Asset dynamic management method and device, readable medium and electronic equipment

The equipment information is obtained through object model module and sensor/Internet of Things technology, combined with data processing module and object model template, and structured information is generated, which solves the problem that asset management relies on manual and cannot dynamically obtain equipment status in the existing technology, and realizes automation and dynamic asset management.

CN120182008APending Publication Date: 2025-06-20河南鑫智享电子科技有限公司北京分公司
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Patent Information

Application Number
CN202510250665.6
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-03-04
Publication Date
2025-06-20

AI Technical Summary

Technical Problem

In the prior art, asset management relies heavily on manual labor and is inefficient, cannot dynamically obtain the device status, and can only enter static information.

Method used

The standardized information of the target device is determined through the object model module, the sensors and Internet of Things components are used to obtain dynamic information, and the data processing module and object model template are combined to generate structured information and store it in the asset database.

Benefits of technology

It realizes automated asset entry and dynamic management, improves asset management efficiency, expands asset management functions, and can grasp the dynamic status of the equipment in real time.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses an asset dynamic management method and device, a readable medium and electronic equipment, and the method comprises the steps: determining the standardized information of target equipment through an object model module, and determining an object model template; determining dynamic information of the target equipment; utilizing a data processing module to determine structured information according to the standardized information, the dynamic information and the object model template; and storing the structured information in an asset database. The standardized information of the target equipment is determined through the object model module, so that automatic information input is realized; the dynamic information of the target equipment is obtained by using the sensor and the Internet of Things technology, so that the dynamic management of assets is realized; structured information is determined by using an object model template, so that the asset management system has better compatibility and adaptability; the asset management efficiency is improved, and the asset management function is expanded.
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Description

Technical Field

[0001] The present invention relates to the field of computer technology, and in particular, to an asset dynamic management method, device, readable medium, and electronic device. Background Art

[0002] Device asset management refers to a solution for counting, managing, and maintaining each device in some scenarios where a large number of electronic devices are distributed. For example, in large server rooms, Internet of Things systems, intelligent communities, and other scenarios, device asset management is indispensable. In large scenarios, the number of devices is numerous, the types are diverse, and situations such as old devices going offline and new devices going online often occur. Therefore, it is difficult to conduct asset management. For example, in some Internet of Things systems, there can be hundreds or even more various sensors. Even just completing the counting and entry is a very cumbersome task.

[0003] In the prior art, a manual entry method can be adopted. Obviously, this method has low efficiency and is difficult to meet the requirements. There is also a method in the prior art for asset entry by scanning RFID tags, which has relatively higher efficiency than pure manual entry, but it is just a variant of manual entry. The scanning of RFID is actually also manual, except that specific information no longer needs to be manually input.

[0004] That is to say, the asset scanning and entry methods in the prior art rely heavily on manual labor and have insufficient efficiency. Moreover, they can only enter established static information and cannot dynamically obtain the device status. Summary of the Invention

[0005] The present invention provides an asset dynamic management method, device, readable medium, and electronic device to achieve automated asset entry and dynamic asset management.

[0006] In a first aspect, the present invention provides an asset dynamic management method, including:

[0007] Using a physical model module to determine the standardized information of a target device and determine a physical model template;

[0008] Determining the dynamic information of the target device;

[0009] Using a data processing module to determine structured information according to the standardized information, the dynamic information, and the physical model template;

[0010] Storing the structured information in an asset database.

[0011] Preferably, the physical model template includes:

[0012] A data template in JSON format with custom extension fields.

[0013] Preferably, the determining the dynamic information of the target device includes:

[0014] Determining sensing information by using a sensor component;

[0015] Determining status information by using an Internet of Things component;

[0016] Determining the sensing information and the status information as the dynamic information of the target device.

[0017] Preferably, the using the data processing module to determine the structured information according to the standardized information, the dynamic information, and the physical model template includes:

[0018] Preprocessing the standardized information and the dynamic information, where the preprocessing includes data cleaning and data aggregation;

[0019] Using the physical model template to convert the preprocessed standardized information and the dynamic information into the structured information.

