LAPSE:2023.34429v1
Published Article

LAPSE:2023.34429v1
The Power Losses in Cable Lines Supplying Nonlinear Loads
April 26, 2023
Abstract
This paper presents the skin effect impact on the active power losses in the sheathless single-core cables/wires supplying nonlinear loads. There are significant conductor losses when the current has a distorted waveform (e.g., the current supplying diode rectifiers). The authors present a new method for active power loss calculation. The obtained results have been compared to the IEC-60287-1-1:2006 + A1:2014 standard method and the method based on the Bessel function. For all methods, the active power loss results were convergent for small-cable cross-section areas. The proposed method gives smaller power loss values for these cable sizes than the IEC and Bessel function methods. For cable cross-section areas greater than 185 mm2, the obtained results were better than those for the other methods. There were also analyses of extra power losses for distorted currents compared to an ideal 50 Hz sine wave for all methods. The new method is based on the current penetration depth factor calculated for every considered current harmonics, which allows us to calculate the precise equivalent resistance for any cable size. This research is part of our work on a cable thermal analysis method that has been developed.
This paper presents the skin effect impact on the active power losses in the sheathless single-core cables/wires supplying nonlinear loads. There are significant conductor losses when the current has a distorted waveform (e.g., the current supplying diode rectifiers). The authors present a new method for active power loss calculation. The obtained results have been compared to the IEC-60287-1-1:2006 + A1:2014 standard method and the method based on the Bessel function. For all methods, the active power loss results were convergent for small-cable cross-section areas. The proposed method gives smaller power loss values for these cable sizes than the IEC and Bessel function methods. For cable cross-section areas greater than 185 mm2, the obtained results were better than those for the other methods. There were also analyses of extra power losses for distorted currents compared to an ideal 50 Hz sine wave for all methods. The new method is based on the current penetration depth factor calculated for every considered current harmonics, which allows us to calculate the precise equivalent resistance for any cable size. This research is part of our work on a cable thermal analysis method that has been developed.
Record ID
Keywords
active power losses, current harmonics, nonlinear load, power supply systems, voltage harmonics
Suggested Citation
Rozegnał B, Albrechtowicz P, Mamcarz D, Rerak M, Skaza M. The Power Losses in Cable Lines Supplying Nonlinear Loads. (2023). LAPSE:2023.34429v1
Author Affiliations
Rozegnał B: Institute of Electromechanical Conversion, Cracow University of Technology, Warszawska 24 St., 31-155 Cracow, Poland [ORCID]
Albrechtowicz P: Institute of Electromechanical Conversion, Cracow University of Technology, Warszawska 24 St., 31-155 Cracow, Poland [ORCID]
Mamcarz D: Institute of Electromechanical Conversion, Cracow University of Technology, Warszawska 24 St., 31-155 Cracow, Poland
Rerak M: Department of Energy, Cracow University of Technology, Jana Pawła II 37 Av., 31-864 Cracow, Poland [ORCID]
Skaza M: Department of Architectural Design, Cracow University of Technology, Warszawska 24 St., 31-155 Cracow, Poland
Albrechtowicz P: Institute of Electromechanical Conversion, Cracow University of Technology, Warszawska 24 St., 31-155 Cracow, Poland [ORCID]
Mamcarz D: Institute of Electromechanical Conversion, Cracow University of Technology, Warszawska 24 St., 31-155 Cracow, Poland
Rerak M: Department of Energy, Cracow University of Technology, Jana Pawła II 37 Av., 31-864 Cracow, Poland [ORCID]
Skaza M: Department of Architectural Design, Cracow University of Technology, Warszawska 24 St., 31-155 Cracow, Poland
Journal Name
Energies
Volume
14
Issue
5
First Page
1374
Year
2021
Publication Date
2021-03-03
ISSN
1996-1073
Version Comments
Original Submission
Other Meta
PII: en14051374, Publication Type: Journal Article
Record Map
Published Article

LAPSE:2023.34429v1
This Record
External Link

https://doi.org/10.3390/en14051374
Publisher Version
Download
Meta
Record Statistics
Record Views
531
Version History
[v1] (Original Submission)
Apr 26, 2023
Verified by curator on
Apr 26, 2023
This Version Number
v1
Citations
Most Recent
This Version
URL Here
https://psecommunity.org/LAPSE:2023.34429v1
Record Owner
Auto Uploader for LAPSE
Links to Related Works
(0.09 seconds)
[0.09 s]
