Business expansion installation processing system and method

By automating data uploading from electricity meter components and transformer terminal components, the problem of poor information entry accuracy in business expansion applications has been solved. This has enabled automated entry of business expansion application information, improved entry accuracy and efficiency, and avoided electricity bill disputes.

CN122113873APending Publication Date: 2026-05-29GUANGDONG POWER GRID CO LTD CHAOZHOU POWER SUPPLY BUREAU

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
GUANGDONG POWER GRID CO LTD CHAOZHOU POWER SUPPLY BUREAU
Filing Date
2026-01-12
Publication Date
2026-05-29

AI Technical Summary

Technical Problem

The current process of business expansion and installation relies on manual data entry, which leads to poor accuracy, errors, and disputes over electricity bills.

Method used

By configuring electricity meter components and transformer terminal components, automated data uploading is achieved, and the main station automatically completes the entry of business expansion application work order information, avoiding manual errors.

Benefits of technology

This improved the accuracy and efficiency of information entry and prevented disputes over electricity bills.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

Embodiments of the present application provide a business expansion installation processing system and method. The system comprises: an electric energy meter component, configured to obtain a user sign bit, upload the user sign bit to a master station through a transformer terminal component, and bind the user sign bit with a user who initiates a business expansion installation request; the master station, configured to obtain a business expansion installation work order corresponding to the user sign bit, and send preset verification information in the business expansion installation work order to the electric energy meter component through the transformer terminal component; the electric energy meter component, further configured to upload, in a case where the preset verification information passes verification, the user sign bit and an electric energy meter identifier of an electric energy meter that establishes a binding relationship with the electric energy meter component to the master station through the transformer terminal component; and the master station, configured to complete information filling in the business expansion installation work order based on the electric energy meter identifier. The scheme can realize automatic input of information in the business expansion installation work order, and improve information input accuracy and efficiency.
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Description

Technical Field

[0001] This application relates to the field of electrical technology, and in particular to a business expansion application processing system and method. Background Technology

[0002] Business expansion application refers to the process by which power supply companies, after a customer applies for electricity, formulate a reasonable power supply plan based on the customer's electricity needs and the status of the power supply network. This process requires the input of various data to facilitate subsequent management of the user's electricity consumption and prevent issues such as electricity bill disputes.

[0003] Currently, the entry of system information during the business expansion application process mainly relies on manual labor.

[0004] However, the existing manual data entry method has poor accuracy and is prone to errors, which can easily lead to disputes over electricity bills. Summary of the Invention

[0005] This application provides a business expansion application processing system and method to automatically input business expansion application information, improve the accuracy of information input, and avoid electricity bill disputes.

[0006] In a first aspect, embodiments of this application provide a business expansion application processing system, including: a main station, an energy meter assembly, and a transformer terminal assembly, wherein the energy meter assembly is connected to the transformer terminal assembly, and the transformer terminal assembly is connected to the main station;

[0007] The electricity meter component is used to obtain the user identifier bit and upload it to the main station through the transformer terminal component. The user identifier bit is bound to the user who initiated the business expansion application request.

[0008] The main station is used to obtain the business expansion application work order corresponding to the user flag bit, and send the preset verification information in the business expansion application work order to the energy meter component through the transformer terminal component.

[0009] The electricity meter component is also used to upload the user flag bit and the electricity meter identifier of the electricity meter that is bound to the electricity meter component to the main station through the distribution terminal component when the preset verification information passes the verification.

[0010] The main station is used to fill in the information in the business expansion application work order based on the electricity meter identifier.

[0011] In one possible implementation, the main station is further configured to:

[0012] Obtain user information that requests the business expansion application, wherein the user information includes at least one of user ID, user name, and user address;

[0013] At least one of the user ID, user name, and user address is identified as the preset verification information and entered into the business expansion application work order.

[0014] In one possible implementation, the electricity meter assembly is further used for:

[0015] The display interface of the electricity meter component displays at least one of the user number, user name, and user address;

[0016] Receive a first input, and if the first input is a preset input, determine that the preset verification information passes the verification.

[0017] In one possible implementation, the main station is specifically used for:

[0018] If a target electricity meter identifier matching the electricity meter identifier exists in the electricity meter identifier pool, the electricity meter identifier is entered into the business expansion application work order.

[0019] In one possible implementation, the electricity meter assembly is further used for:

[0020] A prompt message is displayed on the display interface to indicate that the information in the business expansion application work order has been filled in.

