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Equivalent circuit model for the insulated core transformer 被引量:1

Equivalent circuit model for the insulated core transformer
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摘要 The design of the insulated core transformer(ICT)needs to consider the flux leakage effects.An equivalent linear circuit model is proposed based on the principle of duality.It is composed by two types of leakage inductances:conventional leakage between windings and special leakage introduced mainly by the insulation gaps.The values of leakage inductances depend on the dimensions of the core,gaps,or windings and the property of magnetic materials.The circuit allows for quantitatively evaluating influences of ICT internal parameters on its output properties.The winding self- and mutual inductance matrix is mathematically converted to derive the inductance formula.As an example,the leakage parameters of a sixstage two-dimensional(2D) ICT are calculated and analyzed. The design of the insulated core transformer(ICT)needs to consider the flux leakage effects.An equivalent linear circuit model is proposed based on the principle of duality.It is composed by two types of leakage inductances:conventional leakage between windings and special leakage introduced mainly by the insulation gaps.The values of leakage inductances depend on the dimensions of the core,gaps,or windings and the property of magnetic materials.The circuit allows for quantitatively evaluating influences of ICT internal parameters on its output properties.The winding self- and mutual inductance matrix is mathematically converted to derive the inductance formula.As an example,the leakage parameters of a sixstage two-dimensional(2D) ICT are calculated and analyzed.
出处 《Nuclear Science and Techniques》 SCIE CAS CSCD 2016年第3期132-137,共6页 核技术(英文)
基金 supported by National Natural Science Foundation of China(No.11305068) the‘‘2011 project’’organized by Hubei Collaboration Innovation Center of Non-power Nuclear Technology
关键词 等效电路模型 变压器 绝缘 性能影响 电感计算 对偶原理 等效线性 磁性材料 High-voltage power supply Insulated core transformer Leakage inductance Equivalent circuit
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