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用于变压器故障诊断的低功耗化学电阻式气体传感器

Low-Power Chemiresistive Gas Sensors for Transformer Fault Diagnosis.

作者信息

Mei Haixia, Peng Jingyi, Xu Dongdong, Wang Tao

机构信息

Key Lab Intelligent Rehabil & Barrier free Disable (Ministry of Education), Changchun University, Changchun 130022, China.

Shanghai Key Laboratory of Intelligent Sensing and Detection Technology, School of Mechanical and Power Engineering, East China University of Science and Technology, Shanghai 200237, China.

出版信息

Molecules. 2024 Sep 29;29(19):4625. doi: 10.3390/molecules29194625.

Abstract

Dissolved gas analysis (DGA) is considered to be the most convenient and effective approach for transformer fault diagnosis. Due to their excellent performance and development potential, chemiresistive gas sensors are anticipated to supersede the traditional gas chromatography analysis in the dissolved gas analysis of transformers. However, their high operating temperature and high power consumption restrict their deployment in battery-powered devices. This review examines the underlying principles of chemiresistive gas sensors. It comprehensively summarizes recent advances in low-power gas sensors for the detection of dissolved fault characteristic gases (H, CH, CH, CH, CH, CO, and CO). Emphasis is placed on the synthesis methods of sensitive materials and their properties. The investigations have yielded substantial experimental data, indicating that adjusting the particle size and morphology structure of the sensitive materials and combining them with noble metal doping are the principal methods for enhancing the sensitivity performance and reducing the power consumption of chemiresistive gas sensors. Additionally, strategies to overcome the significant challenge of cross-sensitivity encountered in applications are provided. Finally, the future development direction of chemiresistive gas sensors for DGA is envisioned, offering guidance for developing and applying novel gas-sensitive sensors in transformer fault diagnosis.

摘要

溶解气体分析(DGA)被认为是变压器故障诊断最便捷有效的方法。由于其优异的性能和发展潜力,人们期望化学电阻式气体传感器在变压器溶解气体分析中取代传统的气相色谱分析。然而,它们的高工作温度和高功耗限制了其在电池供电设备中的应用。本文综述了化学电阻式气体传感器的基本原理。全面总结了用于检测溶解故障特征气体(H、CH、CH、CH、CH、CO和CO)的低功耗气体传感器的最新进展。重点介绍了敏感材料的合成方法及其性能。这些研究产生了大量实验数据,表明调整敏感材料的粒径和形态结构并将其与贵金属掺杂相结合是提高化学电阻式气体传感器灵敏度性能和降低功耗的主要方法。此外,还提供了克服应用中遇到的交叉敏感性这一重大挑战的策略。最后,展望了用于DGA的化学电阻式气体传感器的未来发展方向,为新型气敏传感器在变压器故障诊断中的开发和应用提供指导。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0d91/11478274/4d7786d1fbad/molecules-29-04625-g001.jpg

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