[0020] Preferably, the asset database includes:

[0021] A time series database or a relational database.

[0022] Preferably, it further includes:

[0023] Using a visualization module to visually display the structured information according to the physical model template.

[0024] Preferably, it further includes:

[0025] Invoking the structured information by using an API gateway and sending the structured information to a data management system.

[0026] In a second aspect, the present invention provides an asset dynamic management device, including:

[0027] A physical model module, configured to determine the standardized information of a target device by using the physical model module and determine a physical model template;

[0028] An information processing module, configured to determine the dynamic information of the target device; use a data processing module to determine structured information according to the standardized information, the dynamic information, and the physical model template;

[0029] A storage module, configured to store the structured information in an asset database.

[0030] In a third aspect, the present invention provides a readable medium, including execution instructions, when a processor of an electronic device executes the execution instructions, the electronic device executes the method as described in any one of the first aspect.

[0031] In a fourth aspect, the present invention provides an electronic device, including a processor and a memory storing execution instructions. When the processor executes the execution instructions stored in the memory, the processor executes the method according to any one of the first aspect.

[0032] The present invention provides an asset dynamic management method, device, readable medium and electronic device. By using the object model module to determine the standardized information of the target device, automatic information entry is achieved; by using sensors and Internet of Things technology to obtain the dynamic information of the target device, dynamic management of assets is realized; by using the object model template to determine the structured information, the asset management system has better compatibility and adaptability; the asset management efficiency is improved, and the asset management function is expanded.

[0033] The further effects of the above non-conventional preferred methods will be described in conjunction with specific embodiments below. BRIEF DESCRIPTION OF THE DRAWINGS

[0034] In order to more clearly illustrate the embodiments of the present invention or the existing technical solutions, the following will briefly introduce the drawings required for the description of the embodiments or the existing technical solutions. Obviously, the drawings in the following description are only some embodiments recorded in the present invention. For those of ordinary skill in the art, without creative efforts, other drawings can also be obtained based on these drawings.

[0035] Figure 1 A flowchart of an asset dynamic management method provided by an embodiment of the present invention;

[0036] Figure 2 A flowchart of another asset dynamic management method provided by an embodiment of the present invention;

[0037] Figure 3 A flowchart of another asset dynamic management method provided by an embodiment of the present invention;

[0038] Figure 4 A structural diagram of an asset dynamic management device provided by an embodiment of the present invention;

[0039] Figure 5 A structural diagram of an electronic device provided by an embodiment of the present invention. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0040] To make the objectives, technical solutions, and advantages of the present invention clearer, the technical solutions of the present invention will be clearly and completely described below in conjunction with specific embodiments and the corresponding drawings. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts shall fall within the scope of protection of the present invention.

[0041] Device asset management refers to a solution for counting, managing, and maintaining each device in some scenarios where a large number of electronic devices are distributed. For example, in large server rooms, Internet of Things systems, intelligent communities, and other scenarios, device asset management is indispensable. In large scenarios, the number of devices is numerous, the types are diverse, and situations such as old devices going offline and new devices going online often occur. Therefore, it is difficult to conduct asset management. For example, in some Internet of Things systems, there can be hundreds or even more various sensors. Even just completing the counting and entry is a very cumbersome task.

[0042] In the prior art, a manual entry method can be adopted. Obviously, this method has low efficiency and is difficult to meet the requirements. There is also a method in the prior art for asset entry by scanning RFID tags. By scanning RFID tags, various device information can be automatically obtained without manual filling. This method has relatively higher efficiency than pure manual entry. However, it is still a non-automated information entry, just a variant of manual entry. Because the scanning of RFID tags is actually also done manually, except that specific information no longer needs to be manually input. In complex scenarios, scanning RFID tags one by one also requires a large amount of manpower. The timeliness of information update also depends on the frequency of scanning RFID tags and cannot achieve full real-time.

[0043] In addition, the above asset management methods are all static asset management. That is to say, only certain devices in the system can be known, as well as the specific types, models, and other static information of the devices. However, dynamic information such as the working status, fault conditions, energy consumption, etc. of the devices that change dynamically over time cannot be grasped. This makes the device management solution have certain limitations and a single function.

