Smart City Integrated Management System

By designing a smart city comprehensive management system and using a security controller to achieve multiple access modes, it solves the problems of complex data acquisition and sensitive data approval, and realizes flexible data access control and efficient data sharing.

CN116886429BActive Publication Date: 2025-08-26SHAANXI FOCUS SPATIAL DATA TECH SERVICE CO LTD
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Patent Information

Application Number
CN202311037707.5
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-08-17
Publication Date
2025-08-26
Estimated Expiration
2043-08-17

AI Technical Summary

Technical Problem

The data acquisition methods in the existing smart city systems are complex, which leads to inconvenience in data sharing. The acquisition of sensitive data requires complex approval, and lacks flexibility.

Method used

A smart city comprehensive management system is designed, using the guest client to connect with the data server, and the authorized access mode, conditional access mode and guest access mode are realized through the security controller. Components such as secure access identification unit, control logic unit and standby setter are used to achieve control and switching of different access permissions.

Benefits of technology

It realizes flexible data access control, simplifies the data acquisition process, improves data sharing efficiency, and ensures the security and access rights management of sensitive data.

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Abstract

The present invention discloses a smart city integrated management system, comprising: multiple visitor clients, and a data server connected to the multiple visitor clients; the visitor clients comprise: a security controller having an authorized access mode, a conditional visitor access mode, and a visitor access mode; the security controller comprises: a security control logic module and a control processing module; the security control logic module comprises a security access identification unit and a control logic unit; the control processing module comprises a standby setter, a standby access processor, and a security control unit; the present application provides the following access modes by setting up a security controller: an authorized access mode, a conditional visitor access mode, and a visitor access mode; under different access modes, visitors have different permissions.
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Description

Technical Field

[0001] The present invention relates to the field of electronic information technology, and in particular to a smart city integrated management system. Background Art

[0002] Smart city refers to a new concept and model that uses new-generation information technologies such as the Internet of Things, cloud computing, big data, and spatial geographic information integration to promote intelligent urban planning, construction, management, and services. It mainly collects data information generated by various terminals to the system server for data organization, classification, and storage, so that the data can be comprehensively utilized.

[0003] Currently, the only way to obtain data from the system server is through complex data access procedures, which is not conducive to data sharing. Therefore, some literature now points out that data can be divided into two categories. Data that does not involve approval can be freely accessed, such as city map information, planning information, and convenient service information. Some data has certain data sensitivity and must be approved before it can be obtained, and each acquisition requires approval. Based on this, the present application provides a smart city integrated management system to control data acquisition in different modes. Summary of the Invention

[0004] In view of this, an object of the present invention is to provide a smart city integrated management system.

[0005] The present invention provides a smart city integrated management system, comprising:

[0006] a plurality of guest clients, and a data server connected to the plurality of guest clients;

[0007] The visitor client includes:

[0008] A security controller having an authorized access mode, a conditional guest access mode, and a guest access mode, the security controller comprising:

[0009] A safety control logic module, the safety control logic module comprising:

[0010] A security access identification unit is used to obtain basic information of the visitor and verify the basic information to determine whether the basic information is in the identification database. If so, the data server sends a security access identification code to the visitor registration terminal. The security access identification code is input by the visitor client for secondary verification. If the verification is passed, the user enters the authorized access mode.

[0011] a control logic unit; and

[0012] A control processing module, the control processing module comprising:

[0013] Standby setter;

[0014] Standby access processor; and

[0015] The security control unit, when the standby setter is enabled in the authorized access mode to write the security control value to the standby access processor, the standby access processor sets the guest client to a guest access mode that is conditionally used within a set time, that is, a conditional guest access mode. At this time, the security control unit is used to monitor in real time whether there is an input of a wake-up instruction; when the guest client recognizes the basic information of the visitor again through the security access identification unit within the set time in the guest access mode, the standby setter is automatically called, and the decryption value is input in the guest access mode using the standby setter. When the standby access processor receives the decrypted value, it verifies it. If the decrypted value corresponds to the security control value, the standby access processor sends a wake-up instruction to the security control unit. Based on the wake-up instruction, the security control unit switches the guest access mode that is conditionally used within the set time to the authorized access mode.

