A system construction method suitable for multi-account book multi-system

By constructing a multi-ledger and multi-system approach and utilizing authentication symbols to automatically monitor and manage multi-ledger record information, the problem of low intelligence in existing financial monitoring systems has been solved, achieving efficient multi-ledger monitoring and management.

CN117635350BActive Publication Date: 2026-02-03GUANGDONG ELECTRIC POWER COMM CO LTD
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Patent Information

Application Number
CN202311315803.1
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-10-11
Publication Date
2026-02-03
Estimated Expiration
2043-10-11

AI Technical Summary

Technical Problem

Existing financial monitoring and management systems have low levels of intelligence, low security in their operating environment, are inconvenient to operate and manage, are prone to regulatory loopholes, and cannot perform real-time comparisons and targeted verifications, resulting in delayed error detection and wasted human and material resources.

Method used

It employs a multi-ledger information transmission module, a multi-ledger information comprehensive management module, a cloud service module, a multi-ledger update information sensing and acquisition module, and a multi-ledger update information optimization module. Through authentication symbols, it automatically monitors and manages multi-ledger record information, enabling real-time dynamic utilization and optimization.

Benefits of technology

It improves the efficiency of multi-ledger monitoring and management, eliminates the need for manual data collection and uploading, and enhances the accuracy and efficiency of monitoring and management.

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Abstract

The application discloses a kind of system construction methods suitable for multi-account book multi-system, the monitoring and management system includes: multi-account book information transmission module, multi-account book information comprehensive management module, cloud service module, multi-account book update information sensing acquisition module, multi-account book update information optimization module;Multi-account book information transmission module is connected with multi-account book information comprehensive management module, and multi-account book information comprehensive management module is also connected with cloud service module, and cloud service module is also connected with multi-account book update information sensing acquisition module, and multi-account book update information sensing acquisition module is also connected with multi-account book update information optimization module, and multi-account book update information optimization module carries out rationality optimization while generating optimization report, and according to optimization report, multi-account book record list information is monitored and managed.Using the system construction method suitable for multi-account book multi-system provided in the application can improve the efficiency of multi-account book monitoring and management.
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Description

Technical Field

[0001] This invention relates to the field of multi-ledger management, and more particularly to a system construction method applicable to multiple ledgers and multiple systems. Background Technology

[0002] Financial personnel inevitably make mistakes when performing financial statistics. Without financial oversight, these errors go undetected. Existing financial monitoring and management systems cannot perform real-time comparisons of financial information, leading to delayed problem-solving and a lack of targeted verification, resulting in significant waste of human and material resources. A typical financial management system includes a monitoring system, an information registration system, an information entry system, a central processing unit (CPU), and alarm devices. The monitoring system is connected to the information registration and entry systems to monitor the registration and entry of information. The information registration and entry systems are connected to the CPU, which integrates and compares the financial information registered in the registration system with the information entered in the entry system. The comparison results are stored and output by the CPU. Alarm devices are also connected to the CPU. However, existing financial management systems suffer from low levels of system intelligence, low operational security, inconvenient operation and management, incomplete monitoring, and susceptibility to regulatory loopholes. Therefore, we propose a system construction method suitable for multiple ledgers and systems. Summary of the Invention

[0003] In order to overcome the shortcomings and deficiencies of existing technologies, this invention provides a system construction method applicable to multiple ledgers and multiple systems.

[0004] The technical solution adopted in this invention is a system construction method applicable to multiple ledgers and multiple systems. This method is built through different modules, including: a multi-ledger information transmission module, a multi-ledger information comprehensive management module, a cloud service module, a multi-ledger update information sensing and acquisition module, and a multi-ledger update information optimization module.

[0005] The multi-ledger information transmission module is connected to the multi-ledger information integrated management module. The multi-ledger information transmission module manages the income and expenditure and update information and the usage and recording information of the multi-ledger record lists, and transmits these information to the multi-ledger information integrated management module. The income and expenditure and update information of the multi-ledger record lists includes the types of income and expenditure in the multi-ledger accounts. The usage and recording information of the multi-ledger record lists includes the usage amount, recording time and recording volume, distribution adjustment of the multi-ledger record lists, and all parameter information in the distribution adjustment of the multi-ledger record lists.