[0021] In one possible implementation, the electricity meter assembly is also used to send an automatic power information filling signal to the transformer terminal assembly when the power information is not filled in the business expansion application work order.

[0022] The transformer terminal component is used to respond to the power information automatic filling signal, obtain the transformer terminal identifier of the transformer terminal bound to the transformer terminal component, and upload it to the main station.

[0023] The main station is also used to supplement the information in the business expansion application work order according to the distribution transformer terminal identifier.

[0024] In one possible implementation, the substation terminal component is further configured to:

[0025] In response to receiving the backup address autofill signal sent by the energy meter component, a mileage confirmation signal is sent to the energy meter component;

[0026] The mileage reply signal sent by the electricity meter component to the distribution terminal component based on the mileage confirmation signal is obtained.

[0027] Based on the sending time of the mileage confirmation signal and the receiving time of the mileage reply signal, the location distance between the energy meter and the distribution transformer terminal in the distribution area is determined;

[0028] The location distance is uploaded to the main station, and the location distance is used by the main station to determine the backup address of the electricity meter and enter it into the business expansion application work order.

[0029] In one possible implementation, the main station is specifically used for:

[0030] Obtain a real-view map and a topology map of the transformer area, wherein the topology map includes multiple branches and multiple location points for installing the electricity meter;

[0031] Along each branch line on the topology map of the transformer area, at least one candidate location point is determined from the location points;

[0032] Based on the real-view map and the electricity address, the target location is confirmed from at least one candidate location point;

[0033] Based on the real-scene map, the location of the utility pole closest to the target location is selected as the backup address.

[0034] Secondly, embodiments of this application provide a business expansion application processing method, applied to electricity meter components, the method comprising:

[0035] The user identifier is uploaded to the main station through the terminal component of the distribution station. The user identifier is bound to the user who initiated the business expansion application request.

[0036] Obtain the preset verification information issued by the main station based on the user flag bit;

[0037] In response to the preset verification information passing the verification, the user flag bit and the energy meter identifier of the energy meter that is bound to the energy meter component are uploaded to the main station through the distribution terminal component.

[0038] Thirdly, this application provides a business expansion application processing method, applied to a main station, the method comprising:

[0039] Obtain the user flag bit uploaded by the electricity meter component, and the business expansion application work order corresponding to the user flag bit;

[0040] The preset verification information in the business expansion application work order is sent to the energy meter component through the transformer terminal component.

[0041] In response to receiving the energy meter identifier and the distribution transformer terminal identifier of the distribution transformer terminal bound to the distribution transformer terminal component sent by the distribution transformer terminal component, the information in the business expansion application work order is supplemented. The energy meter identifier is sent by the energy meter component to the distribution transformer terminal component when the preset verification information passes the verification.

[0042] The business expansion application processing system and method provided in this application, by configuring an energy meter component bound to an energy meter and a distribution transformer terminal component fixedly installed at the distribution transformer terminal, uploads various data information to the main station through the energy meter component and the distribution transformer terminal component, which enables the main station to automatically complete the information entry in the business expansion application work order, avoids errors and mis-entry in manual entry, and improves the accuracy and efficiency of information entry. Attached Figure Description

[0043] The accompanying drawings, which are incorporated in and form part of this specification, illustrate embodiments consistent with this application and, together with the description, serve to explain the principles of this application.

[0044] Figure 1 A schematic diagram of the structure of the business expansion application processing system provided in the embodiments of this application;

[0045] Figure 2 This is a schematic diagram of the hardware structure of the energy meter component provided in the embodiments of this application;

[0046] Figure 3 This is a schematic diagram of the hardware structure of the transformer terminal component provided in the embodiments of this application;

[0047] Figure 4 A flowchart illustrating the business expansion application processing method provided for this application;

[0048] Figure 5 This is a flowchart illustrating the business expansion application processing method provided in this embodiment of the application.

[0049] The accompanying drawings illustrate specific embodiments of this application, which will be described in more detail below. These drawings and descriptions are not intended to limit the scope of the concept in any way, but rather to illustrate the concept of this application to those skilled in the art through reference to particular embodiments. Detailed Implementation

[0050] Exemplary embodiments will now be described in detail, examples of which are illustrated in the accompanying drawings. When the following description relates to the drawings, unless otherwise indicated, the same numbers in different drawings denote the same or similar elements. The embodiments described in the following exemplary embodiments do not represent all embodiments consistent with this application. Rather, they are merely examples of apparatuses and methods consistent with some aspects of this application as detailed in the appended claims.

