AI operation anti-coercion false touch control method and system with three-level confirmation and cooling-off period
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- NINGBO TIANWO ENTERPRISE MANAGEMENT CO LTD
- Filing Date
- 2026-04-23
- Publication Date
- 2026-08-07
AI Technical Summary
[0002]现有AI交互与智能硬件控制系统普遍采用单次密码、单点触控等简易确认机制,未针对数字人格修改、数据继承、权限变更等高敏感操作设置多级校验与决策缓冲,极易因误触、冲动操作引发数据篡改与权限滥用,同时缺乏有效的胁迫行为识别与阻断能力,无法抵御外力胁迫下的非法操作,难以满足数字人格传承场景的高安全管控需求
[0014]Based on the above, through a dual control system of three-level confirmation and tiered cooling-off periods, illegal execution caused by accidental touches, impulsive operations, and external coercion is blocked at the source. Combined with multi-dimensional coercion identification and linkage mechanisms such as hardware locking and data self-destruction, the security of highly sensitive operations such as digital personality modification, data inheritance, and permission authorization is significantly improved, completely avoiding the risks of data tampering, leakage, and unauthorized access. This invention strictly adheres to the bottom line of data sovereignty and user control, achieving one-way control where terminal devices only execute and do not store original data, ensuring that data remains local throughout the entire process and does not leave the domain. Simultaneously, end-to-end evidence storage ensures traceability and immutability of actions, balancing compliant rights confirmation and user self-control, perfectly adapting to the security and ethical requirements of digital personality inheritance scenarios.
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Figure CN122528128A_ABST
Abstract
Description
Technical Field
[0001] This invention belongs to the field of AI operation anti-coercion accidental touch control technology, and particularly relates to an AI operation anti-coercion accidental touch control method and system with three-level confirmation and cooling-off period. Background Technology
[0002] Existing AI interaction and smart hardware control systems generally employ simple confirmation mechanisms such as single-password and single-point touch, lacking multi-level verification and decision buffers for highly sensitive operations such as digital personality modification, data inheritance, and permission changes. This makes them highly susceptible to data tampering and permission abuse due to accidental or impulsive actions. Furthermore, they lack effective coercive behavior identification and blocking capabilities, failing to resist illegal operations under external coercion and thus failing to meet the high security control requirements of digital personality inheritance scenarios. Current technical solutions do not achieve dynamic matching between operation levels and security controls, nor do they integrate biometrics, environmental characteristics, and hardware-level security linkage mechanisms. Third parties and terminal devices can easily access and store users' original data without authorization, compromising data sovereignty and user control. Moreover, they lack a traceable and tamper-proof operation evidence storage system, fundamentally conflicting with the core requirements of digital personality containers: data localization, user sovereignty, and prevention of mind control. Summary of the Invention
[0003] In view of the aforementioned problems, and in conjunction with the first aspect of the present invention, embodiments of the present invention provide a method for preventing coercive accidental touches in AI operation with three-level confirmation and a cooling-off period, the method comprising: Includes the following steps: Operations are classified into three levels based on their sensitivity: ordinary operations, critical operations, and core operations. Based on the operation level, a three-level verification process is triggered, consisting of Level 1 basic confirmation, Level 2 key confirmation, and Level 3 final confirmation. Configure tiered cooling-off periods for different levels of operations, and support operation cancellation and permission circuit breaking during the cooling-off period; Collect behavioral, biological, and environmental characteristics to identify multi-dimensional stress states; When a coercion or accidental touch is detected, hardware-level security linkage control is triggered. All confirmation, cooling-off period, and circuit breaker operations are traceable and documented throughout the entire process.
[0004] Preferably, the three-level classification rule is as follows: ordinary operations correspond to basic function settings, key operations correspond to hardware permissions, data authorization, and time parameter modification, and core operations correspond to digital personality modification, inheritance authorization, and cross-border data transmission.
[0005] Preferably, the tiered cooling-off periods are configured as follows: 0-5s for normal operations, 30-60s for critical operations, and 5-15min for core operations.