[0006] The multi-ledger information management module is also connected to the cloud service module. The multi-ledger information management module is used to issue control commands to the cloud service module. These control commands include reconstructing the income and expenditure and update information of the multi-ledger record list, and controlling the multi-ledger record list information based on its usage and recording information. The reconstructed income and expenditure and update information of the multi-ledger record list carries authentication symbols. These authentication symbols include the multi-ledger name, the time list identifier for the multi-ledger record list information, the name of the income and expenditure location, the distance between the income and expenditure locations, the time-based payment transceiver serial number, and the recording time and recording quantity.

[0007] The cloud service module is also connected to the multi-ledger update information sensing and acquisition module. The cloud service module is used to execute control operations according to the control command and to classify and store multi-ledger record list information.

[0008] The categorized storage of multi-ledger record list information is expressed as follows:

[0009]

[0010] Among them, A n Let η represent the set of multi-ledger record list information, η represent the coefficient matrix of the record list classification, T represent the total amount of the record list, x represent a single item, H represent the classification time of the record list, and U represent the total amount of the record list. x P indicates the completeness of the record list. x The corrupted function represents the record list;

[0011] The multi-ledger update information sensing and acquisition module is also connected to the multi-ledger update information optimization module. The multi-ledger update information sensing and acquisition module is used to collect real-time dynamic data during multi-ledger updates using sensors, generate adjustment data for different time periods of the multi-ledger, and transmit the adjustment data for different time periods of the multi-ledger to the multi-ledger update information optimization module. The multi-ledger update information optimization module is used to perform rationality optimization based on the adjustment data for different time periods of the multi-ledger and the usage and recording information of the multi-ledger record list, generate an optimization report, and monitor and manage the multi-ledger record list information based on the optimization report.

[0012] Optionally, it also includes: a multi-ledger record list demand analysis and planning module, used to obtain the multi-ledger record list consumption of end users and analyze the multi-ledger record list demand; the multi-ledger record list consumption and analysis of multi-ledger record list demand includes multi-ledger record list consumption patterns, multi-ledger record list consumption time, and multi-ledger record list consumption amount;

[0013] The authentication symbol generation module is used to generate authentication symbols based on the consumption and analysis of the multi-ledger record list requirements.

[0014] Optionally, it also includes: an authentication symbol recognition module, used to embed the authentication symbol into the income and expenditure and update information of the multi-ledger record list, and to reorganize the income and expenditure and update information of the multi-ledger record list to determine the income and expenditure and update information of the multi-ledger record list with the authentication symbol.

[0015] Optionally, the multi-ledger update information optimization module specifically includes:

[0016] The authentication symbol acquisition module is used to acquire the authentication symbol in the optimization report;

[0017] The real-time monitoring and management module is used to monitor and manage the multi-ledger record list information based on the authentication symbol.

[0018] A system construction method applicable to multiple ledgers and systems includes:

[0019] The system manages the income and expenditure and update information and the usage and recording information of multiple ledger record lists, and transmits the income and expenditure and update information and the usage and recording information of multiple ledger record lists to the multi-ledger information integrated management module; the income and expenditure and update information of multiple ledger record lists includes the types of income and expenditure of multiple ledgers; the usage and recording information of multiple ledger record lists includes the usage of multiple ledger record lists, recording time and recording volume, distribution adjustment of multiple ledger record lists, and all parameter information in the distribution adjustment of multiple ledger record lists;

[0020] The system issues control commands to the cloud service module. These commands include reconstructing the income and expenditure and update information of the multi-ledger record list, and controlling the information of the multi-ledger record list based on its usage and recording information. The reconstructed income and expenditure and update information of the multi-ledger record list contains authentication symbols. These authentication symbols include the multi-ledger name, the time list identifier of the multi-ledger record list information, the name of the income and expenditure location, the distance between the income and expenditure locations, the time in / out device serial number, and the recording time and recording quantity.

[0021] Execute control operations according to the control commands, and classify and store multi-ledger record list information;

[0022] The system collects adjustment data from different time periods of multiple ledgers in the cloud service module and transmits this data to the multi-ledger update information optimization module. The multi-ledger update information optimization module optimizes the data based on the adjustment data and usage and recording information of the multi-ledger record list, generates an optimization report, and monitors and manages the multi-ledger record list information based on the optimization report.