[0051] Business expansion applications are mainly divided into two types: new business expansion applications and capacity expansion applications. New business expansion applications refer to the user's first application to the power supply company to establish a power supply relationship, while capacity expansion applications refer to the user's original power capacity being insufficient to meet the demand, and the user applying to increase the power capacity. When applying for new installation or capacity expansion, the user needs to provide the power supply company with detailed user file information, including the location of the power supply, the purpose of the power supply, the nature of the power supply, the list of electrical equipment, the load of the power supply, and the power supply plan. This user file information needs to be entered into the power supply company's operation system. Traditional information entry methods mainly rely on manual entry, which has the following three problems: (1) The power supply point (i.e., the distribution transformer area) is entered incorrectly as another area, resulting in the failure of automatic meter reading for the user; (2) The power address is not clearly standardized and is not detailed enough, making it difficult for the power supply personnel to find the location of the power user later, which is not conducive to the later work; (3) The electricity meter asset number is entered incorrectly, resulting in some users having their electricity meter assets reversed, which ultimately leads to electricity bill disputes.

[0052] To address the aforementioned issues, this application provides a business expansion application processing system and method. By configuring an energy meter component bound to an energy meter and a distribution transformer terminal component fixedly installed at the distribution transformer terminal, various data information can be uploaded to the main station through the energy meter component and the distribution transformer terminal component. This allows the main station to automatically complete the information entry in the business expansion application work order, avoiding errors and mis-entry caused by manual entry, and improving the accuracy and efficiency of information entry.

[0053] The technical solution of this application and how the technical solution of this application solves the above-mentioned technical problems are described in detail below with specific embodiments. These specific embodiments can be combined with each other, and the same or similar concepts or processes may not be described again in some embodiments. The embodiments of this application will now be described with reference to the accompanying drawings.

[0054] Figure 1 This is a schematic diagram of the business expansion application processing system provided in this application embodiment. This system can automatically input user profile information for low-voltage business expansion applications. For example... Figure 1 As shown, it includes a main station 11, an energy meter assembly 12, and a transformer terminal assembly 13. The energy meter assembly is connected to the transformer terminal assembly, and the transformer terminal assembly is connected to the main station.

[0055] The system involves a one-to-one information binding between the electricity meter components and the electricity meter itself, with data transmission via carrier communication. Similarly, the distribution transformer terminal components are also bound one-to-one with the distribution transformer terminal. These terminal components communicate with the electricity meter components via carrier communication and with the main station via wireless communication. The main station is directly connected to the power marketing system, allowing users to directly input relevant power supply information, backup address information, and electricity meter asset numbers into their low-voltage business expansion application forms.

[0056] In addition, the electricity meter components are recyclable, while the distribution transformer terminal components are fixedly installed at the distribution transformer terminal. Communication between the electricity meter components and the distribution transformer terminal components uses the user identifier generated by the electricity marketing system as the identification identifier, while communication between the main station and the distribution transformer terminal components uses the asset number of the distribution transformer terminal as the identification identifier.

[0057] Figure 2 This is a schematic diagram of the hardware structure of the electricity meter component provided in the embodiments of this application, such as... Figure 2 As shown, the electricity meter assembly 20 includes a power interface 21, a microcomputer module 22, a button module 23, a carrier communication module 24, and an LCD display screen 25.

[0058] in, Figure 2 The button module is used for manual input of the electricity meter's asset number. Figure 3 The button module is used for manual input of the asset number of the distribution transformer terminal in the transformer area.

[0059] The microcomputer module is used to process input data signals and output the processing results to various communication modules for transmission and to the LCD screen for display.

[0060] in, Figure 2 The LCD screen in the device is used to display user-related file information such as user number, user name, user address (the main address filled in manually), and electricity meter asset number.

[0061] With respect to the structural type of the electricity meter components, Figure 3 This is a schematic diagram of the hardware structure of the transformer terminal component provided in the embodiments of this application, such as... Figure 3 As shown, the terminal component 30 includes a power interface 31, a microcomputer module 32, a carrier communication module 33, a wireless communication module 34, a button module 35, and an LCD display screen 36. Among these, Figure 2 The power interface and Figure 3 The power interfaces in the transformer can all be connected to the low-voltage side power supply of the distribution transformer area. This serves two purposes: first, to provide power to the energy meter components and the terminal components of the distribution area; and second, to use the power interface to connect to the low-voltage side line of the distribution area as a transmission path for carrier communication.

