A naming method, system, device and medium for modules in a distributed operating system

By adopting a multi-segment naming structure and a two-level classification mechanism, the problem of chaotic module naming in distributed operating systems is solved, and the standardization and automated management of module names are realized, thereby improving the reliability and scalability of the system.

CN122152778APending Publication Date: 2026-06-05GUANGZHOU YUNBIAO NETWORK TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
GUANGZHOU YUNBIAO NETWORK TECH CO LTD
Filing Date
2026-02-03
Publication Date
2026-06-05

AI Technical Summary

Technical Problem

In distributed operating systems, the lack of a unified naming standard for modules leads to naming conflicts, unclear function identification, lack of automated management, and inability to support dynamic function expansion, which affects system stability and reliability.

Method used

A multi-segment naming scheme is adopted, including a primary category, business name, and user information. A predefined secondary category mechanism is introduced, and the uniqueness and scalability of module names are ensured through lifecycle management and automatic binding scheduling mechanisms.

Benefits of technology

The system standardizes and automates the generation of module names, reduces the complexity of system development and maintenance, improves the clarity of module function identification and system scalability, avoids naming conflicts, and improves human-computer interaction efficiency.

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Abstract

The application discloses a naming method, system, device and medium for modules in a distributed operating system, and can realize the following technical effects: (1) a standardized input is provided for dynamically generating a URL and a two-dimensional code through a structured naming rule; (2) the functional properties, action ranges or system levels of the modules can be more intuitively reflected; (3) a clear and manageable path is provided for the fine classification and expansion of the system under the premise of maintaining the stability of the core architecture through the introduction of a predefined and protected secondary classification mechanism; (4) the global uniqueness of the module naming is ensured in combination with user information, and the naming conflict between the system key modules and the user modules is avoided through the reserved word mechanism of the secondary classification; and (5) the readability, recognizability and processing efficiency of the module names in the user interface, command line operation and network transmission are improved through the standardized naming structure and length limitation.
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