Equipment configuration methods, devices, electronic equipment, storage media and software products

CN122553547APending Publication Date: 2026-08-11BEIJING HUADIAN TIANREN ELECTRIC POWER CONTROL TECH
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2026-03-25
Publication Date
2026-08-11

AI Technical Summary

Technical Problem

[0003]现有的场站管理系统一般包括组织机构管理、发电设备管理,这些管理系统往往缺乏对各组织机构层级和各层级发电设备进行统一管理的有效手段,例如,对同一类设备只能对每个设备的监测点单独进行手动配置,管理效率低

Benefits of technology

[0015] In this disclosure, in response to a device addition operation for a target device type, the new device to be added is added to the device set under the target device type; in response to a first configuration operation for the new device, general indicator tags and general attribute tags corresponding to the target device type are obtained from the basic indicator library and the basic attribute library; based on the general indicator tags and general attribute tags, the new device is configured. This enables centralized and standardized configuration management of all device instances under the same device type, avoiding the problem of manually configuring monitoring points for each device individually in related technologies; thus significantly improving configuration efficiency and consistency, reducing management costs and the possibility of human error, and solving the problem of low management efficiency caused by the lack of unified management methods in existing site management systems.

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Abstract

This disclosure relates to a device configuration method, apparatus, electronic device, storage medium, and program product. The method includes: in response to a device addition operation for a target device type, adding a new device to a device set under the target device type; in response to a first configuration operation for the new device, obtaining a general indicator tag and a general attribute tag corresponding to the target device type from a basic indicator library and a basic attribute library; and configuring the new device based on the general indicator tag and the general attribute tag. This enables centralized and standardized configuration management of all device instances under the same device type, significantly improving configuration efficiency and consistency, reducing management costs and the possibility of human error, and solving the problem of low management efficiency caused by the lack of unified management methods in existing site management systems.
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Description

Technical Field

[0001] This disclosure relates to the field of new energy centralized control technology, specifically to a device configuration method, apparatus, electronic device, storage medium, and program product. Background Technology

[0002] With the increasing use of new energy power generation, more and more wind farms and photovoltaic farms of various sizes are being built. Due to environmental requirements, the power generation equipment of these farms is installed in relatively remote places. At the same time, managers at different levels are often located in different areas. In order to make management more convenient, many farm management systems have emerged. These systems are deployed in their respective farms and have different focuses in data structure and functional design.

[0003] Existing power plant management systems generally include organizational structure management and power generation equipment management. These systems often lack effective means to uniformly manage the various organizational levels and power generation equipment at each level. For example, for the same type of equipment, the monitoring points of each equipment can only be manually configured separately, resulting in low management efficiency. Summary of the Invention

[0004] In order to overcome the problems existing in the related technologies, this disclosure provides a device configuration method, apparatus, electronic device, storage medium and program product.

[0005] In a first aspect, this disclosure provides a device configuration method, the method comprising: in response to a device addition operation for a target device type, adding a new device to be added to a device set under the target device type; in response to a first configuration operation for the new device, obtaining a general indicator tag and a general attribute tag corresponding to the target device type from a basic indicator library and a basic attribute library; and configuring the new device based on the general indicator tag and the general attribute tag.

[0006] Optionally, after adding the new device to be added to the device set under the target device type, the method further includes: receiving input specific indicator tags and / or specific attribute tags in response to a second configuration operation for the new device to be added; and configuring the new device based on the specific indicator tags and / or the specific attribute tags.

[0007] Optionally, after configuring the new device based on the unique indicator label and / or the unique attribute label, the method further includes: adding the unique indicator label to the basic indicator library; and / or adding the unique attribute label to the basic attribute library.

[0008] Optionally, after configuring the new device based on the unique indicator tags and / or the unique attribute tags, the method further includes: in response to a unique indicator data viewing operation for the new device, obtaining the tag value of the unique indicator tags of the new device; and displaying the tag value of the unique indicator tags of the new device according to a preset display method.

[0009] Optionally, after configuring the new device based on the general indicator label and the general attribute label, the method further includes: in response to an indicator data viewing operation for the target device type, obtaining the label value of the general indicator label for each device in the device set under the target device type; and displaying the label value of the general indicator label for each device according to a preset display method.

