一种智能化数字空调系统的监控方法及装置

By integrating multi-dimensional monitoring indicators and dynamic response models, the intelligent digital air conditioning system achieves highly sensitive identification and rapid response to micro-environmental disturbances, solving the problem of slow response of existing air conditioning systems to micro-disturbances and improving adaptive adjustment capabilities and system stability.

CN121701998BActive Publication Date: 2026-07-17SHANDONG XINLI ENERGY CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
SHANDONG XINLI ENERGY CO LTD
Filing Date
2025-12-19
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

Existing intelligent air conditioning systems cannot effectively identify and respond to micro-environmental disturbances, such as air particle concentration, micro-pressure fluctuations, and heat wave conduction from the equipment casing. This results in the control strategy being unable to adaptively adjust, affecting system stability and equipment lifespan.

Method used

By constructing an intelligent digital air conditioning system, integrating multi-dimensional monitoring indicators such as air particle concentration, micro-pressure value, and thermal wave signal, and adopting a dynamic threshold judgment and response model mapping mechanism, it achieves high-sensitivity identification and rapid response to micro-disturbances. Furthermore, it introduces an execution feedback disturbance weight distribution matrix update mechanism to achieve self-learning and self-correction.

Benefits of technology

It improves the air conditioning system's adaptive adjustment capability and real-time control accuracy in complex environments, and enhances the long-term stability of system operation and the adaptability of control logic.

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Abstract

本发明公开了一种智能化数字空调系统的监控方法及装置,属于智能空调控制与环境监控技术领域,获取主控单元的微扰动感知请求指令;触发环境数据协同感知协议层对目标区域进行复合采样,将采样数据写入第一缓存区,并解析各监控指标对应的扰动因子权重;当权重累计值达到动态阈值时,生成响应事件标识信号,并选择对应控制等级的响应模型;将模型加载至决策调度层,生成微调指令;指令下发后,采集反馈信息至第二缓存区;当反馈偏差超出修正阈值时,重启采样流程并更新扰动权重分布矩阵;本发明可实现多参数耦合扰动的快速识别与响应控制,提升空调系统的环境适应性和控制精度。
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Citation Information

Patent Citations

  • Intelligent air-conditioning control system and control method thereof

    CN106196415A

  • Heat pump environment temperature self-adaptive regulation and control system oriented to peak-valley electricity price difference

    CN120970020A