A smart operation and maintenance management platform for distributed power plants

By coupling the fine particulate matter damage sensing module with the dispatch command analysis, first and second command response surfaces are generated, which solves the problem of decoupling transient physical environment and dispatch requirements in the existing technology, realizes accurate assessment and safe control of power plant regulation value, and improves the safety and friendliness of power grid regulation.

CN122288916APending Publication Date: 2026-06-26BEIJING CENTURY CONCORD OPERATION & MAINTENANCE CO LTD
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Patent Information

Application Number
CN202610478881.0
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2026-04-13
Publication Date
2026-06-26

AI Technical Summary

Technical Problem

Existing technologies lack a precise computational framework for the coordinated decoupling of transient physical environments and scheduling requirements. This results in the inability to accurately reflect the power plant's generating capacity when spectral characteristics change drastically due to weather conditions such as sandstorms. Consequently, the power plant's regulation contribution is submerged or superimposed by weather noise, and may force equipment to operate beyond its safe capacity, leading to risks.

Method used

The fine particulate matter damage precision sensing module acquires micro-meteorological data, generates a first physical constraint surface, and generates a second instruction response surface by combining scheduling instructions. The value decoupling verification module performs compliance verification, the operation strategy dynamic control module allocates resources, and the trusted evidence storage and traceability module forms an immutable regulation service value evidence storage chain.

Benefits of technology

It achieves minute-level dynamic and precise quantification of complex meteorological disturbances, distinguishes between natural attenuation and active regulation, ensures the fairness and accuracy of power plant regulation value assessment, avoids equipment overload, and improves the safety and friendliness of power grid regulation.

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Abstract

This invention relates to the field of operation and maintenance management system technology, and discloses a smart operation and maintenance management platform for distributed power plants. Through high-precision micro-meteorological sensing and coupled modeling, it dynamically generates a first physical constraint surface, accurately quantifying the natural power generation capacity boundary caused by weather. This fundamentally achieves reliable decoupling between natural attenuation and proactive power regulation, ensuring the fairness of value measurement. Through an intelligent instruction resolution algorithm, a safe and feasible second instruction response surface is generated with the physical surface as a constraint. This transforms scheduling instructions into an absolutely safe and dynamically optimized execution plan, eliminating the risk of equipment exceeding limits and improving regulation quality through smooth redistribution. Ultimately, this system achieves a complete technical closed loop from precise sensing and safe control to reliable metering, providing reliable support for the high-proportion participation of distributed power sources in the electricity market.
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