[0006] Preferably, the three-level confirmation method is as follows: the first level of confirmation uses fingerprint / password / face verification, the second level of confirmation uses voice repetition / secondary information entry verification, and the third level of confirmation uses DNA verification + security chip encryption verification.
[0007] Preferably, the multi-dimensional stress identification includes: collecting behavioral characteristics such as operation speed and operation frequency; collecting biological characteristics such as heart rate, retina, and living state; and collecting environmental characteristics such as geofence, access IP, and environmental noise.
[0008] Preferably, the hardware-level security linkage includes: permission circuit breaking and hardware locking when coercion is triggered, data self-destruction triggered by illegal disassembly, and DNA verification required for unlocking core operations.
[0009] Preferably, the terminal device only obtains operation execution permissions and has no right to store, forward, or retrieve original personality data, ensuring that the data remains local throughout the entire process and does not leave the domain.
[0010] Preferably, commercial value-added services and computing power sharing functions are disabled by default and can only be enabled by the user after completing three levels of confirmation.
[0011] Preferably, all operations are recorded on the blockchain, which is tamper-proof and compatible with digital personality inheritance and legal confirmation of rights.
[0012] Furthermore, embodiments of the present invention also provide an AI operation anti-coercion accidental touch control system with three-level confirmation and a cooling-off period, characterized in that it includes: A processor; a machine-readable storage medium for storing machine-executable instructions of the processor; wherein the processor is configured to execute the aforementioned AI operation anti-coercion accidental touch control method with three-level confirmation and cool-down period by executing the machine-executable instructions.
[0013] In another aspect, embodiments of the present invention also provide a computer program product, the computer program product including machine-executable instructions, the machine-executable instructions being stored in a computer-readable storage medium, the processor of a computer device reading the machine-executable instructions from the computer-readable storage medium, the processor executing the machine-executable instructions, causing the computer device to execute the above-mentioned AI operation anti-coercion accidental touch control method with three-level confirmation and cooling-off period.
[0014] Based on the above, through a dual control system of three-level confirmation and tiered cooling-off periods, illegal execution caused by accidental touches, impulsive operations, and external coercion is blocked at the source. Combined with multi-dimensional coercion identification and linkage mechanisms such as hardware locking and data self-destruction, the security of highly sensitive operations such as digital personality modification, data inheritance, and permission authorization is significantly improved, completely avoiding the risks of data tampering, leakage, and unauthorized access. This invention strictly adheres to the bottom line of data sovereignty and user control, achieving one-way control where terminal devices only execute and do not store original data, ensuring that data remains local throughout the entire process and does not leave the domain. Simultaneously, end-to-end evidence storage ensures traceability and immutability of actions, balancing compliant rights confirmation and user self-control, perfectly adapting to the security and ethical requirements of digital personality inheritance scenarios. Attached Figure Description
[0015] Figure 1 This is a schematic diagram of the execution flow of the AI operation anti-coercion accidental touch control method with three-level confirmation and cooling-off period provided in the embodiment of the present invention.
[0016] Figure 2 This is a schematic diagram of exemplary hardware and software components of an AI operation anti-coercion accidental touch control system with three-level confirmation and cooling-off period provided in an embodiment of the present invention. Detailed Implementation
[0017] The present invention will now be described in detail with reference to the accompanying drawings. Figure 1 This is a flowchart illustrating an AI operation anti-coercion accidental touch control method with three-level confirmation and a cooling-off period provided in an embodiment of the present invention. The following is a detailed description of the AI operation anti-coercion accidental touch control method with three-level confirmation and a cooling-off period.
