Abstract:When voltage with high frequency is applied to the core of winding, voltage and current with same frequency will occur in the outer semiconducting layer, as there is no copper outer shield in the XLPE cable of the winding. To study the relations between current in the outer semiconducting layer and voltage and current in the core, finite element method is used to calculate the eddy current in the outer semiconducting layer firstly, and then a circuit model of it is studied. By comparing with measurements, it is found that the current flowing in it is from coupling between core and semiconducting layer. And in this paper, the effect of resistivity of semiconducting layer on the amplitude of current in it is studied.
吕亮, 雷琅, 张晋, 郭磊, 李彦明. 电缆绕组变压器外半导电层中的电流特性[J]. 电工技术学报, 2009, 24(5): 40-45.
Lü Liang, Lei Lang, Zhang Jin, Guo Lei, Li Yanming. Property of Current in Outer Semiconducting Layer of Cable Winding Transformer. Transactions of China Electrotechnical Society, 2009, 24(5): 40-45.
[1] Leijon M, Andersson T. High and dry dryformer power transformer[J]. IEE Review, 2000, 46(4): 9-15. [2] Li M, Jaksts A, Liu R S, et al. Recent trends within insulation systems for transmission and distribution apparatus[C]. Proceedings of the 6th International Conference on Properties and Applications of Dielectric Materials, 2000, 2: 849-855. [3] Leijon M, Dahlgren M, Walfridsson L, et al. A recent development in the electrical insulation systems of generators and transformers[J]. IEEE Electrical Insulation Magazine, 2001, 17(3): 10-15. [4] Ametani A, Yukata M, Naoto N. Semicon- ducting layer impedance and its effect on cable wave-propagation and transient characteristics[J]. IEEE Trans. on Power Delivery, 2004, 19(4): 1523- 1531. [5] Amekawa N, Nagaoka N, Baba Y, et al. Derivation of a semiconducting layer impedance and its effect on wave propagation characteristics on a cable[J]. IEE Proceedings-Generation, Transmission and Distri- bution, 2003, 150(4): 434-440 [6] 瓦修京斯基C B. 变压器的理论与计算[M]. 北京: 机械工业出版社, 1983. [7] 王世山, 傅晨钊, 汲胜昌, 等. 电缆线圈功率损耗的数值计算[J]. 电工电能新技术, 2002, 21(4): 33- 36. [8] 王世山, 汲胜昌, 李彦明. 变压器束绞圆导线线圈中涡流损耗的研究[J]. 高电压技术, 2003, 29(5): 7-10. [9] 牟磊, 吕亮, 李军浩, 等. XLPE电缆绕组的电路模型及其外半导电层暂态电压分布特性研究[J]. 电工技术学报, 2005, 20 (11): 26-29. [10] Blennow H, Sjoberg M L A, Leijon M, et al. Electric field reduction due to charge accumulation in a dielectric-covered electrode system[J]. IEEE Transactions on Dielectrics and Electrical Insulation, 2000, 7(3): 340-345. [11] 刘家齐, 牟磊, 贾磊, 等. 外半导电层对地电容与XLPE电缆绕组暂态特性[J]. 高电压技术, 2005, 31(11): 42-44. [12] 袁建华, 刘家齐, 孙宏伟, 等. XLPE电缆绕组高频暂态电路模型的研究[J]. 高电压技术, 2004, 30(3): 5-8. [13] Pär Holmberg, Mats Leijon, Torbjörn Wass. A wideband lumped circuit model of eddy current losses in a coil with a coaxial insulation system and a stranded conductor[J]. IEEE Trans. on Power Delivery, 2003, 18(1): 50-60. [14] Holmberg P. Modelling the transient response of winding, laminated steel cores and electromagnetic power devices by means of lumped circuits[D]. Uppsala: Uppsala University, 2000.