[0062] Continue to refer to the above. Figure 1The electricity meter component 12 is used to obtain the user's identifier bit and upload it to the main station 11 through the transformer terminal component. The main station 11 is used to obtain the business expansion application work order corresponding to the user's identifier bit and send the preset verification information in the business expansion application work order to the electricity meter component 12 through the transformer terminal component 13.

[0063] In addition, the electricity meter component 12 is also used to upload the user flag bit and the electricity meter identifier (such as the electricity meter asset number mentioned above) of the electricity meter that is bound to the electricity meter component 12 to the main station 11 through the transformer terminal component 13 when the preset verification information passes the verification.

[0064] Main station 11 is used to fill in the information in the business expansion application work order based on the electricity meter identification.

[0065] In this embodiment, when a user applies for low-voltage business expansion, a business expansion application work order will be generated in the power marketing system. At this time, the user's user number, user name, and user address (the user address is the main address and is filled in and confirmed manually) are clearly defined. After on-site inspection and confirmation that the user can apply for the service, the business expansion application processing system will intervene and prepare to automatically enter the low-voltage business expansion application user file information.

[0066] The above text introduces two specific situations for business expansion applications: (1) new business expansion applications; and (2) capacity expansion applications. The difference between capacity expansion applications and new business expansion applications is that the power supply information and backup address information in the user file information for business expansion applications remain unchanged; only the asset number information of the electricity meter needs to be updated. The following section combines... Figure 1 Specifically describe the commonalities between (1) new installations for business expansion and (2) capacity expansion applications.

[0067] First, the business expansion application processing system automatically generates a random four-digit user identifier (with the first digit being non-zero) for each user (whether it is a new user or a user expanding capacity), and sends the user identifier to the user based on the contact information left by the user (such as a mobile phone number).

[0068] After the batch metering is completed, when installing the electricity meters on site, the electricity meter components must be installed simultaneously. The electricity meter asset number should be entered using the button module of the electricity meter components, thereby binding the electricity meter with the electricity meter components.

[0069] After the electricity meter and meter assembly are installed, the user inputs the received four-digit user flag bit on the meter assembly using the keypad module. Then, pressing the start button on the keypad module initiates the automatic entry of low-voltage business expansion application user profile information. At this time, the electricity meter assembly obtains the user flag bit and triggers the operation of uploading the user flag bit to the main station through the transformer terminal component.

[0070] In some implementations, the master station can obtain the business expansion application work order generated by the power marketing system. Meanwhile, since users specify their user number, user name, and user address when applying for low-voltage business expansion, the master station can obtain the user information (i.e., at least one of user number, user name, and user address) from the power marketing system, then use this user information as preset verification information and enter it into the business expansion application work order.

[0071] In this embodiment, in addition to filling in the user number, user name and user address in the business expansion application form, for (1) new business expansion installation and (2) capacity increase application, they both need to continue to fill in the electricity meter identifier in the business expansion application form.

[0072] The preset verification information is mainly used for users to perform verification on the side of the electricity meter component to prevent inaccurate correspondence between the user flag and the business expansion application work order. For example, if the user flag corresponds to the wrong business expansion application work order (the user can perform the verification by checking the user name, user address and user number in the preset verification information).

[0073] The following examples illustrate the operation flow of the business expansion application processing system when the business expansion application work order is for a new business expansion installation:

[0074] First, the electricity meter component sends a user profile information automatic entry request signal (which includes the user flag bit entered by the user) to the distribution terminal component via carrier communication. After receiving the user profile information automatic entry request signal, the distribution terminal component transmits the user flag bit to the master station via wireless communication.

[0075] After receiving the user flag, the system master station uses it to match and bind the corresponding low-voltage business expansion application work order. Then, the master station sends the user number, user name, user address, and user flag from the application work order to the corresponding transformer terminal component. Upon receiving this information, the transformer terminal component uses the user flag as an identification code to send the user number, user name, and user address to the energy meter component, thus initiating the preset verification information verification process. The specific implementation method is as follows:

[0076] After receiving the above user information, the electricity meter component can display at least one of the user number, user name, and user address on the display interface for the user to verify. If the verification is correct, the user can trigger a preset input through the button module. When the electricity meter component receives the preset input, it determines that the preset verification information has passed the verification.