[0023] Optionally, after transmitting the income and expenditure and update information of the multi-ledger record list and the usage and recording information of the multi-ledger record list to the multi-ledger information integrated management module, the method further includes:

[0024] The system acquires and analyzes the consumption of multi-ledger record lists from end users to determine their multi-ledger record list requirements. The consumption and analysis of multi-ledger record list requirements include the consumption patterns, consumption time, and consumption amount of multi-ledger record lists.

[0025] The authentication symbol is generated based on the consumption and analysis of the multi-ledger record list.

[0026] Optionally, after generating authentication symbols based on the consumption and analysis of the multi-ledger record list requirements, the method further includes:

[0027] The authentication symbol is embedded into the income, expenditure and update information of the multi-ledger record list, and the income, expenditure and update information of the multi-ledger record list is reorganized to determine the income, expenditure and update information of the multi-ledger record list with the authentication symbol.

[0028] Optionally, the monitoring and management of the multi-ledger record list information based on the optimization report specifically includes:

[0029] Obtain the authentication symbol from the optimization report;

[0030] The multi-ledger record list information is monitored and managed based on the authentication symbols.

[0031] According to specific embodiments provided by the present invention, the present invention discloses the following technical effects: The present invention provides a system construction method applicable to multiple ledgers and multiple systems. By identifying the income and expenditure and update information of the multi-ledger record list with authentication symbols, it can automatically monitor and manage whether the specified income and expenditure location has entered the specified multi-ledger record list information before the specified multi-ledger record list information, eliminating the steps of manual data collection, manual data uploading, and manual visual identification of multi-ledger records, and greatly improving the efficiency of multi-ledger monitoring and management. Attached Figure Description

[0032] To more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the drawings used in the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments of the present invention. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0033] Figure 1 This invention provides a module construction diagram for a system construction method applicable to multiple ledgers and multiple systems.

[0034] Figure 2 The present invention provides a flowchart of a system construction method applicable to multiple ledgers and multiple systems. Detailed Implementation

[0035] It should be noted that, unless otherwise specified, the embodiments and features described in this application can be combined with each other. The application will be further described in detail below with reference to the accompanying drawings and specific embodiments.

[0036] The purpose of this invention is to provide a system construction method applicable to multiple ledgers and systems, which can improve the efficiency of multi-ledger monitoring and management.

[0037] To make the above-mentioned objects, features and advantages of the present invention more apparent and understandable, the present invention will be further described in detail below with reference to the accompanying drawings and specific embodiments.

[0038] like Figure 1 As shown, a system construction method applicable to multiple ledgers and multiple systems includes: a multi-ledger information transmission module 101, a multi-ledger information comprehensive management module 102, a cloud service module 103, a multi-ledger update information sensing and acquisition module 104, and a multi-ledger update information optimization module 105.

[0039] The multi-ledger information transmission module is connected to the multi-ledger information integrated management module. The multi-ledger information transmission module manages the income and expenditure and update information and the usage and recording information of the multi-ledger record lists, and transmits these information to the multi-ledger information integrated management module. The income and expenditure and update information includes the types of income and expenditure in the multi-ledger records; the usage and recording information includes the usage of the multi-ledger record lists, recording time and recording volume, and adjustments to the distribution of the multi-ledger record lists. The multi-ledger record list distribution adjustment includes all parameter information; the multi-ledger information transmission module includes multi-ledger record list income and expenditure and update information management and multi-ledger record list usage and recording information management; wherein multi-ledger record list income and expenditure and update information management refers to the management of multi-ledger income and expenditure type files; through multi-ledger record list usage and recording information, the correspondence between multi-ledger record list information and multi-ledger record list distribution adjustment can be determined, including multi-ledger record list usage, recording time and recording volume, multi-ledger record list distribution adjustment and all parameter information in the multi-ledger record list distribution adjustment.

[0040] The multi-ledger information management module is also connected to the cloud service module. The multi-ledger information management module is used to issue control commands to the cloud service module. These control commands include reconstructing the income and expenditure and update information of the multi-ledger record list, and controlling the multi-ledger record list information based on its usage and recording information. The reconstructed income and expenditure and update information of the multi-ledger record list carries authentication symbols. These authentication symbols include the multi-ledger name, the time list identifier of the multi-ledger record list information, the name of the income and expenditure location, the distance between the income and expenditure locations, the time in / out device serial number, and the recording time and recording quantity. The multi-ledger information management module is mainly used in this system for reconstructing multi-ledger data packets and controlling the multi-ledger record list information.

