SF6微水密度四合一远程监测装置和方法

By combining the heating device and temperature sensor in the SF6 micro-moisture density monitor with dynamic control, the problem of mismatched heating power was solved, the heating power was accurately adjusted, and the monitoring accuracy and data accuracy were improved.

CN121857869BActive Publication Date: 2026-07-17XIAN YUANSHUN ELECTRIC

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
XIAN YUANSHUN ELECTRIC
Filing Date
2026-03-11
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

In existing SF6 micro-moisture density monitors, the constant power control method of the heating device causes the heating power to be mismatched with the state of the micro-moisture sensor, affecting the monitoring accuracy and the data accuracy of other sensors.

Method used

By employing a heating device and a temperature sensor in conjunction with a controller, the heating power is dynamically adjusted in real time by detecting the relationship between the temperature rise and the heating power. This achieves precise matching of heating power, avoids overheating or overcooling, and ensures the accuracy of sensor data.

Benefits of technology

Intelligent adaptation of heating power was achieved, which improved the dehumidification efficiency of the micro-water sensor, reduced interference with other sensors, and ensured the accuracy and reliability of monitoring data.

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Abstract

本发明涉及SF6微水密度监测技术领域,具体涉及一种SF6微水密度四合一远程监测装置和方法,装置包括为微水传感器配设的加热装置,控制器以及用于检测微水传感器表面温度的温度传感器,加热装置和温度传感器与控制器无线连接,控制器执行如下监测过程:根据温度升高程度与加热功率之间的关系得到最近一个目标时刻的加热系数,根据最近一个目标时刻的加热系数与预设目标加热系数的大小关系,结合预设比例增益,得到最近一个目标时刻的修正加热功率调整量,以此向加热装置输出下一目标时刻的加热功率控制指令。本发明提供的技术方案能够实现加热功率的精准适配,提升加热控制可靠性。
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