[0018] Includes the following steps: Operational level classification: Based on sensitivity, operations are divided into three levels: ordinary operations, critical operations, and core operations. Level 3 confirmation trigger: Normal → Level 1 Basic Confirmation; Critical → Level 2 Critical Confirmation; Core → Level 3 Ultimate Confirmation; Tiered cooling-off period configuration: Level 1 0-5s, Level 2 30-60s, Level 3 5-15min, supports cancellation / circuit breaker during the cooling-off period; Multi-dimensional stress identification: Collect behavioral characteristics (operation speed), biometric characteristics (fingerprint / heart rate / retina), and environmental characteristics (geofencing) to determine the stress state; Hardware-level security linkage: When coercion / accidental touch is established, permission circuit breaking and hardware locking are triggered, and core operations require DNA verification to unlock; Operation traceability and evidence preservation: All confirmation, cooling-off period, and circuit breaker actions are recorded on the blockchain, making them tamper-proof and compatible with legal rights confirmation.
[0019] Example 1: Modification of core data of digital personality (core operation); Operation trigger: When a user initiates a modification to digital personality memory / personality parameters, the system determines it to be a core operation; Level 3 confirmation: Level 1: Fingerprint + retinal verification; Level 2: Verbal confirmation instruction repeats; Level 3: DNA sample verification (available only for inheritance / ownership confirmation scenarios); Cooling-off period: 10-minute cooling-off period with a countdown timer on the interface, supporting one-click undo; Coercion detection: If abnormal heart rate or rapid operation is detected, the process will be paused immediately and the hardware will be locked. Result: The cooling-off period ended without any abnormalities, and the modifications were executed; the entire process was recorded on the blockchain.
[0020] Example 2: Enabling Digital Personality Inheritance Permissions (Core Operation) Operation trigger: The applicant initiates the authorization for the inheritance of digital personality, which is determined to be a core operation; Level 3 confirmation: Level 1: Liveness detection; Level 2: Secondary entry of heir information; Level 3: DNA verification of the deceased + legal confirmation of rights; Cooling-off period: 15 minutes, during which a warning is sent to the guardian; Coercion detection: Geofencing beyond designated boundaries, voice messages containing coercive words, triggering access control and hardware alarms; Result: Verification passed and no abnormalities were observed during the cooling-off period. Inheritance permissions were granted, and data was only transferred locally.
[0021] Example 3: Smart Hardware Disassembly / Disassembly Operation (Critical Operation) Operation trigger: The hardware disassembly sensor triggered the operation, which was determined to be a critical operation; Level 3 confirmation: Level 1: Fingerprint verification on the device body; Level 2: Written confirmation of the reason for disassembly; Level 3: Security chip encryption verification; Cooling-off period: 60 seconds, a forced pop-up window will display a risk warning; Coercion detection: The intervention of disassembly tools or abnormal vibration of the device triggers hardware self-destruction and data wipe; Result: Legitimate disassembly requires confirmation, while illegal disassembly results in immediate data self-destruction. We must adhere to the principle of keeping data within the domain.
[0022] Example 4: Authorization for Retrieving Raw Data from Robot Terminal (Critical Operation) Operation trigger: Requesting retrieval of the robot terminal's original personality data, determined to be a critical operation; Level 3 confirmation: Level 1: Terminal binding verification; Level 2: Select and confirm the scope of permissions; Level 3: User-initiated authorization signature; Cool-off period: 45 seconds, during which the terminal only has execution permissions and no storage / forwarding rights; Coercion detection: If the terminal accesses from a different location or the command is abnormal, immediately disconnect the circuit breaker and disconnect the connection; Result: After authorization is granted, the terminal only executes instructions and does not access the original data, which conforms to the one-way control principle.
[0023] Example 5: Virtual Human Time Calibration / Modification Operation (Critical Operation) Operation trigger: Modifying the virtual avatar's time / memory mode time is determined to be a critical operation; Level 3 confirmation: Level 1: Password verification; Level 2: Time synchronization rules confirmed; Level 3: Real-time comparison and verification; Cool-off period: 30 seconds, with a message indicating "Main time is synchronized with reality"; Coercion detection: Multiple modifications in a short period of time, chaotic instructions; lock time parameters and prohibit modification. Result: After confirmation and calibration, the main time is anchored to reality, and the memory mode is independently controllable.
