Automatic construction method and system of industrial and commercial energy storage all-in-one machine model

By designing automatic construction methods and systems on the industrial and commercial energy storage cloud platform, and using coding rules and communication message formats to automatically build an energy storage integrated machine model, the cumbersome process of creating energy storage substations is solved, and efficiency is improved and costs are reduced.

CN120125115APending Publication Date: 2025-06-10XUCHANG XUJI ELECTRIC ENERGY STORAGE TECH CO LTD +1
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Patent Information

Application Number
CN202510077658.0
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-01-17
Publication Date
2025-06-10

AI Technical Summary

Technical Problem

The process of creating energy storage substations on the industrial and commercial energy storage cloud platform is cumbersome, with a large number of human errors and repetitive work, resulting in high costs and low efficiency.

Method used

By designing an automatic construction method and system, using coding rules and communication message formats, combining information from energy storage projects, substations, all-in-one machines and equipment, an energy storage integrated machine model is automatically built to simplify the website construction process.

Benefits of technology

It improves the reusability of the energy storage all-in-one equipment model, simplifies the website construction operation steps, reduces labor costs, and reduces human errors and repetitive work during the website construction process.

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Patent Text Reader

Abstract

The invention discloses an automatic construction method and system of an industrial and commercial energy storage all-in-one machine. The method comprises the following steps: creating a set of coding rules by combining information of an energy storage project, an energy storage substation, an energy storage all-in-one machine and energy storage equipment; formulating a communication message format between the energy storage all-in-one machine and the energy storage cloud platform based on a coding rule; sending real-time data to the energy storage cloud platform based on the communication message format, and generating message content according to the real-time data; generating a communication model and a service model corresponding to the energy storage equipment according to the message content; combining an energy storage project, the energy storage substation, the energy storage all-in-one machine, a communication model and a service model to construct an energy storage all-in-one machine model template; and automatically constructing the energy storage all-in-one machine based on the energy storage all-in-one machine model template. The invention aims to improve the reusability of the energy storage all-in-one machine equipment model, simplify the operation step of building the energy storage substation on the energy storage cloud platform, and reduce the labor cost.
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Description

Technical Field

[0001] The present invention belongs to the technical field of energy storage, and particularly relates to a method and system for automatically constructing a model of an industrial and commercial energy storage integrated machine. Background Art

[0002] Industrial and commercial energy storage consists of multiple distributed energy storage integrated machines and an energy storage cloud platform, as Figure 1 shown. The energy storage integrated machine usually consists of devices such as a battery management system (BMS), a power conversion system (PCS), a dehumidifier, a liquid chiller, a grid-connected meter, DIDO devices, and an energy management system (EMS). The energy storage cloud platform is a collection of logical models of all energy storage sites and is the nerve center of industrial and commercial energy storage, maintaining the normal operation of energy storage devices. Creating a logical model of an energy storage substation on the energy storage cloud platform is very cumbersome and usually includes the following steps: clarifying the physical address and project information of the site; creating an energy storage substation and mounting it under the affiliated project; creating a logical model of the energy storage integrated machine under the energy storage substation; creating a communication model of all energy storage devices under the logical model of the energy storage integrated machine; and finally creating one-to-one service templates and communication links for the energy storage devices. As is well known, distributed deployment is one of the significant features of industrial and commercial energy storage. Theoretically, the station-building processes of different sites under the same project have high reusability. Therefore, how to reduce human errors in the station-building process, reduce a large amount of repetitive work, and save labor costs when creating an energy storage substation is a technical problem that urgently needs to be solved. Summary of the Invention

[0003] (1) Object of the Invention

[0004] The object of the present invention is to provide a method and system for automatically constructing a model of an industrial and commercial energy storage integrated machine. The method aims to improve the reusability of the device model of the energy storage integrated machine, simplify the operation steps of building an energy storage substation on the energy storage cloud platform, improve the efficiency of station building, and reduce labor costs.

