Riba Jordi-Roger, Bas-Calopa Pau
Electrical Engineering Department, Universitat Politècnica de Catalunya, Rambla Sant Nebridi 22, 08222 Terrassa, Spain.
Sensors (Basel). 2022 Sep 24;22(19):7250. doi: 10.3390/s22197250.
Corona discharges are a concern in high-voltage applications. It is of utmost importance to detect and locate the discharges at an early stage using simple methods for this purpose. This paper evaluates and compares the sensitivity of two methods for detecting and locating the source of discharges, which are based on a digital single-lens reflex (DSLR) camera and a portable wideband sonic camera incorporating a matrix of micro-electromechanical systems (MEMS) microphones. Both cameras can generate an image of the studied area where the discharge sites are identified. The study is carried out with different electrode geometries, 50 Hz alternating current (ac) and positive and negative direct current (dc) supplies, and the effect of the distance between the sensor and the discharge sites is also analyzed. The presented results show that the sonic camera enables fast, simple, and sensitive detection and localization of the source of corona discharges even at a very early stage in daylight conditions, regardless of the type of power supply, that is, ac or positive/negative dc, and at distance of several meters from the discharge source.
电晕放电是高压应用中的一个问题。为此,使用简单方法在早期阶段检测和定位放电至关重要。本文评估并比较了两种用于检测和定位放电源的方法的灵敏度,这两种方法分别基于数码单反(DSLR)相机和一种集成了微机电系统(MEMS)麦克风矩阵的便携式宽带声学相机。这两种相机都可以生成所研究区域的图像,在该图像中可以识别出放电位置。该研究针对不同的电极几何形状、50赫兹交流电(ac)以及正负极直流电(dc)电源进行,并且还分析了传感器与放电位置之间距离的影响。给出的结果表明,声学相机能够在日光条件下,即使在非常早期阶段,也能快速、简单且灵敏地检测和定位电晕放电源,无论电源类型是交流电还是正/负极直流电,并且在距离放电源数米的情况下均可。