[0016] Preferably, after the visitor client identifies the visitor's basic information again through the security access identification unit in the visitor access mode, if the standby access processor verifies the access timeout, a timeout feedback instruction is sent to the security control unit. Based on the timeout feedback instruction, the security control unit switches the access mode from conditional visitor access mode to visitor access mode through the connection control logic unit, and at the same time turns off the standby access processor.

[0017] Preferably, the security access identification unit includes:

[0018] Collector, used to collect basic information of visitors;

[0019] The authenticator is used to obtain the basic information of the visitor, compile the basic information of the visitor according to the set rules, and send it to the data server. The data server interprets the basic information according to the set interpretation rules and calls the identification library to verify the basic information. If the basic information is in the identification library, on the one hand, the data server sends a verification pass instruction to the authenticator accordingly, and based on the verification pass instruction, the control logic unit switches the visitor access mode of the visitor client to the conditional visitor access mode; on the other hand, the data server sends a security access identification code to the visitor registration terminal, and the security access identification code is entered by the visitor client for secondary verification. After the verification is passed, the conditional visitor access mode is switched to the authorized access mode.

[0020] Preferably, the collector is connected to a card reader to obtain the basic information of the visitor through the card reader.

[0021] Preferably, the control logic unit includes:

[0022] A memory configured to store logic rule configuration files and operation scripts issued by the data server;

[0023] an executor configured to execute the logic rules written in the logic rule configuration file based on the controlled signal, and control switching between the authorized access mode, the conditional guest access mode, and the guest access mode based on the logic rules;

[0024] The trigger is configured to load an operation script to generate a controlled signal for the actuator, and the operation script is configured to select corresponding operation script content based on the source of the stimulating controlled signal to form the controlled signal, and send the controlled signal from the trigger to the actuator for execution.

[0025] Preferably, the source of the excitation controlled signal includes:

[0026] receiving an authorized access exit request during the authorized access mode;

[0027] The standby access processor verifies that the access has timed out, and the security control unit receives a timeout feedback instruction;

[0028] The data server sends a verification pass instruction to the authenticator of the visitor client;

[0029] A verification feedback instruction is generated by entering the security access identification code in the visitor client for secondary verification.

[0030] Preferably, the standby setter includes:

[0031] an input setting unit for writing a security control value to the standby access processor in an authorized access mode;

[0032] The time setting unit is used to write the effective time into the security control value and send a timing operation instruction to the standby access processor.

[0033] Preferably, the standby access processor includes:

[0034] A clock unit, for providing a standard clock signal and for performing timing configuration operations;

[0035] a configuration processing unit, configured to perform timing configuration via the clock unit based on the timing operation instruction sent by the time setting unit, and at the same time, configure the input safety control value into a valid state and an invalid state under the constraint of the timing configuration;

[0036] The verification unit is used to receive the decrypted value, and on the one hand, verify the status of the security control value based on the received decrypted value to check whether it is in a valid state or an invalid state, and on the other hand, perform a decryption operation based on the verification of the security control value status.

[0037] Preferably, the verification of the safety control value state includes:

[0038] Verification of the valid and invalid states of safety control values;

[0039] In the valid state, the decrypted value is verified against the security control value. If the decrypted value matches the security control value, the standby access processor sends a wake-up instruction to the security control unit.

[0040] In the invalid state, a timeout feedback instruction is generated and sent to the safety control unit.

[0041] Preferably, the safety control unit includes:

[0042] a monitoring unit, connected to the standby access processor, and configured to receive a wake-up instruction or a timeout feedback instruction sent by the standby access processor;

[0043] The security control management unit is connected to the control logic unit, and generates a controlled signal for the actuator by loading and running the script based on a wake-up instruction or a timeout feedback instruction, and sends the controlled signal to the actuator; the actuator executes the logic rules written in the logic rule configuration file based on the controlled signal, and controls the control switching between the authorized access mode, the conditional guest access mode and the guest access mode based on the logic rules.

[0044] This application provides the following access modes by setting up a security controller: authorized access mode, conditional guest access mode, and guest access mode; in different access modes, guests have different permissions. For example, in guest access mode, only shared data (public data) can be accessed. Authorized access mode means that registered users obtain data with corresponding permissions after logging in and obtaining verification. Conditional guest access mode means that during a short pause in the authorized access mode, the authorized access mode can be restored by logging in again. BRIEF DESCRIPTION OF THE DRAWINGS

[0045] Figure 1 It is a schematic diagram of the framework principle of the present invention;

[0046] Figure 2 This is a schematic diagram of the framework principle of the safety control logic module in the present invention;

[0047] Figure 3 Schematic diagram of the framework principle of the control processing module in the present invention. Implementation Method

[0048] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0049] Before implementing this application, the following operations need to be completed:

[0050] Visitors register with the data server through the visitor client. When registering, they need to submit necessary basic documents, which are then uploaded by the visitor client to the data server for verification.

