一种非接触式静电电位传感器,基于杆微振动,用于测量绝缘元件的表面电位
Chen Chen1, Ruitong Zhou1, Yutong Zhang1
1School of Electrical Engineering, Xi'an Jiaotong University, Xi'an 710049, China.
Sensors (Basel, Switzerland)
|January 28, 2026
概括
一个新的静电电位传感器利用悬臂微振来测量高压直流 (HVDC) 组件的表面电位,确保绝缘可靠性. 该传感器提供精确的测量,对于电力系统中的电场评估至关重要.
科学领域:
- 电气工程 电气工程
- 材料科学 材料科学 材料科学
- 物理 物理学 物理
背景情况:
- 精确的表面静电电位测量对于评估电场和确保绝缘可靠性在开发高压直流 (HVDC) 电力系统至关重要.
- 现有的方法在关键高压电流绝缘监控的精度和适用性方面可能面临挑战.
研究的目的:
- 为HVDC应用提出和验证一种基于悬臂微振调节的新型静电电位传感器.
- 分析传感器的原理,通过模拟优化其设计,并通过实验验证其性能.
主要方法:
- 使用压电驱动器开发一个悬臂微振调节传感器.
- 建立一个静电感应模型来描述传感原理.
- 多物理合模拟用于优化传感器几何和调制频率.
- 建设一个测量平台,用于实验验证和补偿模型开发.
主要成果:
- 拟议的传感器通过微振动将静电静电潜能转换为交替诱导电荷信号.
- 模拟优化了悬臂几何和调制频率,以提高效率和紧结构.
- 实验验证显示,在1-10kV范围内的最大测量误差为0.92%和线性为0.47%.
- 在后绝缘器上测量的表面电位与模拟结果保持一致.
结论:
- 悬臂微振调制传感器有效测量HVDC系统中的表面静电潜力.
- 该传感器表现出高精度,线性和可用于绝缘监控的适用性.
- 这项技术有助于提高HVDC电力基础设施的电场评估和绝缘可靠性.
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