[0005] (2) Technical Solution

[0006] To solve the above problems, the first aspect of the present invention provides a method for automatically constructing an industrial and commercial energy storage integrated machine. The method is used for an industrial and commercial energy storage system, which includes an energy storage cloud platform, an energy storage project, an energy storage substation, and an energy storage integrated machine. The energy storage integrated machine is communicatively connected to the energy storage cloud platform. The method includes:

[0007] Creating a set of coding rules by combining the information of the energy storage project, the energy storage substation, the energy storage integrated machine, and the energy storage devices;

[0008] Formulating a communication message format between the energy storage integrated machine and the energy storage cloud platform based on the coding rules;

[0009] Send real-time data to the energy storage cloud platform based on the communication message format, and generate message content according to the real-time data;

[0010] Generate a communication model and a business model corresponding to the energy storage device according to the message content;

[0011] Combine the energy storage project, the energy storage substation, the energy storage integrated machine, and the communication model and business model to construct an energy storage integrated machine model template;

[0012] Automatically construct an energy storage integrated machine based on the energy storage integrated machine model template.

[0013] Further, the information of the energy storage project, energy storage substation, energy storage integrated machine, and energy storage device includes: energy storage project number, energy storage substation number, energy storage integrated machine number and product model, energy storage device number and product model.

[0014] Further, the combining the energy storage project, energy storage substation, energy storage integrated machine, and the communication model and business model to construct an energy storage integrated machine model template includes:

[0015] Parse the message content through the energy storage cloud platform, and determine the energy storage integrated machine product model and energy storage project number according to the message content;

[0016] Mount the energy storage integrated machine product model under the energy storage project number;

[0017] Mount several energy storage devices with different product models under the energy storage integrated machine product model, and save the corresponding energy storage device product models;

[0018] Create an energy storage integrated machine model template from top to bottom based on the energy storage project number, energy storage substation number, energy storage integrated machine product model, energy storage device product model, and the communication model and business model, where one energy storage project corresponds to multiple energy storage substations.

[0019] Further, automatically constructing an energy storage integrated machine based on the energy storage integrated machine model template includes:

[0020] Determine the target energy storage integrated machine number of the newly built energy storage substation and the numbers and quantities of the target energy storage devices according to the energy storage project number;

[0021] Make an overall copy of the energy storage integrated machine model template, and perform corresponding replacement or deletion on the energy storage integrated machine number and energy storage device number in the copied template according to the target energy storage integrated machine number and the numbers and quantities of the target energy storage devices to obtain an energy storage integrated machine; where one energy storage integrated machine product model corresponds to multiple energy storage integrated machine numbers, and one energy storage device product model corresponds to multiple energy storage device numbers.

[0022] Further, the coding rules for the energy storage project number, the energy storage substation number, the energy storage integrated machine number, and the energy storage device number include the creation time and the creation number, and the creation number uses six - digit decimal system.

[0023] Further, the communication message format is: EMS (Energy Storage Integrated Machine Energy Management System) + energy storage integrated machine model + energy storage integrated machine number + corresponding identifier (realdata), where realdata represents the real data from the EMS.

[0024] Further, the real - time data includes custom data, the acquisition data of other energy storage devices, the calculation information of the energy storage integrated machine energy management system, and the calculation information of the energy storage cloud platform. Among them, the energy storage integrated machine is abstracted into a virtual device, and custom data is established based on the virtual device.

[0025] Further, the sending of real - time data to the energy storage cloud platform based on the communication message format includes:

[0026] Directly sent to the energy storage cloud platform by each energy storage integrated machine;

[0027] Or the real - time data is aggregated by each energy storage integrated machine to the host of the energy storage substation, and then sent to the energy storage cloud platform through the host of the energy storage substation.

[0028] The second aspect of the present invention provides an automatic construction system for an industrial and commercial energy storage integrated machine. The system is used for an industrial and commercial energy storage system, and the industrial and commercial energy storage system includes an energy storage cloud platform, an energy storage project, an energy storage substation, and an energy storage integrated machine. The energy storage integrated machine is communicatively connected to the energy storage cloud platform. The system includes:

[0029] A coding rule setting module, which is used to create a set of coding rules by combining the information of the energy storage project, the energy storage substation, the energy storage integrated machine, and the energy storage device;

[0030] A communication message format formulating module, which is used to formulate the communication message format between the energy storage integrated machine and the energy storage cloud platform based on the coding rules;

[0031] A real - time data sending module, which is used to send real - time data to the energy storage cloud platform based on the communication message format and generate the message content according to the real - time data;

[0032] A communication and service model generating module, which is used to generate the communication model and service model corresponding to the energy storage device according to the message content;

[0033] A template construction module, which is used to construct an energy storage integrated machine model template by combining the energy storage project, the energy storage substation, the energy storage integrated machine, and the communication model and service model;

[0034] An automatic construction module for automatically constructing an energy storage integrated machine based on the energy storage integrated machine model template.

