학술논문

A Novel E-Nose System for the Characterization of Dissolved Gases in Dielectric Oils
Document Type
Periodical
Source
IEEE Transactions on Instrumentation and Measurement IEEE Trans. Instrum. Meas. Instrumentation and Measurement, IEEE Transactions on. 72:1-16 2023
Subject
Power, Energy and Industry Applications
Components, Circuits, Devices and Systems
Gases
Oils
Oil insulation
Dielectrics
Power transformer insulation
Dissolved gas analysis
Dielectric measurement
Dielectric oils
dissolved gas analysis (DGA)
electronic nose (E-nose) system
power transformer
Language
ISSN
0018-9456
1557-9662
Abstract
The electricity sector heavily relies on oil-filled electricity equipment, particularly power transformers, which are critical and costly components in power generation and transmission systems. However, concerns arise as many of these assets have surpassed their useful life or are nearing the end of it. For this reason, the monitoring and diagnosis of failures in liquid insulation systems play an important role when it comes to extending the life of these pieces of equipment. In its current state, the measurement systems used to capture and quantify the evolution of gases have limitations hindering their widespread use in routine measurements. These limitations have forced a large part of the research and development efforts to focus on developing and proposing new forms of measurement that can be applied without any type of technical-economic restriction and still provide a much more accurate diagnosis of the failure. This article introduces a novel system that utilizes an electronic nose (E-nose) equipped with eight metal oxide semiconductor (MOS)-type gas sensors to measure dissolved gases in liquid insulation systems. The obtained results validate the system’s exceptional performance in differentiating mineral oil samples based on the type and concentration of the predominant gases. This innovative approach shows great promise for routine monitoring and diagnosis, offering an efficient and cost-effective solution. Additionally, it exhibits significant potential for widespread implementation and provides a reliable means of assessing the condition of liquid insulation systems in various electrical assets.