[0051] After the data server verifies the information, it will send a verification code to the mobile phone number reserved by the visitor. Each time the visitor logs in, in addition to verifying the basic information, the data server will send a dynamic code to the reserved mobile phone number for secondary verification. Only after the verification is passed can the data be obtained.

[0052] During the above registration, you need to check the corresponding data field in the guest client. The data server can restrict the data field that each visitor can access. After successful registration, the visitor can only access the data in the corresponding data field through the guest client, and has no permission to access the data in other fields.

[0053] Reference Figures 1 to 3 The present invention provides a smart city integrated management system, comprising:

[0054] a plurality of guest clients, and a data server connected to the plurality of guest clients;

[0055] The visitor client includes:

[0056] A security controller having an authorized access mode, a conditional guest access mode, and a guest access mode, the security controller comprising:

[0057] A safety control logic module, the safety control logic module comprising:

[0058] A security access identification unit is used to obtain basic information of the visitor and verify the basic information to determine whether the basic information is in the identification database. If so, the data server sends a security access identification code to the visitor registration terminal. The security access identification code is input by the visitor client for secondary verification. If the verification is passed, the user enters the authorized access mode.

[0059] A control logic unit, the control logic unit comprising:

[0060] A memory configured to store logic rule configuration files and operation scripts issued by the data server;

[0061] an executor configured to execute the logic rules written in the logic rule configuration file based on the controlled signal, and control switching between the authorized access mode, the conditional guest access mode, and the guest access mode based on the logic rules;

[0062] a trigger configured to load an operation script to generate a controlled signal for the actuator, wherein the operation script is configured to select corresponding operation script content based on a source that stimulates the controlled signal to form the controlled signal, and send the controlled signal from the trigger to the actuator for execution; and

[0063] A control processing module, the control processing module comprising:

[0064] Standby setter;

[0065] Standby access processor; and

[0066] The security control unit, when the standby setter is enabled in the authorized access mode to write the security control value to the standby access processor, the standby access processor sets the guest client to a guest access mode that is conditionally used within a set time, that is, a conditional guest access mode. At this time, the security control unit is used to monitor in real time whether there is an input of a wake-up instruction; when the guest client recognizes the basic information of the visitor again through the security access identification unit within the set time in the guest access mode, the standby setter is automatically called, and the decryption value is input in the guest access mode using the standby setter. When the standby access processor receives the decrypted value, it verifies it. If the decrypted value corresponds to the security control value, the standby access processor sends a wake-up instruction to the security control unit. Based on the wake-up instruction, the security control unit switches the guest access mode that is conditionally used within the set time to the authorized access mode.

[0067] When the guest client identifies the visitor's basic information again through the security access identification unit in the guest access mode, if the standby access processor verifies the access timeout, it sends a timeout feedback instruction to the security control unit. Based on the timeout feedback instruction, the security control unit switches the access mode from conditional guest access mode to guest access mode through the connection control logic unit, and at the same time turns off the standby access processor.

[0068] In the above, the security access identification unit includes:

[0069] A collector for collecting basic information of visitors; preferably, the collector is connected to a card reader to obtain the basic information of visitors through the card reader;

[0070] The authenticator is used to obtain the basic information of the visitor, compile the basic information of the visitor according to the set rules, and send it to the data server. The data server interprets the basic information according to the set interpretation rules and calls the identification library to verify the basic information. If the basic information is in the identification library, on the one hand, the data server sends a verification pass instruction to the authenticator accordingly, and based on the verification pass instruction, the control logic unit switches the visitor access mode of the visitor client to the conditional visitor access mode; on the other hand, the data server sends a security access identification code to the visitor registration terminal, and the security access identification code is entered by the visitor client for secondary verification. After the verification is passed, the conditional visitor access mode is switched to the authorized access mode.