[0044] That is to say, the asset scanning and entry methods in the prior art rely heavily on manual labor and have insufficient efficiency. Moreover, only established static information can be entered, and the device status cannot be dynamically obtained.

[0045] In view of this, the present invention provides a method for dynamic asset management. See Figure 1 As shown, it is a specific embodiment of the method for dynamic asset management provided by the present invention. In this embodiment, the method includes:

[0046] Step 101: Use the device model module to determine the standardized information of the target device and determine the device model template.

[0047] The device model technology is a model technology used to standardize the description of the attributes, functions, and behaviors of physical devices, which usually includes structured data such as device types, status parameters, control instructions, etc. In this embodiment, a device model module will be set in the asset management system, and various device information in the device model technology can be provided in this device model module. That is, the standardized information of the target device. It should be noted that the target device is the target of the asset management system, that is, a specific device that needs to be managed in the scenario. And in this scenario, there are usually a large number of target devices. In this embodiment, a specific target device can be taken as an example for elaboration. The standardized information is the static information of the target device, that is, the structured data such as device type, status parameter, control instruction, etc. that the device model module can provide.

[0048] On the other hand, the device model module can also provide a device model template. The so-called template is the key to "structuring" data. Only when the static information is arranged in a predefined format in the template can it form the so-called "standardization" or "structuring", which is more conducive to subsequent data processing, data compatibility in heterogeneous systems and other specific applications. The device model template can be specifically a data template in JSON format with custom extension fields. The existence of custom extension fields can adapt to the requirements of different scenarios. Using the extension fields, other types of information of the target device other than the above can be customarily recorded. The device model template can synchronize with other functional modules in the asset management system, and even with other heterogeneous systems, so as to facilitate the circulation and compatibility of relevant information of the target device.

[0049] Step 102: Determine the dynamic information of the target device.

[0050] The device model module mainly provides the static information of the target device. In this embodiment, in order to achieve dynamic management of the target device, the dynamic information of the target device should be further obtained. The so-called dynamic information is the real-time information generated during the work and operation of the target device and is often related to its specific functions. For example, working status, fault conditions, energy consumption and other information. Mastering the dynamic information is also very beneficial for more refined device management.

[0051] In this embodiment, the dynamic information is mainly determined through two specific ways: using the sensor component to determine the sensing information; using the Internet of Things component to determine the status information; and determining the sensing information and the status information as the dynamic information of the target device.

[0052] The sensor component can be considered as a sensor device specially deployed to the target device for device management. Its function is to monitor certain methods of the target device, such as monitoring temperature, noise and other information, so as to infer the working status. The IoT component can be considered as an information collection component that comes with the target device that supports the IoT function and has the function of reporting information. For example, many IoT devices can provide information about energy consumption, faults, etc. in themselves. In this embodiment, this information can also be used directly as part of the dynamic information.

[0053] The reporting of sensor information and status information can be achieved using the MQTT / HTTP protocol.

[0054] Step 103: Determine structured information according to the standardized information, the dynamic information and the object model template by using a data processing module.

[0055] The asset management system also includes a data processing module, which is dedicated to performing relevant processing and calculations on the relevant data information of the target device. In this embodiment, in order to effectively utilize the computing resources in the system, the edge computing node can be selected to complete the relevant calculations in step 103.

[0056] Specifically, the standardized information and the dynamic information may be preprocessed first. Preprocessing is often an essential step before real data processing, which can optimize data content, improve data quality, and filter out some data noise. It can also aggregate various types of data information from different channels so that they can be directly used for the next step of calculation. In other words, the preprocessing includes data cleaning and data aggregation.

[0057] After the preprocessing is completed, the physical model template is further used to convert the preprocessed standardized information and the dynamic information into the structured information. It should be noted that in this data processing process, the above-mentioned physical model template also needs to be involved. In other words, the processed data information, including standardized information (static information) and dynamic information, should be uniformly integrated into the physical model template so that it has a standardized data structure and covers both dynamic and static information of the target device. Only then can the structured information be determined. It can be considered that the structured information contains all kinds of information required by the asset management system.

