一种保障电子信息设备稳定运行的自适应温度控制系统

By constructing a relay stepping channel that runs parallel to the digital twin and the equipment, and combining multi-source sensors and a functional margin model, the problem that existing temperature control systems cannot detect the decline in equipment functional margin is solved, enabling the equipment to self-correct and ensure functionality under complex operating conditions.

CN122411652APending Publication Date: 2026-07-17WEIHAI ELECTRONIC INFORMATION TECH COMPREHENSIVE RES CENT OF THE MINISTRY OF IND & INFORMATION TECH +2

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
WEIHAI ELECTRONIC INFORMATION TECH COMPREHENSIVE RES CENT OF THE MINISTRY OF IND & INFORMATION TECH
Filing Date
2026-05-29
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

Existing temperature control systems rely solely on temperature as the criterion, failing to detect the decline in functional margin caused by aging, local defects, or electromagnetic interference, leading to bit errors, signal distortion, or logical errors. Furthermore, control systems based on predictive models generate erroneous control commands and exhibit delayed responses when the model mismatch occurs.

Method used

A relay stepping channel is constructed that runs parallel between physical devices and digital twins. Device data is collected through multi-source sensors to generate functional health data. Combined with thermal state and functional margin models, joint prediction is performed to generate temperature control execution commands. Similarity verification is performed before each step to ensure the accuracy of the commands.

Benefits of technology

It improves the robustness and long-term operational reliability of electronic information equipment under complex working conditions, avoids temperature overshoot and functional abnormalities, and ensures the integrity of equipment functions.

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Abstract

本发明公开了一种保障电子信息设备稳定运行的自适应温度控制系统,涉及设备温度控制技术领域,基于数据采集模块采集设备的运行数据,基于运行数据生成设备的功能健康数据;虚拟模拟模块基于运行数据生成设备的数字孪生体,并生成设备预测数据;时序温控模块:基于运行数据、功能健康数据以及设备预测数据,基于接力机制,生成温控执行指令;温控执行模块基于温控执行指令执行对应操作,生成设备的温控报告;本发明将温控指令拆分为渐进子步并在真实设备与数字孪生体上同步执行并比对,有效保障设备功能完整性与运行可靠性。
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