processing unit is further configured to display photovoltaic power station icons corresponding to each area of the photovoltaic power station in a second interface in response to a trigger operation on the photovoltaic power station map control; A second processing unit, configured to determine a corresponding target area in response to a click operation on a photovoltaic power station icon, obtain panoramic information of the target photovoltaic power station corresponding to the target area, and display the panoramic information of the target photovoltaic power station in a third interface; The first processing unit is further configured to display the location information of the corresponding device in response to a click operation on the device identifier in the panoramic information.
8. An operation and maintenance management platform, including: a processor and a memory communicatively connected to the processor; the memory stores computer execution instructions; the processor executes the computer execution instructions stored in the memory to implement the method according to any one of claims 1 to 6.
9. A computer-readable storage medium, characterized in that computer execution instructions are stored in the computer-readable storage medium, and when the computer execution instructions are executed by a processor, they are used to implement the method according to any one of claims 1 to 6.
10. A computer program product, including a computer program, which when executed by a processor, implements the method according to any one of claims 1 to 6.