[0058] Step 104: Store the structured information in an asset database.

[0059] By storing the structured information of each target device and updating the structured information in real time through the above method, the asset management system can grasp the dynamic / static information of the target device, which means that dynamic asset management is realized.

[0060] Specifically, the asset database can be a time-series database, such as the TDengine time-series database. This type of database supports high-concurrency writing and fast querying, with higher efficiency. In some cases, a relational database can be used, such as the traditional MySQL database. This embodiment does not limit this, and in actual applications, it can be selected according to requirements.

[0061] In the technical solution of this embodiment, on the one hand, device information can be automatically obtained through the device model technology, sensor components, and Internet of Things components, without manual entry or scanning of RFID tags, realizing automated device management. On the other hand, the management system can collect traditional static information and further collect dynamic information, realizing dynamic asset management.

[0062] It can be seen from the above technical solutions that the beneficial effects of this embodiment are as follows: The standardized information of the target device is determined through the device model module, realizing automated information entry; the dynamic information of the target device is obtained by using sensors and Internet of Things technology, realizing dynamic management of assets; the structured information is determined by using the device model template, making the asset management system have better compatibility and adaptability; improving the asset management efficiency and expanding the asset management function.

[0063] Figure 1 The shown is only the basic embodiment of the method described in the present invention. Based on it, with certain optimizations and expansions, other preferred embodiments of the method can also be obtained.

[0064] As Figure 2 shown, it is another specific embodiment of the asset dynamic management method described in the present invention. This embodiment is further described on the basis of the foregoing embodiment. In this embodiment, the method includes the following steps:

[0065] Step 201: Use the device model module to determine the standardized information of the target device and determine the device model template.

[0066] In this embodiment, a device model module will be set in the asset management system, and various device information in the device model technology can be provided in this device model module. That is, the standardized information of the target device. It should be noted that the target device is the target of the asset management system, that is, a specific device that needs to be managed in the scenario. And in this scenario, there are usually a large number of target devices. In this embodiment, a specific target device can be taken as an example for elaboration. The standardized information is the static information of the target device, that is, the structured data such as the device type, status parameters, and control instructions that the device model module can provide.

[0067] On the other hand, the physical model module can also provide physical model templates. The so-called template is the key to "structuring" data. Static information is displayed in the template according to the established format to form a simple "standardization" or "structuring", which is also more conducive to subsequent data processing, data compatibility in heterogeneous systems and other specific applications.

[0068] Step 202: Use the sensor component to determine the sensing information, and use the Internet of Things component to determine the state information.

[0069] Step 203: Determine the sensing information and the state information as dynamic information of the target device.

[0070] The physical model module mainly provides static information of the target device. In this embodiment, in order to achieve dynamic management of the target device, the dynamic information of the target device should be further obtained. The so-called dynamic information is the real-time information generated by the target device during operation and operation, which is often related to its specific functions. For example, information such as working status, fault conditions, energy consumption, etc. Mastering dynamic information is also very conducive to more refined equipment management.

[0071] The sensor component can be considered as a sensor device specially deployed to the target device for device management. Its function is to monitor certain methods of the target device, such as monitoring temperature, noise and other information, so as to infer the working status. The IoT component can be considered as an information collection component that comes with the target device that supports the IoT function and has the function of reporting information. For example, many IoT devices can provide information about energy consumption, faults, etc. in themselves. In this embodiment, this information can also be used directly as part of the dynamic information.

[0072] By integrating the above-mentioned sensor information and status information, the dynamic information of the template device can be obtained.

[0073] Step 204: pre-process the standardized information and the dynamic information, wherein the pre-processing includes data cleaning and data aggregation.

[0074] First, the standardized information and the dynamic information are preprocessed. Preprocessing is often an essential step before real data processing, which can optimize the data content, improve data quality, and filter out some data noise. It can also aggregate various types of data information from different channels so that they can be directly processed in the next step. In other words, the preprocessing includes data cleaning and data aggregation.

