Service architecture, synchronization method, scheduling method, reconstruction method and service node

CN116827963BActive Publication Date: 2026-07-07MIGU VIDEO TECH CO LTD +2

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
MIGU VIDEO TECH CO LTD
Filing Date
2023-07-19
Publication Date
2026-07-07

AI Technical Summary

Technical Problem

Existing distributed service architectures suffer from high latency requirements, inflexibility, and difficulty in ensuring data consistency in data synchronization and user scheduling. In particular, it is difficult to achieve efficient and flexible data synchronization and consistency management among multiple distributed nodes in a wide geographical area.

Method used

A distributed user service architecture is adopted, including a user service dynamic scheduling component, an event source component, and a stateful user service system. Through the active synchronization and dynamic scheduling of event stream data, data consistency management between service nodes is achieved. Wide-area transmission links are used for efficient data transmission, and event stream data is marked and synchronized according to node characteristics and user priorities.

Benefits of technology

It enables intelligent allocation of computing power among multiple service nodes, improves data synchronization efficiency and consistency management capabilities, supports the transmission of user business data in massive cloud environments, and can dynamically schedule and rebuild user service status to meet users' flexible synchronization needs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses a service architecture, a synchronization method, a scheduling method, a reconstruction method and a service node, and relates to the computer technical field, to solve the problems of high time delay requirement, inflexibility and difficult data consistency guarantee of the existing distributed service scheme. The distributed user service architecture comprises a user service dynamic scheduling component, which is used for predicting and scheduling service nodes of users and managing the consistency of event flow data between the service nodes; a plurality of service nodes distributed in a region, each service node comprising an event source component and a stateful user service system; the stateful user service system is used for generating and consuming events; the event source component comprises: an event source library, which is used for recording the source reconstruction of event flow data and user service states of users; and an event source synchronization component, which is used for synchronizing the event flow data between the service nodes. The embodiment of the application has low time delay bandwidth requirement and can flexibly realize the consistency management of data.
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