[0010] Optionally, the basic indicator library includes a variety of general indicator tags and a variety of unique indicator tags. The method further includes: in response to a data analysis operation on a scene classification tag, obtaining at least one of the general indicator tags and / or at least one of the unique indicator tags under the scene classification tag; and performing data analysis on the tag values ​​of at least one of the general indicator tags and / or at least one of the unique indicator tags under the scene classification tag based on a preset analysis algorithm corresponding to the scene classification tag.

[0011] Secondly, this disclosure provides a device configuration apparatus, comprising: a device adding module, a tag acquisition module, and a device configuration module. The device adding module is configured to add a new device to a device set under the target device type in response to a device adding operation for a target device type; the tag acquisition module is configured to acquire, in response to a first configuration operation for the new device, a general indicator tag and a general attribute tag corresponding to the target device type from a basic indicator library and a basic attribute library; the device configuration module is configured to configure the new device based on the general indicator tag and the general attribute tag.

[0012] Thirdly, this disclosure provides an electronic device comprising: one or more processors; a memory; and one or more programs, wherein the one or more programs are stored in the memory and configured to be executed by the one or more processors, and the one or more programs are configured to implement the steps of the first aspect.

[0013] Fourthly, this disclosure provides a non-transitory computer-readable storage medium having a computer program stored thereon, which, when executed by a processor, implements the steps of the method described in the first aspect.

[0014] Fifthly, this disclosure provides a computer program product, including a computer program that, when executed by a processor, implements the steps of the method described in the first aspect.

[0015] In this disclosure, in response to a device addition operation for a target device type, the new device to be added is added to the device set under the target device type; in response to a first configuration operation for the new device, general indicator tags and general attribute tags corresponding to the target device type are obtained from the basic indicator library and the basic attribute library; based on the general indicator tags and general attribute tags, the new device is configured. This enables centralized and standardized configuration management of all device instances under the same device type, avoiding the problem of manually configuring monitoring points for each device individually in related technologies; thus significantly improving configuration efficiency and consistency, reducing management costs and the possibility of human error, and solving the problem of low management efficiency caused by the lack of unified management methods in existing site management systems.

[0016] Other features and advantages of this disclosure will be described in detail in the following detailed description section. Attached Figure Description

[0017] The accompanying drawings are provided to further illustrate the present disclosure and form part of the specification. They are used together with the following detailed description to explain the present disclosure, but do not constitute a limitation thereof. In the drawings: Figure 1 A schematic flowchart of a device configuration method provided in an embodiment of this application is shown.

[0018] Figure 2 A tree structure diagram of a data model provided in an embodiment of this application is shown.

[0019] Figure 3 This illustration shows an architecture diagram of a device instance created based on a data model, as provided in an embodiment of this application.

[0020] Figure 4 This illustration shows a schematic diagram of the association of an indicator attribute provided in an embodiment of this application.

[0021] Figure 5 A flowchart illustrating a device configuration method provided in another embodiment of this application is shown.

[0022] Figure 6 This is a block diagram of a device configuration apparatus according to an embodiment of this application.

[0023] Figure 7 This is a block diagram of an electronic device for performing a device configuration method according to an embodiment of this application.

[0024] Figure 8 This is a storage unit in this application embodiment for storing or carrying program code that implements the device configuration method according to this application embodiment. Detailed Implementation

[0025] The specific embodiments of this disclosure will be described in detail below with reference to the accompanying drawings. It should be understood that the specific embodiments described herein are for illustration and explanation only and are not intended to limit this disclosure.

[0026] It should be noted that all actions involving the acquisition of signals, information, or data in this disclosure are carried out in compliance with the relevant data protection laws and policies of the country where the location is situated, and with authorization from the owner of the relevant device.

[0027] The term "comprising" and its variations as used herein are open-ended inclusions, meaning "including but not limited to". The term "based on" means "at least partially based on". The term "one embodiment" means "at least one embodiment"; the term "another embodiment" means "at least one additional embodiment"; the term "some embodiments" means "at least some embodiments". Definitions of other terms will be given in the description below.

[0028] It should be noted that the concepts of "first" and "second" mentioned in this disclosure are used only to distinguish different devices, modules or units, and are not used to limit the order of functions performed by these devices, modules or units or their interdependencies.