[0077] If an issue is found during verification, it may be due to an incorrect business expansion application work order being bound. In this case, manual unbinding can be performed in the backend, and the correct business expansion application work order can be manually selected. Then, the main site rebinds the user based on the user's flag. Afterward, the user information contained in the correct business expansion application work order is manually sent, and the above operation is repeated to send the user information to the corresponding electricity meter component, allowing the user to re-verify.

[0078] Secondly, after verifying the above implementation methods, in some implementations, the user can click the confirmation button in the meter component's button module. The meter component then sends a power information auto-fill signal to the distribution terminal component. Upon receiving the power information auto-fill signal, the distribution terminal sends a power information auto-fill signal to the master station (including a user flag, a request signal, and the asset number of the distribution transformer terminal; the request signal is used to determine the type of auto-fill information, including power information, the meter asset number, and the user's backup address; the function of the request signal described below is the same). After receiving the distribution transformer terminal asset number from the distribution terminal component, the master station matches the corresponding distribution transformer distribution area name, user number, and other power information based on the asset number and automatically fills it into the business expansion application form. This achieves successful supplementary recording of the power point (i.e., the distribution transformer distribution area), avoiding incorrect recording of the power point as another distribution area and preventing automatic meter reading failure for the applying user.

[0079] After the power information is entered, the master station sends a power information entry completion signal to the distribution terminal component. The distribution terminal component then sends the power information entry completion signal to the corresponding electricity meter component. Upon receiving the power information entry completion signal, the electricity meter component sends an electricity meter asset number auto-fill signal (including the user's flag, request signal, and electricity meter asset number) to the distribution terminal component. Upon receiving the electricity meter asset number auto-fill signal, the distribution terminal component uploads the electricity meter asset number auto-fill signal to the master station.

[0080] After receiving the signal for automatic entry of the electricity meter asset number, the main station parses the signal. The specific implementation method during the parsing process is as follows:

[0081] Based on the user's flag, the corresponding business expansion application work order is selected, and the uploaded electricity meter identifier (e.g., the electricity meter asset number) is matched to see if there is a completely consistent asset number (i.e., the target electricity meter identifier) ​​in the already installed electricity meter number pool (i.e., the electricity meter identifier pool).

[0082] If the corresponding asset number is found in the existing meter number pool, it proves that the uploaded meter asset number is correct, and the system will automatically fill in the asset number in the business expansion application form.

[0083] If the corresponding option cannot be found in the pool of already configured electricity meter numbers, it proves that the electricity meter asset number was entered incorrectly when the electricity meter component was bound. At this time, the main station sends an electricity meter asset number error signal to the corresponding transformer terminal component. The transformer terminal component sends the electricity meter asset number error signal to the corresponding electricity meter component. After receiving the signal, the electricity meter component is manually checked and the electricity meter asset number is re-entered. After confirmation, the confirmation button in the button module of the electricity meter component is clicked. The electricity meter component then resends the electricity meter asset number auto-fill signal. The above process is repeated until the electricity meter asset number is automatically entered successfully.

[0084] In this embodiment, by parsing the electricity meter asset number, errors in entering the electricity meter asset number can be avoided, and even situations where the electricity meter asset numbers of two users are entered in reverse order can be avoided, thus preventing electricity bill disputes between users and power supply companies.

[0085] Then, after the electricity meter asset number is automatically filled into the business expansion application form, the main station will send a signal indicating that the electricity meter asset number has been filled in to the corresponding distribution area terminal component. Upon receiving this signal, the distribution area terminal component will forward it to the corresponding electricity meter component. Additionally, in some implementations, after receiving the signal indicating that the electricity meter asset number has been filled in, the electricity meter component can display a notification on its display interface (such as the LCD screen mentioned above), indicating that the information in the business expansion application form has been filled in.

[0086] Finally, in some implementations, after receiving the signal that the electricity meter asset number has been filled in, the electricity meter component can send a backup address auto-fill signal to the distribution area terminal component.