[0041] The cloud service module is also connected to the multi-ledger update information sensing and acquisition module. The cloud service module is used to execute control operations according to the control commands and to classify and store multi-ledger record list information. The cloud service module executes corresponding control operations according to the information and commands transmitted by the multi-ledger information comprehensive management module.

[0042] The categorized storage of multi-ledger record list information is expressed as follows:

[0043]

[0044] Among them, A n Let η represent the set of multi-ledger record list information, η represent the coefficient matrix of the record list classification, T represent the total amount of the record list, x represent a single item, H represent the classification time of the record list, and U represent the total amount of the record list. x P indicates the completeness of the record list. x The corrupted function represents the record list;

[0045] The multi-ledger update information sensing and acquisition module is also connected to the multi-ledger update information optimization module. The multi-ledger update information sensing and acquisition module is used to collect real-time dynamic data during multi-ledger updates using sensors, generate adjustment data for different time periods of the multi-ledger, and transmit this adjustment data to the multi-ledger update information optimization module. The multi-ledger update information optimization module is used to perform rationality optimization based on the adjustment data for different time periods of the multi-ledger and the usage and recording information of the multi-ledger record list, while generating an optimization report, and monitoring and managing the multi-ledger record list information based on the optimization report. The multi-ledger update information sensing and acquisition module is used to collect data from the screen in the cloud service module; the multi-ledger update information optimization module generates a final optimization report based on the collected data and the usage and recording information of the multi-ledger record list. The workflow of a system construction method applicable to multiple ledgers and systems includes multi-ledger record list income and expenditure and update information, multi-ledger data package reassembly, schedule generation, multi-ledger time data acquisition, data upload, and information analysis.

[0046] After importing a new multi-ledger file, the multi-ledger information transmission module automatically distributes the data records to the corresponding multi-ledger information management module based on the revenue and expenditure location where the multi-ledger is located. The usage and recording information of the multi-ledger record list are also automatically transmitted to the corresponding multi-ledger information management module. At the same time, the multi-ledger information transmission module transmits the usage and recording information of the multi-ledger record list to the multi-ledger update information optimization module for subsequent rational optimization and the generation of optimization reports.

[0047] Multi-ledger data packet reassembly includes: 1. Record algorithm generation, 2. Multi-ledger DCP repackaging, 3. Schedule generation, 4. Multi-ledger time data collection, 5. Data upload, and 6. Information analysis.

[0048] 1. Recording Algorithm Generation: After receiving the multi-ledger record list usage and recording information from the multi-ledger information transmission module, the multi-ledger information integrated management module generates a unique authentication symbol for each multi-ledger based on the consumption patterns of the multi-ledger record list, using a mature recording algorithm. This authentication symbol contains the following information: multi-ledger name, multi-ledger name, receipt / payment location name, distance between receipt / payment locations, time receipt / payment serial number, recording time, and record quantity.

[0049] The specific algorithm is as follows: The algorithm for generating the record uses the widely used QR (Quick-Response) code. The multi-ledger information integrated management module platform is programmed in Java and requires the use of the jar package QRCode.jar.

[0050] In the Java class definition, you need to add "package qrcode;". During programming, call the QRCode library function - qRCodeCommon(String content, String imgType, int size). Here, String content is the string to be encoded, that is, the information contained in the authentication symbol: multi-ledger name, multi-ledger, receipt and payment location name, distance between receipt and payment locations, time receipt and payment serial number, record time and record quantity; String imgType is the data format to be output, and int size is the size of the generated record algorithm.

[0051] The record algorithm data generated by calling the QR code is saved to the specified path for use during DCP reassembly.

[0052] 2. Multi-ledger DCP repackaging: After receiving the DCP file from the multi-ledger information transmission module, the multi-ledger information management module adds authentication symbols to each frame of the original DCP by calling the mature OpenCV algorithm, and finally outputs a new multi-ledger DCP file.