[0075] Step 205: Use the object model template to convert the preprocessed standardized information and the dynamic information into the structured information.

[0076] After the preprocessing is completed, the standardized information and the dynamic information after preprocessing are further converted into the structured information by using the object model template. It should be noted that in this data processing process, the above object model template also needs to be involved. That is to say, the processed data information, including standardized information (static information) and dynamic information, should be uniformly integrated into the object model template to make it have a standardized data structure and cover both dynamic / static aspects of the target device. Only then can the structured information be considered determined. It can be considered that the structured information contains various information required by the asset management system.

[0077] Step 206: Use the visualization module to visually display the structured information according to the object model template.

[0078] In this embodiment, the asset management system further includes a visualization module. And the above object model template can be synchronized to the visualization module. The visualization template can specifically build a visualization dashboard based on Grafana, supporting drag-and-drop configuration of asset monitoring views (such as device distribution heat maps, energy consumption trend charts). The already structured structured information can be directly applied in the visualization module, that is, directly visualize it using the template, so as to more intuitively implement the asset management function.

[0079] As Figure 3 shown, it is another specific embodiment of the asset dynamic management method of the present invention. This embodiment is further described on the basis of the foregoing embodiment. In this embodiment, the method includes the following steps:

[0080] Step 301: Use the object model module to determine the standardized information of the target device and determine the object model template.

[0081] In this embodiment, an object model module will be set in the asset management system, and various device information in the object model technology can be provided in this object model module. That is, the standardized information of the target device. It should be pointed out that the target device is the target of the asset management system, that is, a specific device that needs to be managed in the scenario. And in this scenario, there are usually a large number of target devices. In this embodiment, a specific target device can be taken as an example for elaboration. The standardized information is the static information of the target device, that is, the structured data such as device type, status parameters, and control instructions that the object model module can provide.

[0082] On the other hand, the physical model module can also provide physical model templates. The so-called template is the key to "structuring" data. Static information is displayed in the template according to the established format to form a simple "standardization" or "structuring", which is also more conducive to subsequent data processing, data compatibility in heterogeneous systems and other specific applications.

[0083] Step 302: Use the sensor component to determine the sensing information, and use the Internet of Things component to determine the state information.

[0084] Step 303: Determine the sensing information and the state information as dynamic information of the target device.

[0085] The physical model module mainly provides static information of the target device. In this embodiment, in order to achieve dynamic management of the target device, the dynamic information of the target device should be further obtained. The so-called dynamic information is the real-time information generated by the target device during operation and operation, which is often related to its specific functions. For example, information such as working status, fault conditions, energy consumption, etc. Mastering dynamic information is also very conducive to more refined equipment management.

[0086] The sensor component can be considered as a sensor device specially deployed to the target device for device management. Its function is to monitor certain methods of the target device, such as monitoring temperature, noise and other information, so as to infer the working status. The IoT component can be considered as an information collection component that comes with the target device that supports the IoT function and has the function of reporting information. For example, many IoT devices can provide information about energy consumption, faults, etc. in themselves. In this embodiment, this information can also be used directly as part of the dynamic information.

[0087] By integrating the above-mentioned sensor information and status information, the dynamic information of the template device can be obtained.

[0088] Step 304: pre-process the standardized information and the dynamic information, wherein the pre-processing includes data cleaning and data aggregation.

[0089] First, the standardized information and the dynamic information are preprocessed. Preprocessing is often an essential step before real data processing, which can optimize the data content, improve data quality, and filter out some data noise. It can also aggregate various types of data information from different channels so that they can be directly processed in the next step. In other words, the preprocessing includes data cleaning and data aggregation.

[0090] Step 305: Use the object model template to convert the preprocessed standardized information and the dynamic information into the structured information.

[0091] After the preprocessing is completed, the standardized information and the dynamic information after preprocessing are further converted into the structured information by using the object model template. It should be noted that in this data processing process, the above object model template also needs to be involved. That is to say, the processed data information, including the standardized information (static information) and the dynamic information, should be unified and integrated into the object model template, so that it has a standardized data structure and covers both the dynamic / static aspects of the target device. Only then can the structured information be considered determined. It can be considered that the structured information contains various information required by the asset management system.