[0024] Example 6: Application for Export of Digital Personality Data (Core Operation) Operation trigger: Initiating a cross-border data transfer request is identified as a core operation; Level 3 confirmation: Level 1: Legal verification of the place of origin; Level 2: User-initiated authorization; Level 3: DNA + geofencing dual verification; Cooling-off period: 12 minutes, triggering a legal firewall warning; Coercion detection: Access from overseas IP addresses, forced retrieval of commands, blocking exit from abroad, and locking data; Result: Only users who actively authorize and comply with regulations are allowed limited overseas travel, thus upholding data sovereignty.
[0025] Example 7: Enabling the Public Welfare / Commercialization Function of Computing Power (Normal → Key Operation) Operation trigger: Enable computing power sharing / value-added services (default is off) and is considered a critical operation; Level 3 confirmation: Level 1: Read and confirm the functional description; Level 2: Confirmation of Revenue / Rules; Level 3: Privacy permissions are checked; Cool-off period: 50 seconds, with a message indicating "Can be closed at any time"; Coercion detection: If the device is enabled in batches or not operated by the user, restore it to the default off state; Result: It only takes effect if the user actively enables it, eliminating default push notifications and complying with commercial bottom lines.
[0026] Example 8: Data ownership confirmation and permission allocation from multiple perspectives (key operation); Operation trigger: Data ownership confirmation based on multiple people's recording perspectives is determined to be a critical operation; Level 3 confirmation: Level 1: Select the data attribution for each perspective; Level 2: Secondary confirmation of the scope of permissions; Level 3: Biometric verification for all personnel; Cooling-off period: 60 seconds, during which the results of the property rights confirmation are publicized; Coercion detection: Unauthorized authorization, exceeding of permissions, revocation of assignment, and return to the initial state; Result: The ownership is clearly defined, and only the owner can view the data, ensuring clear data ownership.
[0027] Based on the same inventive concept, please refer to Figure 2 This document shows a schematic block diagram of an AI operation anti-coercion and anti-mistouch control system 100 with a three-level confirmation and cooling-off period, provided in an embodiment of this application, for executing the above-described AI operation anti-coercion and anti-mistouch control method with a three-level confirmation and cooling-off period. The AI operation anti-coercion and anti-mistouch control system 100 with a three-level confirmation and cooling-off period may include a communication unit 110, a machine-readable storage medium 120, and a processor 130.
[0028] In this embodiment, both the machine-readable storage medium 120 and the processor 130 are located within the AI operation anti-coercion accidental touch control system 100 with three-level confirmation and cool-down period, and are separately configured. However, it should be understood that the machine-readable storage medium 120 may also be independent of the AI operation anti-coercion accidental touch control system 100 with three-level confirmation and cool-down period, and may be accessed by the processor 130 via a bus interface. Alternatively, the machine-readable storage medium 120 may also be integrated into the processor 130 and may communicate and interact with external systems through the communication unit 110.
[0029] The processor 130 is the control center of the AI operation anti-coercion accidental touch control system 100 with three-level confirmation and cool-off period. It connects to various parts of the system via various interfaces and lines. By running or executing software programs and / or modules stored in the machine-readable storage medium 120, and by calling data stored in the machine-readable storage medium 120, it performs various functions and processes data of the AI operation anti-coercion accidental touch control system 100, thereby providing overall monitoring of the system. Optionally, the processor 130 may include one or more processing cores; for example, the processor 130 may integrate an application processor and a modem processor, wherein the application processor mainly handles the operating system, user interface, and applications, and the modem processor mainly handles wireless communication. It is understood that the modem processor may also not be integrated into the processor. The machine-readable storage medium 120 is used to store machine-executable instructions for executing the scheme of this application, and the processor 130 is used to execute the machine-executable instructions stored in the machine-readable storage medium 120 to realize the AI operation anti-coercion accidental touch control method with three-level confirmation and cooling-off period provided in the aforementioned method embodiment.
