智能微电网中常用磁链多绕组高频变压器的建模

M. Jafari, Md. Rabiul Islam, Z. Malekjamshidi, Jianguo Zhu
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引用次数: 6

摘要

最近在磁性材料特性和开关装置方面的改进增加了在微电网中用高频磁链路取代电动总线的可能性。多绕组变压器(MWTs)为以磁通量形式集成可再生能源提供了一个共同的磁总线。它们在多端口变换器中的应用,使得可以简单地集成不同电压电平的源,调节绕组匝比。其他优点是电流隔离,双向潮流能力和同时电力传输端口之间。尽管有上述优点,但由于交叉耦合和非线性效应,mwt的建模和表征相对复杂。本文描述了在环形铁芯MWT上进行的提取参数和寻找等效电学模型的实验测试过程。在不同的荷载条件下对原型和模型进行了测试,并进行了对比,验证了建模过程的有效性。
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Modeling of multi-winding high-frequency transformers as a common magnetic-link in smart micro-grids
Recent improvements in magnetic material characteristics and switching device increased the possibility of replacing electrical buses with high-frequency magnetic-links in micro-grids. Multi-winding transformers (MWTs) provide a common magnetic bus for integrating renewable energies in the form of magnetic flux. Their application in multi-port converter makes it possible to simply integrate the sources with different voltage levels adjusting winding turn ratios. Other advantages are galvanic isolation, bidirectional power flow capability and simultaneous power transfer among the ports. Despite the above positive points modeling and characterization of MWTs is relatively complex due to the cross coupling and nonlinearity effects. This paper describes the experimental test procedures carried out on a toroidal core MWT to extract the parameters and to find the equivalent electrical model. Both prototype and resulted model are tested under different load conditions and are compared to verify the validity of modeling process.
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