[0092] Step 306, use the API gateway to retrieve the structured information and send the structured information to the data management system.

[0093] In this embodiment, the asset management system can be compatible and interact with other data management systems (heterogeneous systems), such as the property management system of the community, the work order system, etc. Specifically, the API gateway can be used to send the structured information to the data management system. When other data management systems support the same object model template, the structured information can be directly utilized. Thus, higher flexibility, as well as integration and compatibility functions, are achieved.

[0094] As Figure 4 shown, it is a specific embodiment of the asset dynamic management device of the present invention. The device in this embodiment is an entity device for executing Figures 1 to 3 the above method. Its technical solution is essentially the same as that of the above embodiment, and the corresponding descriptions in the above embodiment also apply to this embodiment. The device in this embodiment includes:

[0095] The object model module 401 is used to determine the standardized information of the target device by using the object model module and determine the object model template.

[0096] The information processing module 402 is used to determine the dynamic information of the target device; use the data processing module to determine the structured information according to the standardized information, the dynamic information and the object model template.

[0097] The storage module 403 is used to store the structured information in the asset database.

[0098] In addition, on the basis of the embodiment shown in Figure 3 preferably, it further includes:

[0099] The information processing module 402 includes:

[0100] The information acquisition unit 421 is used to determine the sensing information by using the sensor component; determine the status information by using the Internet of Things component;

[0101] A data preprocessing unit 422 is configured to preprocess the standardized information and the dynamic information. The preprocessing includes data cleaning and data aggregation;

[0102] A data operation unit 423 is configured to use the physical model template to convert the preprocessed standardized information and the dynamic information into the structured information.

[0103] It further includes:

[0104] A visualization module 404 is configured to visually display the structured information according to the physical model template.

[0105] A gateway module 405 is configured to retrieve the structured information by using an API gateway and send the structured information to a data management system.

[0106] Figure 5 It is a schematic structural diagram of an electronic device provided by an embodiment of the present invention. At the hardware level, the electronic device includes a processor, and optionally also includes an internal bus, a network interface, and a memory. Among them, the memory may include a memory, such as a high-speed random access memory (RAM), and may also include a non-volatile memory, such as at least one disk memory, etc. Of course, the electronic device may also include other hardware required for other services.

[0107] The processor, the network interface, and the memory can be interconnected through an internal bus. The internal bus can be an ISA (Industry Standard Architecture) bus, a PCI (Peripheral Component Interconnect) bus, or an EISA (Extended Industry Standard Architecture) bus, etc. The bus can be divided into an address bus, a data bus, a control bus, etc. For the sake of representation, Figure 5 only a bidirectional arrow is used in the figure, but it does not mean that there is only one bus or one type of bus.

[0108] The memory is used to store execution instructions. Specifically, the execution instructions are computer programs that can be executed. The memory can include a memory and a non-volatile memory, and provide the execution instructions and data to the processor.

[0109] In a possible implementation, the processor reads the corresponding execution instructions from the non-volatile memory into the memory and then runs them, or obtains the corresponding execution instructions from other devices to form an asset dynamic management device at the logical level. The processor executes the execution instructions stored in the memory to implement the asset dynamic management method provided in any embodiment of the present invention through the executed execution instructions.

[0110] The method executed by the asset dynamic management device provided in the above embodiments of the present invention Figure 4 can be applied to a processor or implemented by a processor. The processor may be an integrated circuit chip with signal processing capabilities. In the implementation process, each step of the above method can be completed by the integrated logic circuit in the hardware of the processor or the instructions in the form of software. The above processor may be a general-purpose processor, including a central processing unit (CPU), a network processor (NP), etc.; it may also be a digital signal processor (DSP), an application specific integrated circuit (ASIC), a field-programmable gate array (FPGA), or other programmable logic devices, discrete gate or transistor logic devices, discrete hardware components. It can implement or execute the various methods, steps, and logic block diagrams disclosed in the embodiments of the present invention. The general-purpose processor may be a microprocessor or the processor may also be any conventional processor, etc.