[0071] In the above, the control logic unit includes:

[0072] A memory configured to store logic rule configuration files and operation scripts issued by the data server;

[0073] an executor configured to execute the logic rules written in the logic rule configuration file based on the controlled signal, and control switching between the authorized access mode, the conditional guest access mode, and the guest access mode based on the logic rules;

[0074] The trigger is configured to load an operation script to generate a controlled signal for the actuator, and the operation script is configured to select corresponding operation script content based on the source of the stimulating controlled signal to form the controlled signal, and send the controlled signal from the trigger to the actuator for execution.

[0075] In the above, the sources of the excitation controlled signal include:

[0076] receiving an authorized access exit request during the authorized access mode;

[0077] The standby access processor verifies that the access has timed out, and the security control unit receives a timeout feedback instruction;

[0078] The data server sends a verification pass instruction to the authenticator of the visitor client;

[0079] A verification feedback instruction is generated by entering the security access identification code in the visitor client for secondary verification.

[0080] In the above, the standby setting device includes:

[0081] an input setting unit for writing a security control value to the standby access processor in an authorized access mode;

[0082] The time setting unit is used to write the effective time into the security control value and send a timing operation instruction to the standby access processor.

[0083] In the above, the standby access processor includes:

[0084] A clock unit, for providing a standard clock signal and for performing timing configuration operations;

[0085] a configuration processing unit, configured to perform timing configuration via the clock unit based on the timing operation instruction sent by the time setting unit, and at the same time, configure the input safety control value into a valid state and an invalid state under the constraint of the timing configuration;

[0086] The verification unit is used to receive the decrypted value, and on the one hand, verify the status of the security control value based on the received decrypted value to check whether it is in a valid state or an invalid state, and on the other hand, perform a decryption operation based on the verification of the security control value status.

[0087] Preferably, the verification of the safety control value state includes:

[0088] Verification of the valid and invalid states of safety control values;

[0089] In the valid state, the decrypted value is verified against the security control value. If the decrypted value matches the security control value, the standby access processor sends a wake-up instruction to the security control unit.

[0090] In the invalid state, a timeout feedback instruction is generated and sent to the safety control unit.

[0091] In the above, the safety control unit includes:

[0092] a monitoring unit, connected to the standby access processor, and configured to receive a wake-up instruction or a timeout feedback instruction sent by the standby access processor;

[0093] The security control management unit is connected to the control logic unit, and generates a controlled signal for the actuator by loading and running the script based on a wake-up instruction or a timeout feedback instruction, and sends the controlled signal to the actuator; the actuator executes the logic rules written in the logic rule configuration file based on the controlled signal, and controls the control switching between the authorized access mode, the conditional guest access mode and the guest access mode based on the logic rules.

[0094] The basic principle of this application is: when a visitor accesses data, if the visitor access mode is adopted, the visitor's basic information is read by the card reader to enter the public access disk, and the shared data can be read through the public access disk; if it is an authorized access mode, the visitor's basic information is obtained through the card reader, and the visitor's basic information is obtained by the verifier of the visitor client, and the visitor's basic information is compiled according to the set rules and sent to the data server. The data server interprets the basic information according to the set interpretation rules and calls the identification library to verify the basic information. If the basic information is in the identification library, on the one hand, the data server sends a verification pass instruction to the verifier of the visitor client accordingly, and based on the verification pass instruction, the control logic unit switches the visitor access mode of the visitor client to the conditional visitor access mode; on the other hand, the data server sends a security access identification code (dynamic code) to the visitor registration terminal, and the security access identification code is entered by the visitor client for secondary verification. After the verification is passed, the conditional visitor access mode is switched. to the authorized access mode. In the authorized access mode, the visitor can access the data within the corresponding domain. During this process, if the visitor accesses the data after a short pause, at this time, the security control value is written to the standby access processor in the authorized access mode through the input setting unit, and the effective time is written for the security control value through the time setting unit, and a timing operation instruction is sent to the standby access processor. Specifically, the effective time has a set upper limit, such as not more than 120 minutes. At this time, the standby access processor is connected to the clock unit to perform a countdown operation. After the visitor identifies the basic information of the visitor again through the security access identification unit on the visitor client, the input setting unit is used to input the decryption value in the visitor access mode. When the standby access processor receives the decryption value, it is verified. If the decryption value corresponds to the security control value, the standby access processor sends a wake-up instruction to the security control unit. Based on the wake-up instruction, the security control unit switches the visitor access mode that is conditionally used within the set time to the authorized access mode. When the guest client identifies the visitor's basic information again through the security access identification unit in the guest access mode, if the standby access processor verifies the access timeout, it sends a timeout feedback instruction to the security control unit. Based on the timeout feedback instruction, the security control unit switches the access mode from conditional guest access mode to guest access mode through the connection control logic unit, and at the same time turns off the standby access processor.

