A glass heating temperature control device based on supplementary heating for northern residents

By integrating the thermostat housing with an AI-controlled glass heating temperature control device, the problems of cold radiation and condensation around windows in northern residential buildings have been solved, achieving efficient and energy-saving heating and stable temperature control. This adapts to the complex heating conditions in northern winters and meets residents' comfort and energy-saving needs.

CN122408230APending Publication Date: 2026-07-17
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Filing Date
2026-06-02
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

Existing technologies in residential buildings in northern regions suffer from problems such as strong cold radiation near windows, condensation and dripping water on glass, high air conditioning energy consumption, lack of interoperability of temperature control systems, complex renovation, and poor applicability, failing to meet residents' needs for constant temperature comfort and energy saving in winter.

Method used

It adopts a glass heating temperature control device based on supplementary heating for northern residents, integrating a temperature controller housing, a main control MCU, an air conditioner standardization adaptation module, a closed fluid heating execution module, an environmental acquisition module, and a cloud service module. Through AI quantitative collaborative control algorithms, it achieves full-dimensional data acquisition and analysis, generates precise control commands, forms closed-loop control, adapts to different air conditioner brands, and has anomaly handling and emergency protection mechanisms.

Benefits of technology

It effectively controls the indoor window temperature difference within ±0.5℃, reduces heating energy consumption by 15%~25%, ensures heating stability, is compatible with various air conditioning equipment, is easy to install, avoids heating interruption, and achieves moisture-proof, condensation-proof, energy-saving, and constant temperature.

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Abstract

本发明公开了一种基于北方居民补充供热的玻璃加热温控装置,包括温控器机壳,温控器机壳的内部固定安装有空调标准化适配模块、封闭流体加热执行模块、环境采集模块、云端服务模块和通用暖通通讯网关,空调标准化适配模块、封闭流体加热执行模块、环境采集模块、云端服务模块和通用暖通通讯网关均与主控MCU主体电性连接;主控MCU主体内设有集成本地AI量化协同控制算法单元、热响应权重系数计算单元和热惰性补偿防结露控制单元,本发明可将室内窗边温差控制在±0.5℃以内,彻底解决玻璃结露滴水问题;通过AI量化协同调控,双设备综合供热能耗降低15%~25%;设备故障。
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