[0111] The steps of the method disclosed in combination with the embodiments of the present invention can be directly embodied as being executed and completed by a hardware decoding processor, or executed and completed by a combination of hardware and software modules in the decoding processor. The software module may be located in a mature storage medium in the art such as a random access memory, a flash memory, a read-only memory, a programmable read-only memory, or an electrically erasable programmable memory, a register, etc. This storage medium is located in the memory, and the processor reads the information in the memory and combines its hardware to complete the steps of the above method.

[0112] The embodiments of the present invention also propose a readable medium. When the execution instructions stored in the readable storage medium are executed by the processor of the electronic device, the electronic device can be enabled to execute the asset dynamic management method provided in any embodiment of the present invention, and is specifically used to execute the method as Figures 1 to 3 shown.

[0113] The electronic device described in each of the foregoing embodiments may be a computer.

[0114] Those skilled in the art should understand that the embodiments of the present invention can be provided as a method or a computer program product. Therefore, the present invention can be implemented in the form of a complete hardware embodiment, a complete software embodiment, or a combination of software and hardware.

[0115] The embodiments of the present invention are described in a progressive manner. For the same or similar parts among the embodiments, reference can be made to each other. Each embodiment focuses on the differences from other embodiments. In particular, for the device embodiments, since they are basically similar to the method embodiments, the description is relatively simple, and for the relevant parts, reference can be made to the partial description of the method embodiments.

[0116] It should also be noted that the term "comprising", "including" or any other variant thereof is intended to cover a non-exclusive inclusion, such that a process, method, commodity or device including a series of elements not only includes those elements but also includes other elements not explicitly listed, or further includes elements inherent to such process, method, commodity or device. Without further limitation, an element defined by the statement "comprising one..." does not exclude the existence of another identical element in the process, method, commodity or device including the said element.

[0117] The above are only the embodiments of the present invention and are not intended to limit the present invention. For those skilled in the art, various modifications and changes can be made to the present invention. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present invention shall be included within the scope of the claims of the present invention.

Claims

1. A method for dynamic asset management, characterized in that: include: Determine the standardized information of the target device using the object model module and determine the object model template; Determining dynamic information of the target device; Determine structured information using a data processing module according to the standardized information, the dynamic information and the object model template; The structured information is stored in an asset database.

2. The method according to claim 1, characterized in that: The object model template includes: A data template in JSON format with custom extension fields.

3. The method according to claim 1, characterized in that: Determining the dynamic information of the target device includes: Determining sensing information using a sensor assembly; Determine status information using IoT components; The sensing information and the state information are determined as dynamic information of the target device.

4. The method according to claim 1, characterized in that: The using a data processing module to determine the structured information according to the standardized information, the dynamic information and the object model template includes: Preprocessing the standardized information and the dynamic information, wherein the preprocessing includes data cleaning and data aggregation; The preprocessed standardized information and the dynamic information are converted into the structured information using the object model template.

5. The method according to claim 1, characterized in that: The asset database includes: Time series database, or relational database.

6. The method according to any one of claims 1 to 5, characterized in that: Also includes: The structured information is visualized and displayed using a visualization module according to the object model template.

7. The method according to any one of claims 1 to 5, characterized in that: Also includes: The structured information is retrieved using an API gateway and sent to a data management system.

8. An asset dynamic management device, characterized in that: include: A physical model module, used to determine standardized information of a target device using the physical model module and determine a physical model template; An information processing module, used to determine dynamic information of the target device; Determine structured information using a data processing module according to the standardized information, the dynamic information and the object model template; The storage module is used to store the structured information in the asset database.

9. A computer-readable storage medium storing a computer program, wherein the computer program is used to execute the asset dynamic management method according to any one of claims 1 to 7.

10. An electronic device, comprising: processor; a memory for storing instructions executable by the processor; The processor is used to read the executable instructions from the memory and execute the instructions to implement the asset dynamic management method described in any one of claims 1 to 7.