[0087] The process involves the distribution station terminal component receiving an automatic backup address fill signal and then sending a mileage confirmation signal to the electricity meter component. Upon receiving the mileage confirmation signal, the electricity meter component returns a mileage reply signal. After receiving the mileage reply signal, the distribution station terminal component determines the total time T from sending the mileage confirmation signal to receiving the mileage reply signal. Then, utilizing the near-light speed c of electromagnetic wave transmission, it calculates the distance L between the installed electricity meter location and the distribution station location, using the following formula:

[0088]

[0089] After calculating the location distance L, the terminal component in the distribution area sends an autofill signal for the backup address to the master station (including the user flag, request signal, and location distance L). Upon receiving the autofill signal, the master station uses the user flag to match the corresponding business expansion application, determines the category to be processed based on the request signal type, and then determines the backup address based on the location distance L. The specific implementation method is as follows:

[0090] Based on the distance L, multiple possible meter installation locations (i.e., candidate locations) are determined along each branch line on the low-voltage topology map of the transformer area. Then, combined with the obtained real-scene map and the manually entered user electricity address, a unique meter installation location (i.e., target location) is confirmed from all possible meter installation locations (i.e., candidate locations). Finally, the pole closest to the meter installation address (i.e., target location) is selected as a reference object, and the location of the pole is used as the backup address of the user electricity address, which is then filled into the backup address column of the business expansion application form.

[0091] For example, the specifications for filling in the backup address are as follows: First public transformer, first branch line, first pole.

[0092] After the user's backup address is automatically filled in, the main station sends a backup address filling completion signal to the distribution terminal component. The distribution terminal then sends this backup address filling completion signal to the corresponding electricity meter component. Upon receiving the backup address filling completion signal, the electricity meter component displays "User profile information automatically entered" on the LCD screen.

[0093] In this embodiment, the location of the pole closest to the meter installation site is used as the backup address, which can effectively help power supply personnel find the location of the power user and facilitate the subsequent work.

[0094] In some implementations, after the LCD screen displays "User profile information automatically entered," the electricity meter assembly can be disassembled and unbound from the electricity meter, thus enabling reuse. After the business expansion application work order is archived, the business expansion application processing system will clear the user flag bit, releasing the binding relationship between the user and the user flag bit, allowing the user flag bit to be reused.

[0095] The following describes the operation process of the business expansion application processing system when the business expansion application work order is for capacity expansion.

[0096] When a low-voltage business expansion application is for capacity increase, the power supply information and backup address information remain unchanged; only the asset number information of the electricity meter needs to be updated.

[0097] Similarly, the business expansion application processing system automatically generates a random four-digit user identifier (starting with zero) for the user seeking capacity expansion and sends the identifier to the user based on their contact information (e.g., mobile phone number). After the batch metering is completed, the meter assembly must be installed simultaneously during on-site meter installation. The meter assembly's button module is then used to input the meter's asset number (i.e., meter identifier), thus binding the meter to the meter assembly.

[0098] After the electricity meter and meter assembly are installed, the user must input the received four-digit user flag bit using the keypad module on the electricity meter assembly. Then, press the start button on the keypad module to begin automatic entry of user profile information, as follows:

[0099] First, the electricity meter component sends a user profile information automatic entry request signal (which includes the user flag bit) to the distribution terminal component via carrier communication. After receiving the user profile information automatic entry request signal, the distribution terminal component transmits the user flag bit to the master station via wireless communication.

[0100] After receiving the user flag, the master station uses it to match and bind the corresponding low-voltage business expansion application work order. Then, the master station sends the user number, user name, user address, and user flag from the business expansion application work order to the corresponding transformer terminal component.

[0101] After receiving this information from the business expansion application, the distribution terminal component sends the user number, user name, and user address to the electricity meter component using the user identifier as a verification code. Upon receiving this user information, the electricity meter component allows the user to verify it. If an incorrect business expansion application is found, it can be manually unbound in the background, and the correct application can be manually selected. Alternatively, the main station can input the user identifier to rebind the application, then manually click to send the user information, repeating the above steps to send the user information to the corresponding electricity meter component for the user to re-verify.

[0102] After verification, the user clicks the confirmation button on the meter component's button module. The meter component then sends an auto-fill signal for the meter asset number to the distribution terminal component (including the user's flag, request signal, and meter asset number). Upon receiving the auto-fill signal, the distribution terminal component uploads it to the main station. The main station, upon receiving the auto-fill signal, parses it as follows:

[0103] The system filters out the corresponding business expansion application work orders based on the user's flag and matches the uploaded electricity meter asset number to see if there is a completely identical asset number in the pool of already installed electricity meter numbers. If there is a corresponding asset number in the pool of already installed electricity meter numbers, it proves that the uploaded electricity meter asset number is correct, and the system automatically fills the asset number into the work order.