[0095] This application provides the following access modes by setting up a security controller: authorized access mode, conditional guest access mode, and guest access mode; in different access modes, guests have different permissions. For example, in guest access mode, only shared data (public data) can be accessed. Authorized access mode means that registered users obtain data with corresponding permissions after logging in and obtaining verification. Conditional guest access mode means that during a short pause in the authorized access mode, the authorized access mode can be restored by logging in again. Example

[0096] This application provides a smart city comprehensive management method, including the following steps:

[0097] In guest access mode: when a guest accesses data, the guest's basic information is read by the card reader to enter the public access disk, and the shared data can be read through the public access disk;

[0098] In authorized access mode:

[0099] The basic information of the visitor is obtained through the card reader. The authenticator of the visitor client obtains the basic information of the visitor and compiles the basic information of the visitor according to the set rules and sends it to the data server. The data server interprets the basic information according to the set interpretation rules and calls the identification library to verify the basic information. If the basic information is in the identification library, on the one hand, the data server correspondingly sends a verification pass instruction to the authenticator of the visitor client. Based on the verification pass instruction, the control logic unit switches the visitor access mode of the visitor client to the conditional visitor access mode; on the other hand, the data server sends a security access identification code (dynamic code) to the visitor registration terminal. The security access identification code is input by the visitor client for secondary verification. After the verification is passed, the conditional visitor access mode is switched to the authorized access mode.

[0100] When the standby setter is enabled in the authorized access mode to write the security control value to the standby access processor, the standby access processor sets the guest client to a guest access mode that is conditionally used within a set time (i.e., a conditional guest access mode). At this time, the security control unit is used to monitor in real time whether a wake-up instruction is input. When the guest client recognizes the basic information of the visitor again through the security access identification unit within the set time in the guest access mode, the standby setter is automatically called, and a decryption value is input in the guest access mode using the standby setter. When the standby access processor receives the decryption value, it verifies it. If the decryption value corresponds to the security control value, the standby access processor sends a wake-up instruction to the security control unit. Based on the wake-up instruction, the security control unit switches the guest access mode that is conditionally used within the set time to the authorized access mode.

[0101] or, when the guest client re-identifies the basic information of the visitor through the security access identification unit in the guest access mode, if the standby access processor times out in verifying the access, a timeout feedback instruction is sent to the security control unit, and based on the timeout feedback instruction, the security control unit switches the access mode from the conditional guest access mode to the guest access mode through the connection control logic unit, and simultaneously shuts down the standby access processor;

[0102] Or, when an authorized access exit request is received during the authorized access mode, the access mode is switched from the authorized access mode to the guest access mode.

[0103] While embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions, and variations may be made to these embodiments without departing from the principles and spirit of the invention, and that the scope of the invention is defined by the appended claims and their equivalents.

Claims

1. Smart city integrated management system, characterized by: include: a plurality of guest clients, and a data server connected to the plurality of guest clients; The visitor client includes: A security controller having an authorized access mode, a conditional guest access mode, and a guest access mode, the security controller comprising: A safety control logic module, the safety control logic module comprising: A security access identification unit is used to obtain basic information of the visitor and verify the basic information to determine whether the basic information is in the identification database. If so, the data server sends a security access identification code to the visitor registration terminal. The security access identification code is input by the visitor client for secondary verification. If the verification is passed, the user enters the authorized access mode. a control logic unit; and A control processing module, the control processing module comprising: Standby setter; Standby access processor; and The security control unit, when the standby setter is enabled in the authorized access mode to write the security control value to the standby access processor, the standby access processor sets the guest client to a guest access mode that is conditionally used within a set time, that is, a conditional guest access mode. At this time, the security control unit is used to monitor in real time whether there is an input of a wake-up instruction; when the guest client recognizes the basic information of the visitor again through the security access identification unit within the set time in the guest access mode, the standby setter is automatically called, and the decryption value is input in the guest access mode using the standby setter. When the standby access processor receives the decrypted value, it verifies it. If the decrypted value corresponds to the security control value, the standby access processor sends a wake-up instruction to the security control unit. Based on the wake-up instruction, the security control unit switches the guest access mode that is conditionally used within the set time to the authorized access mode.