[0035] Furthermore, the construction template module includes:

[0036] A parsing unit for parsing the message content through an energy storage cloud platform and determining the energy storage integrated machine product model and the energy storage project number according to the message content;

[0037] A first mounting unit for mounting the energy storage integrated machine product model under the energy storage project number;

[0038] A second mounting unit for mounting a plurality of energy storage devices of different product models under the energy storage integrated machine product model and saving the corresponding energy storage device product models;

[0039] A unit for creating an energy storage integrated machine model, which is used to create an energy storage integrated machine model template from top to bottom based on the energy storage project number, the energy storage substation number, the energy storage integrated machine product model, the energy storage device product model, and the communication model and the service model.

[0040] (III) Advantageous Effects

[0041] The above technical solutions of the present invention have the following beneficial technical effects: The present invention provides a method and a system for automatically constructing an industrial and commercial energy storage integrated machine model. The method first designs a set of coding rules for industrial and commercial energy storage devices and a communication message format, and creates a set of coding rules in combination with the information of the energy storage project, the energy storage substation, the energy storage integrated machine, and the energy storage device; formulates a communication message format between the energy storage integrated machine and the energy storage cloud platform based on the coding rules. The coding rules and the communication message format are the basis for the automatic construction of the industrial and commercial energy storage integrated machine device model; secondly, based on the communication message format, real-time data is sent to the energy storage cloud platform, and message content is generated according to the real-time data, and then a communication model and a service model corresponding to the energy storage device are generated according to the message content; finally, the automatic construction of the energy storage integrated machine device model is completed by using the designed coding rules, the energy storage integrated machine device model structure, and the data uploaded by the energy storage device. Specifically, an energy storage integrated machine model template is constructed in combination with the energy storage project, the energy storage substation, the energy storage integrated machine, and the communication model and the service model, and then valuable information in the energy storage integrated machine model template is mined to complete the automatic construction of the energy storage integrated machine device model. Using this method can improve the reusability of the energy storage integrated machine device model, simplify the operation steps of building an energy storage substation on the energy storage cloud platform, improve the efficiency of building a station, greatly reduce human errors in the process of building a station, reduce a large amount of repetitive work, and save labor costs. This method has strong reference significance in reducing the construction cost of the energy storage cloud platform and improving the performance of the cloud platform. Description of the Drawings

[0042] Figure 1 is a schematic structural diagram of an industrial and commercial energy storage cloud system in the prior art;

[0043] Figure 2 is a flowchart of a method for automatically constructing a model of an industrial and commercial energy storage integrated machine according to the present invention;

[0044] Figure 3 is a schematic diagram of a communication model of an energy storage device according to an embodiment of the present invention;

[0045] Figure 4 is a schematic diagram of a service model of an energy storage device according to an embodiment of the present invention;

[0046] Figure 5 is a schematic diagram of a template of a model of an industrial and commercial energy storage integrated machine according to an embodiment of the present invention;

[0047] Figure 6 is a schematic diagram of a process for constructing a template of a model of an energy storage integrated machine according to an embodiment of the present invention;

[0048] Figure 7 is a flowchart of a system for automatically constructing a model of an industrial and commercial energy storage integrated machine according to the present invention. Detailed implementation manners

[0049] To make the objectives, technical solutions and advantages of the present invention clearer and more understandable, the present invention will be further described in detail below in conjunction with the specific implementation manners and with reference to the accompanying drawings. It should be understood that these descriptions are exemplary only and are not intended to limit the scope of the present invention. In addition, in the following description, descriptions of well-known structures and technologies are omitted to avoid unnecessarily confusing the concepts of the present invention.