[0053] The specific algorithm is as follows: video files are processed using the JavaCV and OpenCV libraries. The JavaCV part is responsible for reading multi-ledger DCP files and converting between frames and mats, while OpenCV is responsible for data loading, data saving, data overlay, and transparency processing.

[0054] 3. Schedule generation: After receiving the multi-ledger record list and recording information, the multi-ledger information integrated management module automatically generates the income and expenditure schedule and sends the schedule to the time income and expenditure device of the corresponding hall; the POS schedule is the demand plan manually arranged by the demand staff or other operators at the end user.

[0055] 4. Multi-ledger Time Data Collection: After the scheduling start time, the time-based payment system will distribute data to the multi-ledger system via the demand machine. A unique authentication symbol will then appear at a designated location in the multi-ledger data. During this process, time data needs to be recorded for use by the subsequent multi-ledger update information optimization module.

[0056] Currently, the process of recording multiple ledgers can be done using the following two methods:

[0057] 1) Collect multi-ledger data with authentication symbols using digital devices through manual collection methods.

[0058] 2) Automatic data collection is performed by installing automatic data collection equipment to collect data from multiple ledgers.

[0059] 5. Data Upload: 1) Manually upload the collected photos to the designated multi-ledger update information optimization module. 2) Install automatic data acquisition devices on monitoring poles; these devices can automatically upload the collected photos to the designated multi-ledger update information optimization module.

[0060] 6. Information Analysis: After collecting the uploaded data containing authentication symbols, the multi-ledger update information optimization module calls the authentication symbol recognition program to read the information contained in the authentication symbols and save the information to the multi-ledger information database.

[0061] The multi-ledger information transmission module transmits the multi-ledger record list usage and recording information to the multi-ledger update information optimization module, which already exists in the multi-ledger information database. The multi-ledger information transmission module compares the information in the identified authentication symbol with the local multi-ledger record list usage and recording information.

[0062] Finally, the multi-ledger update information optimization module will automatically generate a test report based on the test results. This test report will include the data used in the process of generating the monitoring and management report as an attachment. Multi-ledger vendors or operators can directly understand the time status of the multi-ledger through this report.

[0063] like Figure 2 As shown, a system construction method applicable to multiple ledgers and multiple systems includes:

[0064] Step A1: Manage the income and expenditure and update information and the usage and recording information of the multi-ledger record list, and transmit the income and expenditure and update information and the usage and recording information of the multi-ledger record list to the multi-ledger information integrated management module; the income and expenditure and update information of the multi-ledger record list includes the types of income and expenditure of the multi-ledger; the usage and recording information of the multi-ledger record list includes the usage of the multi-ledger record list, the recording time and the recording volume, the distribution adjustment of the multi-ledger record list, and all parameter information in the distribution adjustment of the multi-ledger record list.

[0065] Following step A1, the method further includes: obtaining the consumption of the multi-ledger record list of the end user and analyzing the multi-ledger record list requirements; the consumption of the multi-ledger record list and analysis of the multi-ledger record list requirements includes the consumption pattern of the multi-ledger record list, the consumption time of the multi-ledger record list, and the consumption amount of the multi-ledger record list; generating an authentication symbol based on the consumption of the multi-ledger record list and analysis of the multi-ledger record list requirements; embedding the authentication symbol into the income and expenditure and update information of the multi-ledger record list, and reorganizing the income and expenditure and update information of the multi-ledger record list to determine the income and expenditure and update information of the multi-ledger record list with the authentication symbol.

[0066] Step A2: Issue a control command to the cloud service module; the control command includes reconstructing the income and expenditure and update information of the multi-ledger record list and controlling the multi-ledger record list information according to the usage and recording information of the multi-ledger record list; the reconstructed income and expenditure and update information of the multi-ledger record list carries an authentication symbol; the authentication symbol includes the multi-ledger name, the time list identifier of the multi-ledger record list information, the name of the income and expenditure location, the distance of the income and expenditure location, the time income and expenditure serial number, and the recording time and recording quantity.

[0067] Step A3: Execute control operations according to the control command and classify and store the multi-ledger record list information.

[0068] Step A4: Collect adjustment data of the multi-ledger time period of the cloud service module, and transmit the adjustment data of the multi-ledger time period to the multi-ledger update information optimization module; the multi-ledger update information optimization module is used to optimize the rationality of the multi-ledger time period adjustment data and the usage and recording information of the multi-ledger record list, generate an optimization report, and monitor and manage the multi-ledger record list information according to the optimization report.

