Cloud edge collaboration based power production real-time system high availability architecture

The cloud-edge collaborative architecture enables efficient and reliable data transmission and real-time control in power production systems, solving the problems of low data transmission efficiency and insufficient real-time performance in traditional architectures, and improving the stability and fault response capabilities of power systems.

CN122268911APending Publication Date: 2026-06-23GUANGZHOU KETENG INFORMATION TECH
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Patent Information

Application Number
CN202610535099.8
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2026-04-22
Publication Date
2026-06-23

AI Technical Summary

Technical Problem

Traditional power production system architectures have shortcomings in data transmission efficiency and real-time control. Centralized cloud deployments are susceptible to cross-regional link fluctuations, and distributed edge nodes cannot be dynamically adjusted, resulting in low data transmission efficiency, affecting the timeliness of power dispatch and fault response. Furthermore, high availability assurance mechanisms lack multi-level redundancy and real-time fault detection capabilities.

Method used

The system adopts a high-availability architecture for real-time power production based on cloud-edge collaboration, including edge node modules, cloud-side node modules, and hierarchical communication link modules. Edge nodes are deployed according to geographical distribution, cloud-side nodes are deployed on demand, and hierarchical communication links are built according to data real-time requirements, with redundant links configured to achieve local data preprocessing and on-demand transmission, combined with internal and external redundancy design and a graded fault switching mechanism.

Benefits of technology

It improves the data transmission efficiency of the real-time power production system, reduces the waste of link resources, ensures the reliability and real-time performance of data transmission, supports the efficient operation of power production and rapid fault response, and meets the continuity requirements of the power system.

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Abstract

The application relates to a cloud edge cooperation-based high-availability architecture of a power production real-time system. The application relates to the technical field of power production systems. The system comprises an edge node module, a cloud side node module and a hierarchical communication link module. The edge node module comprises a plurality of edge nodes associated with power equipment based on the geographical distribution of the power equipment, and each edge node is configured with a corresponding node role. The cloud side node module comprises a plurality of cloud side nodes associated with data processing requirements based on the data processing requirements of the cloud side, and each cloud side node is configured with a corresponding data processing function. The hierarchical communication link module comprises a plurality of communication links respectively constructed based on the real-time nature of power data of the high-availability architecture of the power production real-time system, and each communication link is configured with a redundant link. The method can improve the data transmission efficiency of the power production real-time system.
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