[0029] To address the shortcomings of existing technologies, the inventors propose a device configuration method, apparatus, electronic device, storage medium, and program product. The device configuration method provided in this application is described in detail below.

[0030] Please refer to Figure 1 , Figure 1 This is a schematic flowchart illustrating a device configuration method according to an embodiment of this application. The following will be combined with... Figure 1 The device configuration method provided in the embodiments of this application will be described in detail. The device configuration method may include the following steps: Step S110: In response to a device addition operation for a target device type, add the new device to be added to the device set under the target device type.

[0031] In this embodiment, a basic data model can be pre-built. Specifically, relevant personnel can establish a hierarchical structure of basic types, forming a tree structure, and use this tree structure as the foundation of the basic data model for subsequent addition and configuration of device instances. Figure 2As shown, the constructed basic data model can include three levels: organizational structure, site structure, and equipment and components. Each level can represent a type of physical equipment or a type of organization; for ease of description, this application collectively refers to each level as equipment type. Optionally, as... Figure 2 As shown, the organizational structure can include groups, companies, and stations. A station can include districts / phases and lines. Equipment can include various physical equipment in the station, such as power generation equipment. Components can be the actual constituent parts of various power generation equipment. For example, the power generation equipment in a station can include components such as wind turbines, photovoltaics, energy storage, and environmental monitoring instruments. Wind turbine components can generally include more than ten components such as impellers, pitch control, and generators. Photovoltaic components can generally include components such as inverters, combiner boxes, and transformer substations.

[0032] It should be noted that, for the pre-built basic data model, relevant personnel can add new equipment at any level without changing the hierarchical structure of the data model. For example, new equipment can be added to the organizational structure or station structure of the data model. Equipment can also be added arbitrarily to the levels containing power generation equipment and components, and there are no restrictions on the hierarchical structure of components. Thus, since adding equipment does not change the hierarchical structure of the data model, the consistency of the data structure can be ensured, improving management efficiency.

[0033] Based on this, the target equipment type is the equipment type at a certain level in the aforementioned data model, such as wind turbines and photovoltaic inverters. Adding equipment can be understood as a user selecting a specific equipment type in the management system interface and then adding the equipment. The new equipment refers to an instance of a concrete physical device, such as wind turbine #1 and photovoltaic panel #2. Adding the new equipment to the equipment set under the target equipment type can be understood as the system associating the new equipment instance with the corresponding equipment type node, forming a structure like... Figure 3 The device instance tree shown.

[0034] Step S120: In response to the first configuration operation for the new device, obtain the general indicator label and general attribute label corresponding to the target device type from the basic indicator library and the basic attribute library.

[0035] In this embodiment, the first configuration operation can be understood as an automatic configuration operation based on the aforementioned data model input, thereby realizing basic general configuration of the newly added equipment. The basic indicator library can include various general indicator tags, and the basic attribute library can also include various basic attribute tags. General indicators can be understood as monitoring or management indicators, such as the power generation status indicators and power generation power indicators of a wind turbine. Basic attributes can be understood as properties possessed by an organization or equipment, such as the rated power of a wind turbine, equipment model, and manufacturer.

[0036] It should be noted that the basic indicator library and basic attribute library are also pre-built for the data model. Relevant personnel can pre-set corresponding general indicator tags and general attribute tags for each level of device type in the data model and store them in the basic indicator library and basic attribute library. This facilitates the unified configuration and management of monitoring indicators for subsequent devices. Based on this, upon receiving the first configuration operation for a new device, the system can respond to this operation by retrieving the corresponding general indicator tags for the target device type from the basic indicator library and the corresponding general attribute tags for the target device type from the basic attribute library.

[0037] Step S130: Configure the new device based on the general indicator label and the general attribute label.

[0038] In other words, the acquired general indicator tags and general attribute tags can be associated with new equipment. This indicates that the new equipment possesses the attribute information corresponding to the general attribute tag, and that subsequent real-time monitoring of the general indicators corresponding to its general indicator tags is required. For example, if the new equipment is a wind turbine and the general indicator tag is a real-time speed tag, after configuring the wind turbine, the real-time speed of the wind turbine, which is monitored in real time, can be recorded in the tag value of the speed tag.

