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An ECT-PCA-based Fault Detection Method for Winding Asymmetry of Marine Current Turbine Generator

机译:基于ICT-PCA的绕组不对称性的故障检测方法

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The traditional detection methods of motor winding asymmetry often analyze the zero-sequence component. However, due to the different types of motors, the collection methods are also different. The marine current turbine (MCT) has a complicated sealing method due to the harsh marine environment, and its working conditions are frequently changed by the influence of the marine current flow rate, which makes it challenging to extract the fault characteristics. This paper proposes a novel method, called ECT-PCA, to detect MCT generator winding asymmetry, which includes: acquiring the stator three-phase current and using the extended Concordia transform (ECT) to obtain the modulus signal; dividing the modulus signal into an equal-length sample, and performing Fourier transform to obtain the frequency domain amplitude; Then establishing a PCA fault detection model, finally uses T2 and SPE statistics to detect whether the winding asymmetry or not. An experimental platform based on the MCT prototype was built to verify the effectiveness of the proposed method.
机译:传统的电动机绕组不对称检测方法通常分析零序组件。但是,由于电机类型不同,收集方法也不同。由于苛刻的海洋环境,海洋电流涡轮机(MCT)具有复杂的密封方法,并且其工作条件经常因海洋电流流速的影响而变化,这使得提取故障特性挑战。本文提出了一种称为ECT-PCA的新方法,检测MCT发电机绕组不对称,包括:获取定子三相电流并使用扩展的Concordia变换(ECT)以获得模量信号;将模数信号划分为相等的样本,并执行傅立叶变换以获得频域幅度;然后建立一个PCA故障检测模型,最后使用T2和SPE统计来检测绕组不对称是否或不是。建立了一个基于MCT原型的实验平台,以验证所提出的方法的有效性。

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