[0069] After step A4, the method further includes: obtaining the authentication symbol from the optimization report; and monitoring and managing the multi-ledger record list information based on the authentication symbol.

[0070] Traditional multi-ledger monitoring and management systems involve three steps: manual data collection, manual data upload, and manual visual identification of multiple ledgers. This process is not only inefficient but also prone to errors that are missed by the naked eye, significantly reducing the performance of the multi-ledger recording system.

[0071] The multi-ledger monitoring and management system and method provided by this invention, after adding authentication symbols to multiple ledgers, will include the authentication symbols in the multi-ledger data appearing in the time process of the receipt and payment location; as long as a photo of the multiple ledgers is collected at any time in the time, the photo will contain the authentication symbol information; after collecting the photo, the multi-ledger information transmission module can quickly analyze all information related to the time of the multi-ledger, such as the name of the multi-ledger, the receipt and payment location, and the event, by parsing the authentication symbols. Therefore, this method is far superior to the existing multi-ledger time monitoring and management system in terms of both the efficiency and accuracy of multi-ledger monitoring and management.

[0072] The various embodiments in this specification are described in a progressive manner, with each embodiment focusing on its differences from other embodiments. Similar or identical parts between embodiments can be referred to interchangeably. For the systems disclosed in the embodiments, since they correspond to the methods disclosed in the embodiments, the descriptions are relatively simple; relevant parts can be referred to the method section.

[0073] This document uses specific examples to illustrate the principles and implementation methods of the present invention. The descriptions of the above embodiments are only for the purpose of helping to understand the method and core ideas of the present invention. Furthermore, those skilled in the art will recognize that, based on the ideas of the present invention, there will be changes in the specific implementation methods and application scope. Therefore, the content of this specification should not be construed as a limitation of the present invention.

Claims

1. A system construction method applicable to multiple ledgers and multiple systems, characterized in that, This method is built using different modules, including: The multi-ledger information transmission module is used to manage the income and expenditure and update information and the usage and recording information of the multi-ledger record list, and transmits the income and expenditure and update information and the usage and recording information of the multi-ledger record list to the multi-ledger information integrated management module; The multi-ledger record list income and expenditure and update information includes the types of income and expenditure in the multi-ledger records; the multi-ledger record list usage and recording information includes the usage of the multi-ledger record list, recording time and recording volume, multi-ledger record list distribution adjustment, and all parameter information in the multi-ledger record list distribution adjustment; The multi-ledger information integrated management module is used to issue control commands to the cloud service module; the control commands include reorganizing the income and expenditure and update information of the multi-ledger record list and controlling the multi-ledger record list information according to the usage and recording information of the multi-ledger record list; the reorganized income and expenditure and update information of the multi-ledger record list has an authentication symbol. The authentication symbols include the name of the multiple ledgers, the time list identifier of the multiple ledger record list information, the name of the place of receipt and payment, the distance between the places of receipt and payment, the serial number of the time receipt and payment device, and the recording time and the number of records. The cloud service module is used to execute control operations according to the control commands and to classify and store multi-ledger record list information; The categorized storage of multi-ledger record list information is expressed as follows: ; Among them, A n Let η represent the set of multi-ledger record list information, η represent the coefficient matrix of the record list classification, T represent the total amount of the record list, x represent a single item, H represent the classification time of the record list, and U represent the total amount of the record list. x P indicates the completeness of the record list. x The corrupted function represents the record list; The multi-ledger update information sensing and acquisition module is used to collect real-time dynamic data during multi-ledger updates using sensors, generate adjustment data for different time periods of the multi-ledger, and transmit the adjustment data for different time periods of the multi-ledger to the multi-ledger update information optimization module. The multi-ledger update information optimization module is used to optimize the rationality of multi-ledger records based on the adjustment data of different time periods and the usage and recording information of multi-ledger record lists, while generating an optimization report and monitoring and managing the multi-ledger record list information based on the optimization report.