[0039] Optionally, after step S130, in response to the indicator data viewing operation for the target device type, the tag value of the general indicator tag for each device in the device set under the target device type is obtained; the tag value of the general indicator tag for each device is displayed according to a preset display method. Optionally, each general indicator tag will have its corresponding unique measurement point value preset, for example, measurement point value 0001 represents the speed indicator tag, and measurement point value 0002 represents the power indicator tag; the measurement point values ​​of all general indicator tags can be pre-stored in the time series library. Based on this, in response to the indicator data viewing operation for the target device type, the general indicator tag for each device in the device set under the target device type is obtained, and the measurement point value corresponding to the general indicator tag for each device is determined from the time series library, and then the tag value corresponding to the measurement point value is obtained, that is, the tag value monitored in real time for the measurement point value is obtained, such as the real-time speed of the fan. The preset display method may include at least one of the following display methods: list display, icon display, and map display; it should be noted that during the display of the tag value of the general indicator tag for each device, real-time refresh and historical trend analysis are supported.

[0040] In this embodiment, by pre-constructing a basic data model, centralized and standardized configuration management of all device instances of the same device type is achieved, avoiding the problem of manually configuring monitoring points for each device individually in related technologies. This significantly improves configuration efficiency and consistency, reduces management costs and the possibility of human error, and solves the problem of low management efficiency caused by the lack of unified management methods in existing site management systems. Especially in the scenario of centralized control of new energy, it can better realize centralized monitoring and unified management of organizational structures, sites, equipment, and components.

[0041] Please refer to Figure 4 , Figure 4 This is a schematic flowchart illustrating a device configuration method according to another embodiment of this application. The following will be combined with... Figure 4 The device configuration method provided in the embodiments of this application will be described in detail. The device configuration method may include the following steps: Step S210: In response to a device addition operation for a target device type, add the new device to be added to the device set under the target device type.

[0042] Step S220: In response to the first configuration operation for the new device, obtain the general indicator label and general attribute label corresponding to the target device type from the basic indicator library and the basic attribute library.

[0043] Step S230: Configure the new device based on the general indicator label and the general attribute label.

[0044] In this embodiment, the specific implementation of steps S210 to S230 can be found in the content of the foregoing embodiments, and will not be repeated here.

[0045] Step S240: In response to a second configuration operation for the new device, receive input specific indicator tags and / or specific attribute tags.

[0046] The second configuration operation allows users to manually personalize the configuration of new equipment. In other words, this application supports not only automated configuration of general indicators and attributes, but also manual personalization of unique indicators and attributes. For example, for a fan, a unique indicator label for "gearbox temperature" can be manually set. Optionally, users can manually input unique indicator labels and / or unique attribute labels through the interface.

[0047] Step S250: Configure the new device based on the unique indicator label and / or the unique attribute label.

[0048] In other words, unique indicator tags and / or unique attribute tags can be associated with new devices, indicating that the new device possesses the attribute information corresponding to the unique attribute tag, and / or requires subsequent real-time monitoring of the unique indicators corresponding to its unique indicator tag. Thus, specific unique indicators and attribute values ​​that require special monitoring can be set for new devices, thereby achieving refined management of specific devices and meeting personalized monitoring needs.

[0049] Optionally, after step S250, the unique indicator tag is added to the basic indicator library; and / or, the unique attribute tag is added to the basic attribute library. That is, when a user creates and configures a new unique indicator or attribute for a specific device instance (e.g., adding a monitoring indicator for blade vibration frequency for a certain type of wind turbine), the unique indicator tag is allowed to be synchronously saved to the basic indicator library. Thus, when configuring other similar device instances subsequently, the system can automatically recommend this tag as a general indicator for automated configuration, or allow the user to select it as a unique indicator, thereby achieving the reuse of unique indicators and attributes. In this way, as business operations develop and device types evolve and expand dynamically, a more complete and practically relevant basic indicator and attribute library can be gradually formed; such as Figure 5 As shown, device types are associated with and inherit common indicators and attributes from the basic indicator library and basic attribute library. Device instances (such as new devices) automatically inherit the common configuration of their respective device types upon creation, and can additionally add unique indicators and attributes. All indicators (common and unique) can be bound to tags for scenario-based queries and data analysis. The measurement point values ​​and attribute values ​​of device instances are pre-configured manually and can be categorized and managed through tags.