[0050] As Figure 2 shown, a first aspect of the present invention provides a method for automatically constructing an industrial and commercial energy storage integrated machine. Since the construction processes of different sites (energy storage substations) under the same energy storage project have high reusability, the present invention mines the necessary information required for automatic site construction, establishes a set of coding rules among the energy storage project - energy storage substation - energy storage integrated machine - energy storage device, establishes a set of communication message formats based on this coding rule, and then the energy storage cloud platform subscribes to the data published by the energy storage device in real time, and mines valuable information from it to complete the automatic construction of the energy storage integrated machine device model. Using this method can improve the reusability of the energy storage integrated machine device model, simplify the operation steps of building an energy storage substation on the energy storage cloud platform, improve the efficiency of site construction, greatly reduce human errors in the site construction process, reduce a large amount of repetitive work, and save labor costs. The method is used for an industrial and commercial energy storage system, and the system includes an energy storage cloud platform, an energy storage project, an energy storage substation, and an energy storage integrated machine. The energy storage integrated machine is communicatively connected to the energy storage cloud platform. The method includes:

[0051] S1. Create a set of coding rules by combining the information of energy storage projects, energy storage substations, integrated energy storage machines, and energy storage devices. The information of the energy storage project, energy storage substation, integrated energy storage machine, and energy storage device includes: energy storage project number, energy storage substation number, integrated energy storage machine number and product model, energy storage device number and product model. The rules are defined as follows: The energy storage project number is denoted as pCode, the energy storage substation number is denoted as sCode, the integrated energy storage machine number is denoted as cCode, the product model of the integrated energy storage machine is denoted as cabinetType, the energy storage device number is denoted as dCode, and the product model of the energy storage device is denoted as deviceType. Among them, the coding rules for the energy storage project number, energy storage substation number, integrated energy storage machine number, and the energy storage device number include the creation time and the creation number. The creation number uses six - digit decimal. The coding format of pCode, sCode, cCode, and dCode is "YYYYMMDDxxxxxx", where "YYYYMMDD" is the time to create the current number, and "xxxxxx" is a 6 - digit decimal number. The numeric part of pCode, sCode, cCode, and dCode generates numbers in an incrementing manner every day, which can ensure the uniqueness of pCode, sCode, cCode, and dCode. The definition of the product model cabinetType of the integrated energy storage machine must consider the internal devices of the integrated energy storage machine. Only when the product models of all internal devices of the integrated energy storage machine are exactly the same, can the product model of the integrated energy storage machine be the same. That is, when the product models of all devices inside the integrated energy storage machine are exactly the same, the product model of the integrated energy storage machine can be the same. If one of the devices changes the manufacturer and the model changes, then the integrated energy storage machine needs to re - define a new model. cabinetType is usually provided by the manufacturer of the integrated energy storage machine. The coding format of deviceType is "name + manufacturer + model", and the manufacturer + model can ensure the uniqueness of deviceType. The present invention is based on IOT communication technology, cloud platform technology, and database technology. In the construction method, it covers aspects such as coding rules, communication rules, data parsing, and data application. In addition, in the present invention, the six - digit incrementing decimal numbers in the coding format can be put into a set, and this set can be defined as S = {000000, ---------, 999999} (in an ordered arrangement); four sets S1, S2, S3, and S4 are respectively defined for the energy storage project, energy storage substation, integrated energy storage machine, and energy storage device. The definition of each set is the same as S. Each time a number is assigned to the energy storage project, energy storage substation, integrated energy storage machine, and energy storage device, the first number in the set is taken, and the used number is directly deleted from the set. At 0:00 every day, S1, S2, S3, and S4 are automatically restored (copy S).

[0052] S2. Develop the communication message format between the integrated energy storage machine and the energy storage cloud platform based on the encoding rules. The communication protocol between the internal EMS of the integrated energy storage machine and the energy storage cloud platform adopts, for example, the MQTT protocol. The communication message format is: EMS (Energy Management System of the integrated energy storage machine) + Model of the integrated energy storage machine + Serial number of the integrated energy storage machine + Corresponding identifier (i.e., ems / Product model of the integrated energy storage machine / Cabinet serial number / realdata).

