首页> 外文期刊>IEEE transactions on industrial informatics >Application of DIP to Detect Power Transformers Axial Displacement and Disk Space Variation Using FRA Polar Plot Signature
【24h】

Application of DIP to Detect Power Transformers Axial Displacement and Disk Space Variation Using FRA Polar Plot Signature

机译:DIP在FRA极坐标图签名检测电力变压器轴向位移和磁盘空间变化中的应用

获取原文
获取原文并翻译 | 示例
           

摘要

While frequency response analysis (FRA) technique has been successfully used to assess the mechanical integrity of active parts within power transformers, it still exhibits some drawbacks including its inability to detect incipient and minor winding deformations and the requirement for an expert to analyze the results. Although several papers have investigated the impact of various faults on the transformer FRA signature, no attempt was made to automate and improve the fault detection accuracy of the current technique. The main contribution of this paper is the presentation of a new approach for the FRA technique through incorporating the magnitude and phase angle plots that can be measured using any commercial frequency response analyzer into one polar plot. Contrary to the current industry practice that only relies on the magnitude of the measured FRA signature for fault identification and quantification, the proposed polar plot that comprises more features than the magnitude plot will facilitate the use of digital image processing (DIP) techniques to improve the detection accuracy, standardize, and automate the FRA interpretation process. In this regard, three-dimensional models for two three-phase power transformers of different ratings, sizes, and windings structures are modeled using a finite element analysis technique to simulate various levels of axial displacement (AD) and disk space variation (DSV) at different locations of the transformer windings. Impact of minor fault levels on the proposed polar plot signature is investigated through the application of various DIP techniques. Simulation results are validated through practical measurements on a scaled-down transformer. Results show that the proposed polar plot along with the DIP technique is able to detect minor fault levels of AD and DSV with high accuracy.
机译:尽管频率响应分析(FRA)技术已成功用于评估电力变压器内有源部件的机械完整性,但它仍存在一些缺陷,包括无法检测初期和较小的绕组变形以及需要专家来分析结果。尽管有几篇论文研究了各种故障对变压器FRA签名的影响,但并未尝试自动化和提高当前技术的故障检测精度。本文的主要贡献是通过将可以使用任何商用频率响应分析仪测量的幅值和相角图合并到一个极坐标图中,介绍了一种FRA技术的新方法。与目前仅依靠测得的FRA签名的幅度进行故障识别和量化的行业惯例相反,所建议的极坐标图包含比幅度图更多的特征,这将有助于数字图像处理(DIP)技术的使用,从而改善检测准确度,标准化和自动化FRA解释过程。在这方面,使用有限元分析技术对两个不同额定值,尺寸和绕组结构的三相电力变压器的三维模型进行建模,以模拟不同水平的轴向位移(AD)和磁盘空间变化(DSV)变压器绕组的不同位置。通过各种DIP技术的应用,研究了小故障水平对拟议的极地图签名的影响。仿真结果通过按比例缩小的变压器的实际测量得到验证。结果表明,所提出的极坐标图与DIP技术一起能够高精度地检测AD和DSV的较小故障级别。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号