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

Author:

Sant’Ana Wilson CesarORCID,Lambert-Torres GermanoORCID,Bonaldi Erik Leandro,Gama Bruno RenoORCID,Zacarias Tiago Goncalves,Areias Isac Antonio dos Santos,Arantes Daniel de Almeida,Assuncao Frederico de Oliveira,Campos Mateus MendesORCID,Steiner Fabio Monteiro

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.

Publisher

MDPI AG

Subject

Electrical and Electronic Engineering,Biochemistry,Instrumentation,Atomic and Molecular Physics, and Optics,Analytical Chemistry

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2. Broadband Technique Analysis for Insulation Fault Detection and Condition Monitoring in Rotating Electrical Machines;2023 IEEE 14th International Symposium on Diagnostics for Electrical Machines, Power Electronics and Drives (SDEMPED);2023-08-28

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