[0053] S3. Send real-time data to the energy storage cloud platform based on the communication message format, and generate message content according to the real-time data. The reporting format of real-time data is shown as follows:[

[0054]

[0055]

[0056] In step S2, the field parsing of the real-time data message is shown in Table 1. The real-time data includes custom data, acquisition data of other energy storage devices, calculation information of the energy management system of the integrated energy storage machine, and calculation information of the energy storage cloud platform. Among them, the integrated energy storage machine is abstracted into a virtual device, and then custom data is established based on the virtual device. The present invention designs a custom virtual point table for the integrated energy storage machine abstracted into a virtual device, as shown in Table 2. These virtual points are all data with relatively high user attention in the industrial and commercial energy storage industry. Before there was no virtual point table, the statistical information of the energy storage project (project) and the energy storage substation (substation) could only be calculated from the historical data of the energy storage device. However, when there are many energy storage cabinets under the substation and the data statistical period is long, the response speed of the cloud platform is very slow. On the contrary, the virtual point data of the integrated energy storage machine is directly used to calculate the statistical information of the project and the substation, reducing the time complexity of the calculation process, improving the response speed of the cloud platform, and enhancing the user experience.[

[0057] Table 1 Field parsing of the real-time data message

[0058] Field Description Type pCode Item Number String sCode Substation Number String cCode Energy Storage Integrated Machine Number String cabinetType Product Model of Energy Storage Integrated Machine String dataType Data Type realdata String upType Upload Method: 0 Periodic, 1 Change Integer mode Master-Slave Mode: 0 Slave, 1 Master Integer datas Data Object Array dCode Energy Storage Device Number String deviceType Product Model of Energy Storage Device String dTime Data Time String tags "Measuring Point Number”: Value Json

[0059] Table 2 Virtual point table of the industrial and commercial integrated energy storage machine

[0060]

[0061]

[0062] In addition, sending real-time data to the energy storage cloud platform based on the communication message format in step S2 includes the following two methods:[

[0063] (1) Send directly to the energy storage cloud platform through each energy storage integrated machine. That is, each substation energy storage integrated machine sends local data, which is suitable for topological networks with more slaves. One energy storage project corresponds to multiple energy storage substations, and one energy storage substation corresponds to multiple energy storage integrated machines.

[0064] (2) Real-time data is aggregated to the energy storage substation host through each energy storage integrated machine, and then sent to the energy storage cloud platform through the energy storage substation host. That is, all substation data is sent by the substation host, and the data processing pressure of the host is relatively large, which is suitable for a topology network with fewer slaves.

[0065] S4, generating a communication model and a business model corresponding to the energy storage device according to the message content. Figure 3 and Figure 4 As shown, the communication model and business model of the energy storage device are defined respectively according to the content of the message, the virtual point table of the energy storage integrated device in step S2 is imported into the energy storage cloud platform, and the communication model and business model of the energy storage integrated device are generated. The communication model is composed of a point table of all data measurement points of the energy storage device. The business model and the communication model are in a one-to-one correspondence. The business model is attached to the communication model through the measurement point number, measurement point name and type field, and is used to define the behavior of the data points in the communication model. The whole composed of the communication model and the business model corresponds one-to-one to the product model (deviceType) of the energy storage device. The communication model is the basic unit for building the energy storage integrated device model. It only needs to be created once in the entire life cycle. Therefore, it is the best choice to import the file by the pan-tilt platform to automatically parse the file content and create the communication model, and the cloud platform actively creates the accompanying business model when creating the communication model.

[0066] S5, building an energy storage integrated machine model template by combining the energy storage project, the energy storage substation, the energy storage integrated machine, the communication model and the business model, Figure 5 This is a schematic diagram of the energy storage integrated machine model template. The construction process specifically includes:

[0067] S51, parsing the message content through the energy storage cloud platform, and determining the energy storage integrated device product model and energy storage project number according to the message content;

[0068] S52, mounting the energy storage integrated device product model under the energy storage project number;

[0069] S53, mounting several energy storage devices of different product models under the product model of the integrated energy storage device, and saving the corresponding product models of the energy storage devices;

[0070] S54, creating an energy storage integrated machine model template from top to bottom based on the energy storage project number, the energy storage substation number, the energy storage integrated machine product model, the energy storage equipment product model and the communication model and the business model.

