Data sonification of film capacitors

Author:

Zhang Yong‐Xin1,Liu Di‐Fan1,Wei Xin‐Yi2,Wang Xin‐Jie1,Chen Fang‐Yi3,Feng Qi‐Kun1,Cao Wen‐Yuan4,Dong Wen‐Zhuo1,Shah Faisal Mehmood5,Liu Yu‐Xiao1,Wu Zhi‐Yuan6,Wang Jian‐Tao1,Zhong Shao‐Long1ORCID,Dang Zhi‐Min1ORCID

Affiliation:

1. Department of Electrical Engineering Tsinghua University Beijing China

2. School of Life Sciences Fudan University Shanghai China

3. Department of Electrical and Computer Engineering Carnegie Mellon University Pittsburgh Pennsylvania USA

4. Department of Energy Technology Aalborg University Aalborg Denmark

5. Department of Electrical, Electronic, Telecommunication Engineering and Naval Architecture University of Genoa Genova Italy

6. School of Electrical and Electronic Engineering North China Electric Power University Beijing China

Abstract

AbstractFilm capacitors are playing an increasingly important role in power‐related fields, driven by the continuous development of dielectric materials and practical needs. Long‐term accumulation has also led to an increasing wealth of data related to film capacitors. Sonification opens up a new way for people to make good use of data from film capacitors. A framework for sonifying film capacitors data based on TwoTone is presented. Based on the analysis and discussion, it is clear that the sonification results can easily represent the monotonic variation pattern of film capacitors data. What's more, the sonification results increase the possibility that people pay attention to the changing trend of film capacitors data when there is no significant difference in the visual perception of the data. In addition to providing a new way of music generation of electrical equipment, the method proposed is expected to contribute to theory reference in typical scenarios, such as factory calibration of film capacitors, monitoring of film capacitor operation status, and presentation of statistical data of film capacitors' dielectric materials, which will help us to better understand the distribution characteristics of polymer films.

Funder

National Key Research and Development Program of China

Publisher

Institution of Engineering and Technology (IET)

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