The Investigation of Detect Position of Partial Discharge in Cast-Resin Transformer Using High-Frequency Current Transformer Sensor and Acoustic Emission Sensor
Abstract
:1. Introduction
2. Materials and Methods
2.1. Principles of PD Source Localization
2.2. The Partial Discharge Signal and the Risk Level
3. Experimental Setup
4. Results and Discussion
4.1. The Primary Examination of Partial Discharge
4.2. The Insightful Examination of Partial Discharge
4.3. The Position Examination of Partial Discharge Source
5. Conclusions
Author Contributions
Funding
Institutional Review Board Statement
Informed Consent Statement
Data Availability Statement
Conflicts of Interest
References
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Gap Time/dT (ms, Milliseconds) | Condition Leve | Recommended Action |
---|---|---|
No partial Partial Discharge Signal | Acceptable | Continue normal operation Monitoring every 12 months |
Gap time > 7 ms | Small PD | Satisfactory (May be non-damaging PD) Monitoring every 6 months |
3 ms < Gap time < 7 ms | Major PD | Engineering review and evaluation need if the trend is increasing consider removal from service in near future Monitoring every 3 months |
Gap time < 3 ms | Sonous PD | Unsatisfactory, make plans to remove and repair now Monitoring every 1 week or continuous monitoring should be installed |
Arcing Signal | Sonous | Engineering review and evaluation need if the arc source is important point of equipment, consider removal from service in near future |
Mechanical Signal | Abnormal | Engineering review and evaluation need other technologies should be performed to combining to data |
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Thungsuk, N.; Mungkung, N.; Songruk, A.; Tunlasakun, K.; Tikakosol, K.; Nilawat, S.; Boonsomchuae, K.; Yuji, T.; Arunrungrusmi, S.; Kinoshita, H. The Investigation of Detect Position of Partial Discharge in Cast-Resin Transformer Using High-Frequency Current Transformer Sensor and Acoustic Emission Sensor. Appl. Sci. 2022, 12, 1310. https://doi.org/10.3390/app12031310
Thungsuk N, Mungkung N, Songruk A, Tunlasakun K, Tikakosol K, Nilawat S, Boonsomchuae K, Yuji T, Arunrungrusmi S, Kinoshita H. The Investigation of Detect Position of Partial Discharge in Cast-Resin Transformer Using High-Frequency Current Transformer Sensor and Acoustic Emission Sensor. Applied Sciences. 2022; 12(3):1310. https://doi.org/10.3390/app12031310
Chicago/Turabian StyleThungsuk, Nuttee, Narong Mungkung, Apidat Songruk, Khanchai Tunlasakun, Kittimasak Tikakosol, Siriwut Nilawat, Kanitphan Boonsomchuae, Toshifumi Yuji, Somchai Arunrungrusmi, and Hiroyuki Kinoshita. 2022. "The Investigation of Detect Position of Partial Discharge in Cast-Resin Transformer Using High-Frequency Current Transformer Sensor and Acoustic Emission Sensor" Applied Sciences 12, no. 3: 1310. https://doi.org/10.3390/app12031310
APA StyleThungsuk, N., Mungkung, N., Songruk, A., Tunlasakun, K., Tikakosol, K., Nilawat, S., Boonsomchuae, K., Yuji, T., Arunrungrusmi, S., & Kinoshita, H. (2022). The Investigation of Detect Position of Partial Discharge in Cast-Resin Transformer Using High-Frequency Current Transformer Sensor and Acoustic Emission Sensor. Applied Sciences, 12(3), 1310. https://doi.org/10.3390/app12031310