2. The smart city integrated management system according to claim 1, characterized in that: When the guest client identifies the visitor's basic information again through the security access identification unit in the guest access mode, if the standby access processor verifies the access timeout, it sends a timeout feedback instruction to the security control unit. Based on the timeout feedback instruction, the security control unit switches the access mode from conditional guest access mode to guest access mode through the connection control logic unit, and at the same time turns off the standby access processor.

3. The smart city integrated management system according to claim 1, characterized in that: The security access identification unit includes: Collector, used to collect basic information of visitors; The authenticator is used to obtain the basic information of the visitor, compile the basic information of the visitor according to the set rules, and send it to the data server. The data server interprets the basic information according to the set interpretation rules and calls the identification library to verify the basic information. If the basic information is in the identification library, on the one hand, the data server sends a verification pass instruction to the authenticator accordingly, and based on the verification pass instruction, the control logic unit switches the visitor access mode of the visitor client to the conditional visitor access mode; on the other hand, the data server sends a security access identification code to the visitor registration terminal, and the security access identification code is entered by the visitor client for secondary verification. After the verification is passed, the conditional visitor access mode is switched to the authorized access mode.

4. The smart city integrated management system according to claim 3, characterized in that: The collector is connected to the card reader to obtain the basic information of the visitor through the card reader.

5. The smart city integrated management system according to claim 4, characterized in that: The control logic unit includes: A memory configured to store logic rule configuration files and operation scripts issued by the data server; an executor configured to execute the logic rules written in the logic rule configuration file based on the controlled signal, and control switching between the authorized access mode, the conditional guest access mode, and the guest access mode based on the logic rules; The trigger is configured to load an operation script to generate a controlled signal for the actuator, and the operation script is configured to select corresponding operation script content based on the source of the stimulating controlled signal to form the controlled signal, and send the controlled signal from the trigger to the actuator for execution.

6. The smart city integrated management system according to claim 5, characterized in that: Sources of controlled excitation signals include: receiving an authorized access exit request during the authorized access mode; The standby access processor verifies that the access has timed out, and the security control unit receives a timeout feedback instruction; The data server sends a verification pass instruction to the authenticator of the visitor client; A verification feedback instruction is generated by entering the security access identification code in the visitor client for secondary verification.

7. The smart city integrated management system according to claim 6, characterized in that: The standby setter includes: an input setting unit for writing a security control value to the standby access processor in an authorized access mode; The time setting unit is used to write the effective time into the security control value and send a timing operation instruction to the standby access processor.

8. The smart city integrated management system according to claim 7, characterized in that: The standby access processor comprises: A clock unit, for providing a standard clock signal and for performing timing configuration operations; a configuration processing unit, configured to perform timing configuration via the clock unit based on the timing operation instruction sent by the time setting unit, and at the same time, configure the input safety control value into a valid state and an invalid state under the constraint of the timing configuration; The verification unit is used to receive the decrypted value, and on the one hand, verify the status of the security control value based on the received decrypted value to check whether it is in a valid state or an invalid state, and on the other hand, perform a decryption operation based on the verification of the security control value status.

9. The smart city integrated management system according to claim 8, characterized in that: Verification of the safety control value status includes: Verification of the valid and invalid states of safety control values; In the valid state, the decrypted value is verified against the security control value. If the decrypted value matches the security control value, the standby access processor sends a wake-up instruction to the security control unit. In the invalid state, a timeout feedback instruction is generated and sent to the safety control unit.

10. The smart city integrated management system according to claim 9, characterized in that: The safety control unit comprises: a monitoring unit, connected to the standby access processor, and configured to receive a wake-up instruction or a timeout feedback instruction sent by the standby access processor; The security control management unit is connected to the control logic unit, and generates a controlled signal for the actuator by loading and running the script based on a wake-up instruction or a timeout feedback instruction, and sends the controlled signal to the actuator; the actuator executes the logic rules written in the logic rule configuration file based on the controlled signal, and controls the control switching between the authorized access mode, the conditional guest access mode and the guest access mode based on the logic rules.

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