[0071] Figure 6 For an embodiment of the process for creating a template for an integrated energy storage machine model, the computing service of the energy storage cloud platform listens for subscription messages with the topic "ems / * / cabinet number / realdata", where "*" is a wildcard for the product model of the integrated energy storage machine. The computing service obtains the product model (cabinetType) of the integrated energy storage machine from the subscription message and queries whether the current model already exists. If it does not exist, the integrated energy storage machine product (cabinetType) is created; then it queries whether energy storage devices (deviceType) are mounted under the integrated energy storage machine product cabinetType in the subscription message. If not, deviceType is mounted under cabinetType; finally, it queries whether the integrated energy storage machine product cabinetType is mounted under the project pCode in the subscription message. If not, cabinetType is mounted under pCode. This step can visually display all product models of the available integrated energy storage machines under a specific project.

[0072] S6. Automatically construct an integrated energy storage machine based on the template of the integrated energy storage machine model, specifically including:

[0073] S61. Determine the target integrated energy storage machine number, the numbers and quantities of the target energy storage devices of the newly built energy storage substation according to the energy storage project number;

[0074] S62. Make an overall copy of the template of the integrated energy storage machine model, and perform corresponding replacement or deletion on the integrated energy storage machine number and the energy storage device number in the copied template according to the target integrated energy storage machine number, the numbers and quantities of the target energy storage devices, to obtain an integrated energy storage machine. One product model of the integrated energy storage machine corresponds to multiple integrated energy storage machine numbers, and one product model of the energy storage device corresponds to multiple energy storage device numbers. The specific process of this step is as follows: After completing the construction of the integrated energy storage machine device model, the cloud platform computing service extracts the project number pCode, substation number sCode, integrated energy storage machine number cCode, and energy storage device number dCode from the subscription message, and then creates a physical model of project - substation - integrated energy storage machine - energy storage device from top to bottom and fills in the numbers pCode, sCode, cCode, and dCode. The detailed information of the project and the substation can be automatically recognized and filled by the cloud platform computing service by expanding the message content in step S3, or can be completed by manual supplementation. The physical models of the integrated energy storage machine and the energy storage device are derived from the instantiation of the communication model and the business model. The integrated energy storage machine number and the energy storage device number are unique after the template instantiation.

[0075] In addition, such as Figure 7As shown in the figure, the second aspect of the present invention provides an automatic construction system for an industrial and commercial energy storage integrated machine. The system is used for an industrial and commercial energy storage system, which includes an energy storage cloud platform, an energy storage project, an energy storage substation, and an energy storage integrated machine. The energy storage integrated machine is communicatively connected to the energy storage cloud platform. The system includes:

[0076] A coding rule setting module 21, configured to create a set of coding rules by combining the information of the energy storage project, the energy storage substation, the energy storage integrated machine, and the energy storage device;

[0077] A communication message format formulating module 22, configured to formulate the communication message format between the energy storage integrated machine and the energy storage cloud platform based on the coding rules;

[0078] A real-time data sending module 23, configured to send real-time data to the energy storage cloud platform based on the communication message format and generate message content according to the real-time data;

[0079] A communication and service model generating module 24, configured to generate a communication model and a service model corresponding to the energy storage device according to the message content;

[0080] A template construction module 25, configured to construct an energy storage integrated machine model template by combining the energy storage project, the energy storage substation, the energy storage integrated machine, and the communication model and the service model;

[0081] An automatic construction module, configured to automatically construct an energy storage integrated machine based on the energy storage integrated machine model template.

[0082] Further, the template construction module 25 includes:

[0083] An analysis unit, configured to analyze the message content through the energy storage cloud platform and determine the product model of the energy storage integrated machine and the energy storage project number according to the message content;

[0084] A first mounting unit, configured to mount the product model of the energy storage integrated machine under the energy storage project number;

[0085] A second mounting unit, configured to mount energy storage devices of several different product models under the product model of the energy storage integrated machine and save the product models of the corresponding energy storage devices;

[0086] An energy storage integrated machine model creation unit, configured to create an energy storage integrated machine model template from top to bottom based on the energy storage project number, the energy storage substation number, the product model of the energy storage integrated machine, the product model of the energy storage device, and the communication model and the service model.