[0050] Optionally, the general indicator labels and general attribute labels for any device type can be supplemented and expanded. In other words, when new devices are introduced or monitoring requirements change, general indicators or attributes can be directly added to existing device types without refactoring the data model or modifying the program structure. This enables the system to respond quickly to business changes and supports continuous iteration and functional expansion.

[0051] Step S260: In response to the operation of viewing the unique indicator data for the new device, obtain the tag value of the unique indicator tag of the new device.

[0052] Optionally, each unique indicator tag will have a pre-set unique measurement point value, for example, measurement point value 0003 represents a certain unique indicator tag; the measurement point values ​​of all unique indicator tags can be pre-stored in the time series database. Based on this, in response to the operation of viewing unique indicator data for a new device, the unique indicator tag of the new device is obtained, and the measurement point value corresponding to the unique indicator tag of the new device is determined from the time series database, and then the tag value corresponding to the measurement point value is obtained, that is, the tag value monitored in real time for the measurement point value is obtained. In other words, this application supports users to select a specific device instance and request the viewer's unique monitoring data, thereby facilitating the system's fine-grained monitoring.

[0053] Step S270: Display the tag values ​​of the unique indicator tags of the new device according to the preset display method.

[0054] Similarly, the preset display methods can include at least one of the following: list display, icon display, and map display; it should be noted that during the display of the label values ​​of the unique indicator labels of the new device, real-time refresh and historical trend analysis are supported.

[0055] In some implementations, the basic indicator library includes multiple general indicator tags and multiple specific indicator tags. In response to a data analysis operation targeting a scene classification tag, at least one general indicator tag and / or at least one specific indicator tag under the scene classification tag are obtained. Based on a preset analysis algorithm corresponding to the scene classification tag, data analysis is performed on the tag values ​​of at least one general indicator tag and / or at least one specific indicator tag under the scene classification tag. The scene classification tag can be pre-set by the user for actual scene analysis, such as "real-time power monitoring," "report statistics," and "fault diagnosis," etc., and at least one indicator tag and / or at least one specific indicator tag required for each scene classification tag are pre-set. Thus, in response to a data analysis operation targeting a scene classification tag, at least one general indicator tag and / or at least one specific indicator tag under the scene classification tag can be obtained; and further, the preset analysis algorithm corresponding to the scene classification tag is used to perform data analysis on the tag values ​​of at least one general indicator tag and / or at least one specific indicator tag under the scene classification tag. The preset analysis algorithms can be algorithms pre-designed according to scenario requirements, such as algorithms for average value calculation, power value calculation, trend prediction, and anomaly detection. Furthermore, the data analysis results calculated based on the preset analysis algorithms can be output in the form of data analysis reports or visualization charts to support decision-making and management.

[0056] In this embodiment, by pre-constructing a basic data model, centralized and standardized configuration management of all equipment instances of the same equipment type is achieved, avoiding the problem of manually configuring monitoring points for each device in related technologies. This significantly improves configuration efficiency and consistency, reduces management costs and the possibility of human error, and solves the problem of low management efficiency caused by the lack of unified management methods in existing site management systems. Furthermore, the general indicators for equipment types enable both batch monitoring and data statistics for a specific type of equipment, as well as individual monitoring of each device using its unique indicators. Simultaneously, data statistics and analysis can be performed on equipment belonging to a specific organizational level using its indicators, combining versatility and scalability.

[0057] Please refer to Figure 6 The diagram illustrates a structural block diagram of a device configuration apparatus 300 according to an embodiment of this application. The apparatus 300 may include: a device adding module 310, a tag acquisition module 320, and a device configuration module 330.

[0058] The device adding module 310 is used to add the new device to be added to the device set under the target device type in response to a device adding operation for the target device type.

[0059] The tag acquisition module 320 is used to, in response to the first configuration operation for the new device, acquire general indicator tags and general attribute tags corresponding to the target device type from the basic indicator library and the basic attribute library.

[0060] The device configuration module 330 is used to configure the new device based on the general indicator label and the general attribute label.

[0061] Optionally, the device configuration module 330 may also be specifically configured to, after adding the new device to be added to the device set under the target device type, receive input specific indicator tags and / or specific attribute tags in response to a second configuration operation for the new device; and configure the new device based on the specific indicator tags and / or the specific attribute tags.

