A protocol interworking method and system of a heavy asset independent sovereign control layer and a light asset parasitic sovereign lock layer

CN122818408APending Publication Date: 2026-09-25FU QINGYUAN TECHNOLOGY (CHONGQING) CO LTD
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Patent Information

Application Number
CN202611014313.1
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2026-07-08
Publication Date
2026-09-25

AI Technical Summary

Technical Problem

当同一客户从轻资产升级到重资产(如中小企业成长为政企客户)时,需重新部署全部系统,迁移成本高

Benefits of technology

[0004]本发明提供一种重轻资产主权锁定协议互通方法,使轻资产方案与重资产方案能够共享主权控制逻辑、同步授权状态、平滑迁移。

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Abstract

The application discloses a protocol interworking method and system of a heavy asset independent sovereign control layer and a light asset parasitic sovereign locking layer. The method synchronizes the identity information, post rules, authorization state and information node structure locked by the light asset scheme to a standardized storage area by defining a standardized communication protocol between the heavy asset and the light asset. When the client upgrades from the light asset to the heavy asset, the heavy asset scheme directly reads the locked state from the storage area without reconfiguration. When the sovereign control logic or the authorization state in any scheme changes, the change is automatically synchronized to the other scheme through the standardized communication protocol. The application realizes data interworking, logic interworking and state synchronization between the heavy asset and the light asset, reduces migration cost and avoids logic splitting.
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Description

Technical Field

[0001] This invention relates to the field of artificial intelligence sovereign control technology, specifically to a method for data interoperability, logical interoperability, and state synchronization between a heavy-asset independent sovereign control layer (independently deployed, with its own interface, and not dependent on any large model) and a light-asset parasitic sovereign locking layer (parasitic on a general large model window). Background Technology

[0002] The applicant already possesses two technologies related to sovereignty control: (1) Heavy asset solution (Z001): Independent sovereign control layer, not dependent on any large model, independently deployed, with its own interface and complete control chain; (2) Light asset solution (2026110062399, mirror window): an external sovereignty locking layer that is parasitic on the general large model window, with lightweight deployment, low cost and universal application scenarios.

[0003] Both of the aforementioned technologies are used to achieve sovereignty lock-in, but heavy-asset and light-asset solutions employ different deployment methods and technical paths. When the same customer upgrades from a light-asset to a heavy-asset solution (e.g., an SME growing into a government or enterprise customer), the entire system needs to be redeployed, resulting in high migration costs. The sovereignty control logic between heavy-asset and light-asset solutions is not interoperable, meaning that once a customer chooses a light-asset solution, upgrading to a heavy-asset solution requires a complete reconfiguration. Summary of the Invention

[0004] This invention provides a method for interoperability of sovereignty locking protocols between asset-heavy and asset-light schemes, enabling asset-light and asset-heavy schemes to share sovereignty control logic, synchronize authorization status, and achieve smooth migration. Attached Figure Description

[0005] Figure 1 This is a schematic diagram of the overall architecture of the heavy and light asset protocol interoperability system of the present invention; Figure 2 This is a schematic diagram illustrating the process of smoothly migrating from a light-asset solution to a heavy-asset solution in this invention. Figure 3 This is a schematic diagram illustrating the process of automatic synchronization of status changes between heavy and light assets in this invention.

Claims

1. A protocol interoperability method between a heavy-asset independent sovereign control layer and a light-asset parasitic sovereign locking layer, characterized in that, Includes the following steps: (1) Define a standardized communication protocol between asset-heavy and asset-light solutions, including instruction format, response format and status synchronization format; (2) When the client is in the asset-light solution running state, the identity information, job rules, authorization status and information node structure locked by the asset-light solution will be synchronized to the standardized storage area; (3) When the client upgrades from the light asset solution to the heavy asset solution, the heavy asset solution directly reads the locked status from the standardized storage area without reconfiguring identity locking, job rules and authorization status; (4) When the client runs both the asset-light solution and the asset-heavy solution at the same time, the two share the authorization status and sovereign control logic through a standardized communication protocol; (5) When the sovereign control logic or authorization status in either scheme changes, the change is automatically synchronized to the other scheme through a standardized communication protocol.

2. The method according to claim 1, characterized in that: When the identity information, job rules, and authorization status in the standardized storage area are migrated from the asset-light solution to the asset-heavy solution, the original locked state remains unchanged, and the customer does not need to complete identity verification and rule injection again.

3. A protocol interoperability system for a heavy-asset independent sovereign control layer and a light-asset parasitic sovereign locking layer, characterized in that, include: (1) Standardized communication protocol layer: Defines the communication specifications between heavy and light assets, including instruction format, response format and status synchronization format; (2) Standardized storage area: stores the sovereign control logic, authorization status and information node structure of shared heavy and light assets; (3) Synchronization Engine: Detects state changes of any scheme involving heavy or light assets and triggers synchronization operations; (4) Migration Engine: Performs a smooth migration of clients from light assets to heavy assets, ensuring that the sovereignty lock-in state is not interrupted during the migration process.

4. The system according to claim 3, characterized in that: The synchronization engine includes a real-time automatic synchronization module and a manually triggered incremental synchronization module to ensure eventual consistency between asset-heavy and asset-light solutions.