Bas-Calopa Pau, Riba Jordi-Roger, Moreno-Eguilaz Manuel
Electrical Engineering Department, Universitat Politècnica de Catalunya, 08222 Terrassa, Spain.
Electronics Engineering Department, Universitat Politècnica de Catalunya, 08222 Terrassa, Spain.
Sensors (Basel). 2022 Feb 26;22(5):1856. doi: 10.3390/s22051856.
Aeronautical industry is evolving towards more electric aircrafts (MEA), which will require much more electrical power compared to conventional models. To satisfy this increasing power demand and stringent weight requirements, distribution voltages must be raised, which jointly with the low-pressure environment and high operating frequencies increase the risk of electrical discharges occurrence. Therefore, it is important to generate data to design insulation systems for these demanding applications. To this end, in this work a sphere-to-plane electrode configuration is tested for several sphere geometries (diameters ranging from 2 mm to 10 mm), frequencies of 50 Hz, 400 Hz and 800 Hz and pressures in the 20-100 kPa range, to cover most aircraft applications. The corona extinction voltage is experimentally determined by using a gas-filled tube solar blind ultraviolet (UV) sensor. In addition, a CMOS imaging sensor is used to locate the discharge points. Next, to gain further insight to the discharge conditions, the electric field strength is calculated using finite element method (FEM) simulations and fitted to equations based on Peek's law. The results presented in this paper could be especially valuable to design aircraft electrical insulations as well as for high-voltage hardware manufacturers, since the results allow determining the electric field values at which the components can operate free of surface discharges for a wide altitude range.
航空工业正在朝着更多使用电力的飞机(MEA)发展,与传统机型相比,这种飞机将需要更多的电力。为了满足不断增长的电力需求和严格的重量要求,必须提高配电电压,这与低压环境和高工作频率一起增加了发生放电的风险。因此,为这些苛刻的应用设计绝缘系统时生成数据非常重要。为此,在这项工作中,针对几种球体几何形状(直径范围从2毫米到10毫米)、50赫兹、400赫兹和800赫兹的频率以及20至100千帕范围内的压力,测试了球对平面电极配置,以涵盖大多数飞机应用。通过使用充气管式日盲紫外(UV)传感器实验确定电晕熄灭电压。此外,使用CMOS成像传感器来定位放电点。接下来,为了进一步深入了解放电条件,使用有限元方法(FEM)模拟计算电场强度,并根据皮克定律拟合到方程中。本文给出的结果对于设计飞机电气绝缘以及高压硬件制造商可能特别有价值,因为这些结果允许确定在宽海拔范围内组件能够无表面放电运行的电场值。