[0062] Optionally, the device configuration apparatus 300 may further include a tag adding module. The tag adding module can be used to add the unique indicator tags to the basic indicator library after configuring the new device based on the unique indicator tags and / or the unique attribute tags; and / or to the basic attribute library.

[0063] Optionally, the device configuration apparatus 300 may further include a data viewing module and a display module. The data viewing module can be used to obtain the tag values ​​of the unique indicator tags of the new device in response to a unique indicator data viewing operation for the new device after configuring the new device based on the unique indicator tags and / or the unique attribute tags. The display module can be used to display the tag values ​​of the unique indicator tags of the new device according to a preset display method.

[0064] Optionally, the device configuration device 300 may further include a data viewing module and a display module. The data viewing module can be used, after configuring the new device based on the general indicator tags and the general attribute tags, to obtain the tag values ​​of the general indicator tags for each device in the device set under the target device type in response to an indicator data viewing operation for the target device type. The display module can be used to display the tag values ​​of the general indicator tags for each device according to a preset display method.

[0065] Optionally, the basic indicator library includes various general indicator tags and various unique indicator tags. The device configuration device 300 may further include a scene analysis module. This scene analysis module can be used to respond to data analysis operations on scene classification tags, obtain at least one of the general indicator tags and / or at least one of the unique indicator tags under the scene classification tag; and perform data analysis on the tag values ​​of at least one of the general indicator tags and / or at least one of the unique indicator tags under the scene classification tag based on a preset analysis algorithm corresponding to the scene classification tag.

[0066] Those skilled in the art will clearly understand that, for the sake of convenience and brevity, the specific working process of the above-described device and module can be referred to the corresponding process in the foregoing method embodiments, and will not be repeated here.

[0067] In the several embodiments provided in this application, the coupling between modules can be electrical, mechanical, or other forms of coupling.

[0068] Furthermore, the functional modules in the various embodiments of this application can be integrated into one processing module, or each module can exist physically separately, or two or more modules can be integrated into one module. The integrated modules described above can be implemented in hardware or as software functional modules.

[0069] In summary, this application, by pre-constructing a basic data model, achieves centralized and standardized configuration management of all equipment instances of the same equipment type, avoiding the problem of manually configuring monitoring points for each device in related technologies. This significantly improves configuration efficiency and consistency, reduces management costs and the possibility of human error, and solves the problem of low management efficiency caused by the lack of unified management methods in existing site management systems. Furthermore, the application utilizes general indicators for equipment types to achieve both batch monitoring and data statistics for a specific type of equipment, and also enables individual monitoring of each device using its unique indicators. Simultaneously, data statistics and analysis can be performed on equipment belonging to a specific organizational level using its indicators, demonstrating both versatility and scalability.

[0070] Please see Figure 7 , Figure 7 This is a block diagram illustrating an electronic device 400 according to an exemplary embodiment. Figure 7 As shown, the electronic device 400 may include: a processor 401 and a memory 402.

[0071] The processor 401 controls the overall operation of the electronic device 400 to complete all or part of the steps in the device configuration method described above. The memory 402 stores various types of data to support the operation of the electronic device 400. This data may include, for example, instructions for any application or method operating on the electronic device 400, and application-related data such as contact data, sent and received messages, pictures, audio, video, etc. The memory 402 can be implemented by any type of volatile or non-volatile storage device or a combination thereof, such as Static Random Access Memory (SRAM), Electrically Erasable Programmable Read-Only Memory (EEPROM), Erasable Programmable Read-Only Memory (EPROM), Programmable Read-Only Memory (PROM), Read-Only Memory (ROM), magnetic storage, flash memory, magnetic disk, or optical disk.

[0072] In an exemplary embodiment, the electronic device 400 may be implemented by one or more application-specific integrated circuits (ASICs), digital signal processors (DSPs), digital signal processing devices (DSPDs), programmable logic devices (PLDs), field-programmable gate arrays (FPGAs), controllers, microcontrollers, microprocessors, or other electronic components to perform the device configuration method described above.

[0073] Please refer to Figure 8 This diagram illustrates a structural block diagram of a computer-readable storage medium provided in an embodiment of this application. The computer-readable medium 500 stores program code that can be called by a processor to execute the methods described in the above method embodiments.