[0104] Additionally, if the corresponding option cannot be found in the pool of already configured electricity meter numbers, it indicates that the asset number was entered incorrectly when the electricity meter component was bound. In this case, the main station sends an incorrect electricity meter asset number signal to the corresponding distribution terminal component. The distribution terminal component then sends this signal to the corresponding electricity meter component. After receiving the signal, the electricity meter component is manually checked and the electricity meter asset number is re-entered. After confirmation, the user clicks the confirmation button on the electricity meter component's button module. The electricity meter component then resends the automatic electricity meter asset number fill signal, repeating the above process until the electricity meter asset number is automatically entered successfully.

[0105] After the meter asset number is automatically entered, the main station sends a signal indicating that the meter asset number has been entered to the corresponding distribution terminal component. Upon receiving this signal, the distribution terminal component forwards it to the corresponding meter component. Once the meter component receives the signal, it displays "User profile information automatically entered" on its LCD screen. At this point, the meter component can be disassembled and reused. After the business expansion application is archived, the business expansion application processing system clears the user flag, releasing the binding relationship between the user and the flag, allowing the user flag to be reused.

[0106] Figure 4 This is a flowchart illustrating the business expansion application processing method provided in this application. This method can be applied to electricity meter modules. Taking the electricity meter module as the implementing entity as an example, as follows... Figure 4 As shown, the method specifically includes the following steps:

[0107] Step S410: Upload the user identifier to the main station via the area terminal component. The user identifier is bound to the user who initiated the service expansion application request.

[0108] Step S420: Obtain the preset verification information issued by the main station based on the user flag bit.

[0109] Step S430: In response to the preset verification information passing the verification, the user flag bit and the energy meter identifier of the energy meter that is bound to the energy meter component are uploaded to the main station through the transformer terminal component.

[0110] Furthermore, Figure 5 This is a flowchart illustrating the business expansion application processing method provided in this application embodiment. This method can be applied to the main station; taking the main station as the executing entity as an example, such as... Figure 5 As shown, the method specifically includes the following steps:

[0111] Step S510: Obtain the user flag bit uploaded by the electricity meter component, and the business expansion application work order corresponding to the user flag bit;

[0112] Step S520: Send the preset verification information in the business expansion application work order to the electricity meter component through the transformer terminal component;

[0113] Step S530: In response to receiving the electricity meter identifier and the distribution transformer terminal identifier of the distribution transformer terminal bound to the distribution transformer terminal component sent by the distribution transformer terminal component, supplement the information in the business expansion application work order.

[0114] Among them, the electricity meter identifier is sent by the electricity meter component to the distribution terminal component when the preset verification information passes the verification.

[0115] The method provided in this application can be applied to the above-mentioned business expansion application processing system. Its implementation principle and technical effect are similar, and will not be described in detail here.

[0116] Furthermore, the division of components or modules in this application is merely a logical functional division. In actual implementation, there may be other division methods. For example, multiple modules or components may be combined or integrated into another system, or some features may be ignored or not executed. Another point is that the shown or discussed mutual coupling or direct coupling or communication connection may be an indirect coupling or communication connection through some interfaces, devices, or modules, and may be electrical, mechanical, or other forms.

[0117] The modules described as separate components may or may not be physically separate. The components shown as modules may or may not be physical units; that is, they may be located in one place or distributed across multiple network units. Some or all of the units can be selected to achieve the purpose of this embodiment according to actual needs.

[0118] In addition, the functional modules or components in the various embodiments of the present invention can be integrated into a device or system, or each module or component can exist physically separately, or two or more modules or components can be integrated into a device or system.

[0119] Those skilled in the art will understand that all or part of the steps of the above-described method embodiments can be implemented by hardware associated with program instructions. The program can be stored in a computer-readable storage medium. When executed, the program performs the steps of the above-described method embodiments; and the aforementioned storage medium includes various media capable of storing program code, such as ROM, RAM, magnetic disks, or optical disks.

[0120] Finally, it should be noted that other embodiments of the invention will readily occur to those skilled in the art upon consideration of the specification and practice of the invention disclosed herein. This invention is intended to cover any variations, uses, or adaptations of the invention that follow the general principles of the invention and include common knowledge or customary techniques in the art not disclosed herein, and is not limited to the precise structures described above and shown in the accompanying drawings, and various modifications and changes can be made without departing from its scope. The scope of the invention is limited only by the appended claims.