[0087] The present invention has been described above with reference to the embodiments of the present invention. However, these embodiments are for illustrative purposes only and are not intended to limit the scope of the present invention. The scope of the present invention is defined by the appended claims and their equivalents. Without departing from the scope of the present invention, those skilled in the art can make various substitutions and modifications, and these substitutions and modifications should fall within the scope of the present invention. Although the embodiments of the present invention have been described in detail, it should be understood that various changes, substitutions, and alterations can be made to the embodiments of the present invention without departing from the spirit and scope of the present invention. Obviously, the above embodiments are merely examples given for clear illustration and are not limitations on the embodiments. For those of ordinary skill in the art, other different forms of changes or variations can be made based on the above description. It is not necessary and impossible to enumerate all the embodiments here. And the obvious changes or variations derived therefrom are still within the protection scope of the present invention. Those skilled in the art should understand that the embodiments of the present invention can be provided as a method, a system, or a computer program product. Therefore, the present invention can take the form of a complete hardware embodiment, a complete software embodiment, or an embodiment combining software and hardware aspects. Moreover, the present invention can take the form of a computer program product implemented on one or more computer-usable storage media (including but not limited to disk memory, CD-ROM, optical memory, etc.) containing computer-usable program code. The present invention is described with reference to the flowcharts and / or block diagrams of methods, devices (systems), and computer program products according to the embodiments of the present invention. It should be understood that each flow and / or block in the flowchart and / or block diagram, as well as the combination of flows and / or blocks in the flowchart and / or block diagram, can be implemented by computer program instructions. These computer program instructions can be provided to the processor of a general-purpose computer, a special-purpose computer, an embedded processor, or other programmable data processing devices to generate a machine, so that the instructions executed by the processor of the computer or other programmable data processing devices generate a device for realizing the functions specified in one flow Figure 1 one flow or multiple flows and / or blocks Figure 1 or multiple flows and / or blocks and / or one block or multiple blocks. These computer program instructions can also be stored in a computer-readable memory that can direct a computer or other programmable data processing device to work in a specific manner, so that the instructions stored in the computer-readable memory generate a manufactured article including an instruction device. These computer program instructions can also be loaded onto a computer or other programmable data processing device, so that a series of operation steps are executed on the computer or other programmable device to generate a computer-implemented process, and thus the instructions executed on the computer or other programmable device provide for realizing the process in Figure 1 one flow or multiple flows and / or blocks Figure 1Steps of the functions specified in one or more boxes. Those of ordinary skill in the art can understand that all or part of the steps in implementing the methods of the above embodiments can be completed by instructing relevant hardware through a program. The said program can be stored in a computer-readable storage medium. When the program is executed, it includes the processes of the embodiments of the above various methods. Among them, the said storage medium can be a magnetic disk, an optical disk, a read-only memory (ROM for short), a random access memory (RAM for short), etc. The steps in the method of the embodiments of the present invention can be adjusted, combined, and deleted according to actual needs. The modules in the system of the embodiments of the present invention can be combined, divided, and deleted according to actual needs.

Claims

1. A method for automatically constructing an industrial and commercial energy storage integrated machine, characterized in that: The method is used for an industrial and commercial energy storage system, the system includes an energy storage cloud platform, an energy storage project, an energy storage substation, and an energy storage integrated machine, the energy storage integrated machine is communicatively connected to the energy storage cloud platform, and the method includes: Create a set of coding rules by combining information on energy storage projects, energy storage substations, integrated energy storage devices, and energy storage equipment; Formulate a communication message format between the energy storage integrated machine and the energy storage cloud platform based on the coding rule; Sending real-time data to the energy storage cloud platform based on the communication message format, and generating message content according to the real-time data; Generate a communication model and a business model corresponding to the energy storage device according to the message content; Combining the energy storage project, the energy storage substation, the integrated energy storage machine, the communication model and the business model, a model template of the integrated energy storage machine is constructed; The integrated energy storage device is automatically constructed based on the integrated energy storage device model template.

2. The automatic construction method of the industrial and commercial energy storage integrated machine according to claim 1, characterized in that: The information of the energy storage project, energy storage substation, integrated energy storage machine and energy storage equipment includes: energy storage project number, energy storage substation number, integrated energy storage machine number and product model, energy storage equipment number and product model.