[0030] It should be noted that, in order to simplify the description of the present invention and thus help to understand one or more embodiments of the invention, multiple features may sometimes be grouped into one embodiment, drawing or description thereof in the foregoing description of the embodiments of the present invention.
[0031] The embodiments of this application have been described above with reference to the accompanying drawings. Unless otherwise specified, the embodiments and features in the embodiments of this application can be combined with each other. This application is not limited to the specific embodiments described above. The specific embodiments described above are merely illustrative and not restrictive. Those skilled in the art can make many other forms under the guidance of this application without departing from the spirit and scope of the claims, and all of these forms are within the protection scope of this application.
Claims
1. A method for preventing coercive accidental touch control in AI operation with three-level confirmation and a cooling-off period, characterized in that: Includes the following steps: Operations are classified into three levels based on their sensitivity: ordinary operations, critical operations, and core operations. Based on the operation level, a three-level verification process is triggered, consisting of Level 1 basic confirmation, Level 2 key confirmation, and Level 3 final confirmation. Configure tiered cooling-off periods for different levels of operations, and support operation cancellation and permission circuit breaking during the cooling-off period; Collect behavioral, biological, and environmental characteristics to identify multi-dimensional stress states; When a coercion or accidental touch is detected, hardware-level security linkage control is triggered. All confirmation, cooling-off period, and circuit breaker operations are traceable and documented throughout the entire process.
2. The AI operation anti-coercion accidental touch control method with three-level confirmation and cooling-off period according to claim 1, characterized in that: The three-level classification rule is as follows: ordinary operations correspond to basic function settings, key operations correspond to hardware permissions, data authorization, and time parameter modification, and core operations correspond to digital personality modification, inheritance authorization, and cross-border data transmission.
3. The AI operation anti-coercion accidental touch control method with three-level confirmation and cooling-off period according to claim 1, characterized in that: The tiered cooling-off periods are configured as follows: 0-5s for normal operations, 30-60s for critical operations, and 5-15min for core operations.
4. The AI operation anti-coercion accidental touch control method with three-level confirmation and cooling-off period according to claim 1, characterized in that: The three-level confirmation method is as follows: Level 1 confirmation uses fingerprint / password / face verification; Level 2 confirmation uses voice repetition / secondary information entry verification; and Level 3 confirmation uses DNA verification + security chip encryption verification.
5. The AI operation anti-coercion accidental touch control method with three-level confirmation and cooling-off period according to claim 1, characterized in that: The multi-dimensional stress identification includes: collecting behavioral characteristics such as operation speed and frequency; collecting biological characteristics such as heart rate, retina, and living state; and collecting environmental characteristics such as geofence, access IP, and environmental noise.
6. The AI operation anti-coercion accidental touch control method with three-level confirmation and cooling-off period according to claim 1, characterized in that: The hardware-level security linkage includes: permission circuit breaking and hardware locking when coercion is triggered, data self-destruction triggered by unauthorized disassembly, and DNA verification required for unlocking core operations.
7. The AI operation anti-coercion accidental touch control method with three-level confirmation and cooling-off period according to claim 1, characterized in that: Terminal devices only obtain operation execution permissions and have no right to store, forward, or retrieve original personality data. The data is localized throughout the entire process and does not leave the domain.
8. The AI operation anti-coercion accidental touch control method with three-level confirmation and cooling-off period according to claim 1, characterized in that: Commercial value-added services and computing power sharing functions are disabled by default and can only be enabled by the user after completing three levels of confirmation.
9. The AI operation anti-coercion accidental touch control method and system with three-level confirmation and cooling-off period according to claim 1, characterized in that: All operations are recorded and immutable via blockchain, making them compatible with digital personality inheritance and legal confirmation of rights.
10. An AI operation anti-coercion accidental touch control system with three-level confirmation and cooling-off period, characterized in that, include: processor; A machine-readable storage medium for storing machine-executable instructions of the processor; The processor is configured to execute the AI operation anti-coercion accidental touch control method with three-level confirmation and cooling-off period as described in any one of claims 1 to 9 by executing the machine-executable instructions.