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基于电力电子的主动耦合系统的电机在线频率响应分析。

Online Frequency Response Analysis of Electric Machinery through an Active Coupling System Based on Power Electronics.

机构信息

Gnarus Institute, Itajuba 37500-052, MG, Brazil.

Pro-Reitoria de Pesquisa e Pos-Graduacao (PRPPG), Itajuba Federal University, Itajuba 37500-903, MG, Brazil.

出版信息

Sensors (Basel). 2021 Dec 2;21(23):8057. doi: 10.3390/s21238057.

Abstract

This paper presents an innovative concept for the online application of Frequency Response Analysis (FRA). FRA is a well known technique that is applied to detect damage in electric machinery. As an offline technique, the machine under testing has to be removed from service-which may cause loss of production. Experimental adaptations of FRA to online operation are usually based on the use of passive high pass coupling-which, ideally, should provide attenuation to the grid voltage, and at the same time, allow the high frequency FRA signals to be injected at the machine. In practice, however, the passive coupling results in a trade-off between the required attenuation and the useful area obtained at the FRA spectra. This paper proposes the use of an active coupling system, based on power electronics, in order to cancel the grid voltage at the terminals of FRA equipment and allow its safe connection to an energized machine. The paper presents the basic concepts of FRA and the issue of online measurements. It also presents basic concepts about power electronics converters and the operating principles of the Modular Multilevel Converter, which enables the generation of an output voltage with low THD, which is important for tracking the grid voltage with minimum error.

摘要

本文提出了一种在线应用频率响应分析(FRA)的创新概念。FRA 是一种众所周知的技术,用于检测电机的损坏。作为一种离线技术,被测机器必须从服务中移除——这可能导致生产损失。FRA 向在线操作的实验适应通常基于使用无源高通耦合——理想情况下,无源高通耦合应该为电网电压提供衰减,同时允许高频 FRA 信号注入机器。然而,在实践中,无源耦合导致所需衰减和 FRA 谱上获得的有用区域之间的权衡。本文提出了使用基于电力电子技术的有源耦合系统,以便在 FRA 设备的端子处消除电网电压,并允许其与通电机器安全连接。本文介绍了 FRA 的基本概念和在线测量的问题。它还介绍了电力电子换流器的基本概念和模块化多电平换流器的工作原理,这对于生成具有低 THD 的输出电压很重要,因为这对于用最小误差跟踪电网电压很重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9883/8659803/16c92ccf1f25/sensors-21-08057-g001.jpg

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