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Concept level evaluation of the optical voltage and current sensors and an arrayed waveguide grating for aero-electrical system applications

机译:光学电压和电流传感器以及用于航空电子系统应用的阵列波导光栅的概念级别评估

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摘要

In this paper we present, for the first time, the hybrid fiber-optic voltage and current sensors interrogated using an arrayed waveguide grating (AWG) device. Due to the excellent dynamic capabilities of an AWG-based interrogator and its improved robustness, the proposed system would be suitable for voltage and current monitoring within an aircraft electrical system. The voltage sensor comprises a multilayer piezoelectric stack, acting as a voltage-to-strain transducer, and a fiber Bragg grating (FBG) used to convert voltage induced strain changes within the stack into wavelength shifts. These wavelength shifts are then analysed by an AWG. To measure current, the same sensor type is used to monitor a specially designed ferrite-core current transformer. It is shown that the system is capable of measuring variable frequency of voltage and current waveforms, typical of those anticipated in the next generation aero-electric power systems. It is also demonstrated that the system can be used for voltage and current harmonic analysis and power quality measurement in such networks.
机译:在本文中,我们首次展示了使用阵列波导光栅(AWG)器件对混合光纤电压和电流传感器进行询问的方法。由于基于AWG的询问器的出色动态性能及其改进的耐用性,因此所提出的系统将适用于飞机电气系统内的电压和电流监视。电压传感器包括用作电压到应变传感器的多层压电堆栈,以及用于将堆栈中电压感应的应变变化转换为波长偏移的光纤布拉格光栅(FBG)。然后通过AWG分析这些波长偏移。为了测量电流,使用相同的传感器类型来监视专门设计的铁氧体磁芯电流互感器。结果表明,该系统能够测量电压波形和电流波形的可变频率,这是下一代航空电力系统中预期的典型波形。还证明了该系统可用于此类网络中的电压和电流谐波分析以及电能质量测量。

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