Claims

1. A business expansion application processing system, characterized in that, include: The system includes a main station, an energy meter assembly, and a distribution terminal assembly, wherein the energy meter assembly is connected to the distribution terminal assembly, and the distribution terminal assembly is connected to the main station. The electricity meter component is used to obtain the user identifier bit and upload it to the main station through the transformer terminal component. The user identifier bit is bound to the user who initiated the business expansion application request. The main station is used to obtain the business expansion application work order corresponding to the user flag bit, and send the preset verification information in the business expansion application work order to the energy meter component through the transformer terminal component. The electricity meter component is also used to upload the user flag bit and the electricity meter identifier of the electricity meter that is bound to the electricity meter component to the main station through the distribution terminal component when the preset verification information passes the verification. The main station is used to fill in the information in the business expansion application work order based on the electricity meter identifier.

2. The system according to claim 1, characterized in that, The main station is also used for: Obtain user information that requests the business expansion application, wherein the user information includes at least one of user ID, user name, and user address; At least one of the user ID, user name, and user address is identified as the preset verification information and entered into the business expansion application work order.

3. The system according to claim 2, characterized in that, The electricity meter assembly is also used for: The display interface of the electricity meter component displays at least one of the user number, user name, and user address; Receive a first input, and if the first input is a preset input, determine that the preset verification information passes the verification.

4. The system according to claim 1, characterized in that, The main station is specifically used for: If a target electricity meter identifier matching the electricity meter identifier exists in the electricity meter identifier pool, the electricity meter identifier is entered into the business expansion application work order.

5. The system according to claim 1, characterized in that, The electricity meter assembly is also used for: A prompt message is displayed on the display interface to indicate that the information in the business expansion application work order has been filled in.

6. The system according to any one of claims 1-5, characterized in that, The electricity meter component is also used to send an automatic power information filling signal to the transformer terminal component when the power information is not filled in the business expansion application work order. The transformer terminal component is used to respond to the power information automatic filling signal, obtain the transformer terminal identifier of the transformer terminal bound to the transformer terminal component, and upload it to the main station. The main station is also used to supplement the information in the business expansion application work order according to the distribution transformer terminal identifier.

7. The system according to claim 1, characterized in that, The transformer terminal component is also used for: In response to receiving the backup address autofill signal sent by the energy meter component, a mileage confirmation signal is sent to the energy meter component; The mileage reply signal sent by the electricity meter component to the distribution terminal component based on the mileage confirmation signal is obtained. Based on the sending time of the mileage confirmation signal and the receiving time of the mileage reply signal, the location distance between the energy meter and the distribution transformer terminal in the distribution area is determined; The location distance is uploaded to the main station, and the location distance is used by the main station to determine the backup address of the electricity meter and enter it into the business expansion application work order.

8. The system according to claim 7, characterized in that, The main station is specifically used for: Obtain a real-view map and a topology map of the transformer area, wherein the topology map includes multiple branches and multiple location points for installing the electricity meter; Along each branch line on the topology map of the transformer area, at least one candidate location point is determined from the location points; Based on the real-view map and the electricity address, the target location is confirmed from at least one candidate location point; Based on the real-scene map, the location of the utility pole closest to the target location is selected as the backup address.

9. A method for processing business expansion application, characterized in that, Applied to an electricity meter assembly, the method includes: The user identifier is uploaded to the main station through the terminal component of the distribution station. The user identifier is bound to the user who initiated the business expansion application request. Obtain the preset verification information issued by the main station based on the user flag bit; In response to the preset verification information passing the verification, the user flag bit and the energy meter identifier of the energy meter that is bound to the energy meter component are uploaded to the main station through the distribution terminal component.

10. A method for processing business expansion application, characterized in that, Applied to the main station, the method includes: Obtain the user flag bit uploaded by the electricity meter component, and the business expansion application work order corresponding to the user flag bit; The preset verification information in the business expansion application work order is sent to the energy meter component through the transformer terminal component. In response to receiving the energy meter identifier and the distribution transformer terminal identifier of the distribution transformer terminal bound to the distribution transformer terminal component sent by the distribution transformer terminal component, the information in the business expansion application work order is supplemented. The energy meter identifier is sent by the energy meter component to the distribution transformer terminal component when the preset verification information passes the verification.