3. The automatic construction method of the industrial and commercial energy storage integrated machine according to claim 2 is characterized in that: The construction of the energy storage integrated machine model template by combining the energy storage project, the energy storage substation, the energy storage integrated machine, the communication model and the business model includes: Parsing the message content through the energy storage cloud platform, and determining the energy storage integrated device product model and energy storage project number according to the message content; Mount the energy storage integrated device product model under the energy storage project number; Mount several energy storage devices of different product models under the energy storage integrated machine product model, and save the corresponding energy storage device product model; An energy storage integrated machine model template is created from top to bottom based on the energy storage project number, the energy storage substation number, the energy storage integrated machine product model, the energy storage device product model, and the communication model and business model.

4. The automatic construction method of the industrial and commercial energy storage integrated machine according to claim 2, characterized in that: Automatically constructing an integrated energy storage device based on the integrated energy storage device model template includes: Determine the target energy storage integrated device number and the target energy storage device number and quantity of the new energy storage substation according to the energy storage project number; The integrated energy storage machine model template is copied as a whole, and the integrated energy storage machine number and the energy storage device number in the copied template are replaced or deleted accordingly according to the target integrated energy storage machine number and the number and quantity of the target energy storage device, so as to obtain the integrated energy storage machine; One energy storage integrated machine product model corresponds to multiple energy storage integrated machine numbers, and one energy storage device product model corresponds to multiple energy storage device numbers.

5. The automatic construction method of the industrial and commercial energy storage integrated machine according to claim 2, characterized in that: The coding rules of the energy storage project number, the energy storage substation number, the energy storage integrated machine number and the energy storage device number include a creation time and a creation number, and the creation number is in six-digit decimal.

6. The automatic construction method of the industrial and commercial energy storage integrated machine according to claim 2, characterized in that: The communication message format is: EMS+energy storage integrated machine model+energy storage integrated machine number+corresponding identifier.

7. The automatic construction method of the industrial and commercial energy storage integrated machine according to claim 2, characterized in that: The real-time data includes custom data, collected data from other energy storage devices, calculation information of the energy storage integrated machine energy management system and calculation information of the energy storage cloud platform, wherein the energy storage integrated machine is abstracted into a virtual device and custom data is established based on the virtual device.

8. The automatic construction method of the industrial and commercial energy storage integrated machine according to claim 2, characterized in that: The sending of real-time data to the energy storage cloud platform based on the communication message format includes: Send directly to the energy storage cloud platform through each energy storage integrated machine; Or the real-time data is aggregated to the energy storage substation host through each energy storage integrated machine, and then sent to the energy storage cloud platform through the energy storage substation host.

9. An automatic construction system for an industrial and commercial energy storage device, characterized in that: The system is used for industrial and commercial energy storage systems, which include energy storage cloud platforms, energy storage projects, energy storage substations, and energy storage integrated machines. The energy storage integrated machines are communicatively connected to the energy storage cloud platforms. The system includes: Setting up a coding rule module to create a set of coding rules based on the information of energy storage projects, energy storage substations, energy storage integrated devices and energy storage equipment; A communication message formatting module, used to formulate the communication message format between the energy storage integrated machine and the energy storage cloud platform based on the encoding rules; A real-time data sending module, used to send real-time data to the energy storage cloud platform based on the communication message format, and generate message content according to the real-time data; Generate a communication and business model module, used to generate a communication model and a business model corresponding to the energy storage device according to the message content; A template construction module is used to construct an energy storage integrated machine model template by combining the energy storage project, the energy storage substation, the energy storage integrated machine, the communication model and the business model; An automatic construction module is used to automatically construct an integrated energy storage device based on the integrated energy storage device model template.

10. The automatic construction system of the industrial and commercial energy storage integrated machine according to claim 9, characterized in that: The template building module includes: A parsing unit, used to parse the message content through the energy storage cloud platform, and determine the energy storage integrated machine product model and energy storage project number according to the message content; A first mounting unit, used to mount the product model of the energy storage integrated device under the energy storage project number; A second mounting unit, used to mount several energy storage devices of different product models under the product model of the energy storage integrated machine, and save the corresponding product model of the energy storage device; An energy storage integrated machine model unit is created, which is used to create an energy storage integrated machine model template from top to bottom based on the energy storage project number, the energy storage substation number, the energy storage integrated machine product model, the energy storage equipment product model, and the communication model and business model.