2. The system construction method applicable to multiple ledgers and multiple systems according to claim 1, characterized in that, The method also includes: The Multi-ledger Record List Demand Analysis and Planning module is used to obtain the multi-ledger record list consumption of end users and analyze the multi-ledger record list requirements. The consumption and analysis of the multi-ledger record list includes the consumption pattern of the multi-ledger record list, the consumption time of the multi-ledger record list, and the consumption amount of the multi-ledger record list; The authentication symbol generation module is used to generate authentication symbols based on the consumption and analysis of the multi-ledger record list requirements.

3. The system construction method applicable to multiple ledgers and multiple systems according to claim 2, characterized in that, The method also includes: The authentication symbol recognition module is used to embed the authentication symbol into the income and expenditure and update information of the multi-ledger record list, and to reconstruct the income and expenditure and update information of the multi-ledger record list to determine the income and expenditure and update information of the multi-ledger record list with the authentication symbol.

4. A system construction method applicable to multiple ledgers and multiple systems according to claim 3, characterized in that, The multi-ledger update information optimization module specifically includes: The authentication symbol acquisition module is used to acquire the authentication symbol in the optimization report.

5. A system construction method applicable to multiple ledgers and multiple systems according to claim 4, characterized in that, The multi-ledger update information optimization module specifically includes a real-time monitoring and management module, which is used to monitor and manage the multi-ledger record list information based on the authentication symbol.

6. A system construction method applicable to multiple ledgers and multiple systems according to claim 5, characterized in that, The method includes: The system manages the income and expenditure and update information and the usage and recording information of multiple ledger record lists, and transmits the income and expenditure and update information and the usage and recording information of multiple ledger record lists to the multi-ledger information integrated management module; the income and expenditure and update information of multiple ledger record lists includes the types of income and expenditure of multiple ledgers; the usage and recording information of multiple ledger record lists includes the usage of multiple ledger record lists, recording time and recording volume, distribution adjustment of multiple ledger record lists, and all parameter information in the distribution adjustment of multiple ledger record lists; The system issues control commands to the cloud service module. These commands include reconstructing the income and expenditure and update information of the multi-ledger record list, and controlling the information of the multi-ledger record list based on its usage and recording information. The reconstructed income and expenditure and update information of the multi-ledger record list contains authentication symbols. These authentication symbols include the multi-ledger name, the time list identifier of the multi-ledger record list information, the name of the income and expenditure location, the distance between the income and expenditure locations, the time in / out device serial number, and the recording time and recording quantity. Execute control operations according to the control commands, and classify and store multi-ledger record list information; The adjustment data of the cloud service module's time multi-ledger at different time periods are collected, and the adjustment data of the multi-ledger at different time periods are transmitted to the multi-ledger update information optimization module; The multi-ledger update information optimization module is used to optimize the rationality of the multi-ledger update data based on the adjustment data of the multi-ledger at different time periods and the usage and recording information of the multi-ledger record list, while generating an optimization report, and monitoring and managing the multi-ledger record list information based on the optimization report.

7. A system construction method applicable to multiple ledgers and multiple systems according to claim 6, characterized in that, After transmitting the income and expenditure and update information of the multi-ledger record list and the usage and recording information of the multi-ledger record list to the multi-ledger information integrated management module, the method further includes: The system acquires and analyzes the consumption of multi-ledger record lists from end users to determine their multi-ledger record list requirements. The consumption and analysis of multi-ledger record list requirements include the consumption patterns, consumption time, and consumption amount of multi-ledger record lists.

8. A system construction method applicable to multiple ledgers and multiple systems according to claim 6, characterized in that, The authentication symbol is generated based on the consumption and analysis of the multi-ledger record list.

9. A system construction method applicable to multiple ledgers and multiple systems according to claim 6, characterized in that, After generating authentication symbols based on the consumption and analysis of the multi-ledger record list requirements, the process further includes: The authentication symbol is embedded into the income, expenditure and update information of the multi-ledger record list, and the income, expenditure and update information of the multi-ledger record list is reorganized to determine the income, expenditure and update information of the multi-ledger record list with the authentication symbol.

10. A system construction method applicable to multiple ledgers and multiple systems according to claim 7, characterized in that, The monitoring and management of the multi-ledger record list information based on the optimization report specifically includes: obtaining the authentication symbol in the optimization report; and monitoring and managing the multi-ledger record list information based on the authentication symbol.

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