Chen, S., Wang, R., Zhang, X., Chen, C., & Kang, Y. (2025). AC resistance modeling of Litz wire: integrating segmented equivalent circuit and twisting mechanism with VNS-based geometry model. Journal of Power Electronics, 1-7. https://doi.org/10.1007/s43236-025-01190-3
ISO-690 (author-date, English)CHEN, Shunjun, WANG, Ruitian, ZHANG, Xinsheng, CHEN, Cai and KANG, Yong, 2025. AC resistance modeling of Litz wire: integrating segmented equivalent circuit and twisting mechanism with VNS-based geometry model. Journal of Power Electronics. 22 September 2025. P. 1-7. DOI 10.1007/s43236-025-01190-3.
Modern Language Association 9th editionChen, S., R. Wang, X. Zhang, C. Chen, and Y. Kang. “AC Resistance Modeling of Litz Wire: Integrating Segmented Equivalent Circuit and Twisting Mechanism With VNS-Based Geometry Model”. Journal of Power Electronics, Sept. 2025, pp. 1-7, https://doi.org/10.1007/s43236-025-01190-3.
Mohr Siebeck - Recht (Deutsch - Österreich)Chen, Shunjun/Wang, Ruitian/Zhang, Xinsheng/Chen, Cai/Kang, Yong: AC resistance modeling of Litz wire: integrating segmented equivalent circuit and twisting mechanism with VNS-based geometry model, Journal of Power Electronics 2025, 1-7.
Emerald - HarvardChen, S., Wang, R., Zhang, X., Chen, C. and Kang, Y. (2025), “AC resistance modeling of Litz wire: integrating segmented equivalent circuit and twisting mechanism with VNS-based geometry model”, Journal of Power Electronics, pp. 1-7.