Data processing method and apparatus, digital energy management system, and electronic device

By acquiring and parsing the status characteristic data of power equipment, generating event messages and distributing them to the cloud or edge nodes, the low latency and high efficiency problems of traditional platforms in the application scenarios of large data volumes in energy storage power stations are solved, and unified processing of real-time and non-real-time business is realized.

WO2026144351A1PCT designated stage Publication Date: 2026-07-09CONTEMPORARY AMPEREX FUTURE ENERGY RES INST (SHANGHAI) LTD +1

Patent Information

Authority / Receiving Office
WO · WO
Patent Type
Applications
Current Assignee / Owner
CONTEMPORARY AMPEREX FUTURE ENERGY RES INST (SHANGHAI) LTD
Filing Date
2025-09-29
Publication Date
2026-07-09

AI Technical Summary

Technical Problem

Traditional cloud-edge-device architecture operation and maintenance platforms struggle to meet the demands for low latency and high efficiency in handling large-scale data application scenarios for energy storage power stations, especially due to the inefficiency caused by separating real-time and non-real-time business processing.

Method used

By acquiring equipment status characteristic data of power equipment, parsing it to obtain event identification information and equipment identification information, generating and sending event messages to the data acquisition server, unified processing of real-time and non-real-time business is achieved, and different business data are processed by utilizing the different capabilities of cloud and edge nodes respectively.

Benefits of technology

It achieves low latency for real-time services and efficient processing of non-real-time services in energy storage power station big data application scenarios, meeting the requirements of low latency and high efficiency.

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Abstract

Provided are a data processing method and apparatus, a digital energy management system, and an electronic device, relating to the field of power systems. The method comprises: acquiring device state feature data corresponding to at least one set of power device data, the device state feature data being used for representing an operating state of a certain power device (S110); parsing each set of device state feature data to obtain event identification information and corresponding device identification information of each set of device state feature data (S120); and generating and sending an event message to a data acquisition server on the basis of the event identification information and the corresponding device identification information, so that the data acquisition server sends the power device data corresponding to at least one set of device state feature data to a specified server (S130).
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