[0074] The computer-readable storage medium 500 may be an electronic memory such as flash memory, EEPROM (Electrically Erasable Programmable Read-Only Memory), EPROM, hard disk, or ROM. Optionally, the computer-readable storage medium 500 includes a non-transitory computer-readable storage medium. The computer-readable storage medium 500 has storage space for program code 510 that performs any of the method steps described above. This program code can be read from or written to one or more computer program products. The program code 510 may be compressed, for example, in a suitable form.

[0075] In some embodiments, a computer program product or computer program is provided, which includes computer instructions stored in a computer-readable storage medium. A processor of an electronic device reads the computer instructions from the computer-readable storage medium and executes the computer instructions, causing the electronic device to perform the steps in the above-described method embodiments.

[0076] The preferred embodiments of this disclosure have been described in detail above with reference to the accompanying drawings. However, this disclosure is not limited to the specific details of the above embodiments. Within the scope of the technical concept of this disclosure, various simple modifications can be made to the technical solutions of this disclosure, and these simple modifications all fall within the protection scope of this disclosure.

[0077] It should also be noted that the various specific technical features described in the above specific embodiments can be combined in any suitable manner without contradiction. In order to avoid unnecessary repetition, this disclosure will not describe the various possible combinations separately.

[0078] Furthermore, various different embodiments of this disclosure can be combined in any way, as long as they do not violate the spirit of this disclosure, they should also be regarded as the content disclosed in this disclosure.

Claims

1. A method for configuring a device, characterized in that, The method includes: In response to a device add operation for a target device type, the new device to be added is added to the device set under the target device type; In response to the first configuration operation for the new device, general indicator tags and general attribute tags corresponding to the target device type are obtained from the basic indicator library and the basic attribute library; The new device is configured based on the general indicator labels and the general attribute labels.

2. The method according to claim 1, characterized in that, After adding the new device to be added to the device set under the target device type, the method further includes: In response to a second configuration operation for the new device, input specific indicator labels and / or specific attribute labels are received; The new device is configured based on the unique indicator tags and / or the unique attribute tags.

3. The method according to claim 2, characterized in that, After configuring the new device based on the specific indicator tags and / or the specific attribute tags, the method further includes: Add the unique indicator tags to the basic indicator library; and / or, Add the unique attribute tag to the basic attribute library.

4. The method according to claim 2, characterized in that, After configuring the new device based on the specific indicator tags and / or the specific attribute tags, the method further includes: In response to the operation of viewing the unique indicator data for the new device, the tag value of the unique indicator label of the new device is obtained; The label values ​​of the unique indicator labels of the new device are displayed according to the preset display method.

5. The method according to any one of claims 1-4, characterized in that, After configuring the new device based on the general indicator labels and the general attribute labels, the method further includes: In response to the indicator data viewing operation for the target device type, obtain the tag value of the general indicator tag for each device in the device set under the target device type; The label values ​​of the general indicator labels for each device are displayed according to the preset display method.

6. The method according to claims 1-4, characterized in that, The basic indicator library includes various general indicator tags and various unique indicator tags, and the method further includes: In response to a data analysis operation targeting a scene classification label, at least one of the general indicator labels and / or at least one of the specific indicator labels under the scene classification label are obtained; Based on the preset analysis algorithm corresponding to the scene classification label, data analysis is performed on the label value of at least one of the general indicator labels under the scene classification label, and / or the label value of at least one of the specific indicator labels.

7. A device configuration apparatus, characterized in that, The device includes: The device adding module is used to add the new device to be added to the device set under the target device type in response to a device adding operation for the target device type; The tag acquisition module is used to, in response to the first configuration operation for the new device, acquire general indicator tags and general attribute tags corresponding to the target device type from the basic indicator library and the basic attribute library; The device configuration module is used to configure the new device based on the general indicator tags and the general attribute tags.

8. An electronic device, characterized in that, include: A memory on which computer programs are stored; A processor for executing the computer program in the memory to implement the steps of the method according to any one of claims 1 to 6.

9. A non-transitory computer-readable storage medium having a computer program stored thereon, characterized in that, When executed by a processor, the computer program implements the steps of the method according to any one of claims 1 to 6.

10. A computer program product, characterized in that, Includes a computer program that, when executed by a processor, implements the method of any one of claims 1 to 6.