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非接触式电能传输系统中疏松耦合变压器电感参数的计算分析 被引量:6

Calculation and Analysis of Loosely Coupled Transformer Inductance in Inductively Coupled Power Transfer System
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摘要 研究了非接触式电能传输系统中疏松耦合变压器的电感参数。建立了一种疏松耦合变压器模型,通过求解有限元磁场方程,采用能量增量法和能量法计算电感参数;同时,利用实验的方法获取不同气隙下疏松耦合变压器的自感和互感。通过将计算结果与实验数据对比,分析基于能量增量法和能量法计算电感的准确性和合理性。在不同气隙宽度下,研究疏松耦合变压器励磁非线性受到的影响,考察不同方法计算电感参数的误差和适用性,通过分析得到计算电感参数的有效方法,为进一步开展疏松耦合变压器励磁特性研究奠定基础。 Loosely coupled transformer inductance in inductively coupled power transfer system is studied, and a loosely coupled transformer model is built. By solving the finite element magnetic field equation, the inductance is computed using the energy method and incremental energy method. Meanwhile, the experiment is designed to obtain the self inductance and mutual inductance of loosely coupled transformer with air gap of different width. Based on the energy method and incremental energy method, the inductance is calculated and compared with experimental results, and the accuracy and reasonability of the methods are discussed. The impact of nonlinear excitation on loosely coupled transformer under different width of air gap is studied. The error and applicability of different methods to calculate the inductance is inspected.Effective method of calculating the inductance is found through the analysis, which lays a foundation for further research on excitation characteristics of loosely coupled transformer.
出处 《电测与仪表》 北大核心 2014年第2期67-71,共5页 Electrical Measurement & Instrumentation
关键词 非接触式电能传输系统 疏松耦合变压器 电感参数计算 能量法 能量增量法 inductively coupled power transfer system loosely coupled transformer inductance calculation energy method incremental energy method
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  • 1C.S Wang, O.H Stielau, G.A Covic. Design consideration for acontactless electric vehicle battery charger [J]. IEEE Transactions on Industry Applications, 2005, 52(5): 1308-1313.
  • 2Sibue,J.-R.,Kwimang,G., Ferrieux, J.-P:A global study of contactless energy transfer system:analytical design, virtual prototypin prototyping, and experimental validation [J]. IEEE Transaction o Power Electronics, 2013,28(10) : 4690-4699.
  • 3J.G Hayes, M.G Egan, M.Murphy, et al. Wide-load-range resonant converter supplying the SAE J-1773 electric vehicle inductive charging interface [J]. IEEE Transactions on Industry Applications, 1999, 35(4): 884-895.
  • 4J.G Hayes, M.G Egan, M.Murphy, et al. Wide-Mad-range resonant converter supplying the SAE J-1773 electric vehicle inductive charging interface [J]. IEEE Transactions on Industry Applications, 1999, 35(4): 884-895.
  • 5C.S Wang, O.H Stielau, G.A Covic, Design consideration for acontactless electric vehicle battery charger [J]. IEEE Transactions on Industry Applications, 2005,52(5): 1308-1313.
  • 6Chwei-Sen Wang, Stielau O.H and Covic G.A, Design considerations for a contactless electric vehicle charger [J]. IEEE Transactions on Industrial Electronics. 2005,52(5):1308-1314.
  • 7D Kacprzak,G.A Covic,J.T Boys,An improved magnetic design for inductively coupled power transfer system pickups [C]. The 7th International Power Engineering Conference (IPEC), 2005,2 : 1133-1106.
  • 8H Sakamoto, K Harada, S Washimiya, and K Takehara. Large airgap coupler for inductive charger [J]. IEEE Transaction on Magnetics, 1999, 35(5): 3526-3529.
  • 9J.T Boys, G.A Covic and A.W Green. Stability and control of inductively coupled power transfer systems [J]. IEE-Elect. Power, 2000,147 (L): 37-43.
  • 10C.S Wang, G.A Covic, O.H Stielar. Investigatng an LCL Load Resonant Inverter for Inductive Power Transfer Applications[J]. IEEE Transactions on Power Electronics, 2004, 19(4): 995-1002.

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