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Simulation Analysis for Controllable Reactor of Transformer Type with Multifold Magnetic Materials Integration

机译:集成多种磁性材料的变压器型可控电抗器仿真分析

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摘要

This paper presents a construction of a controllable reactor of transformer type (CRT) with multifold magnetic materials, and the construction based on the magnetic-integration techniques is used to weaken the magnetic coupling effect among control windings and eliminate requirement of series current limiting reactance. At last, based on the proposed equivalent circuit of integrated magnetic structure, a simulation model is fabricated by MATLAB/SIMULINK. Simulation analysis of winding current and control characteristic show that this construction meets the design requirements of "high impedance and weak coupling", the harmonic content of the work winding is small, also the construction can realize the smooth reactive power regulation and react with a high speed. The validity of the construction and the correctness of the simulation model are proved by the results of simulation. This multifold magnetic materials integration method offers a reference to the integration of complex electromagnetic equipment.
机译:本文提出了一种具有多重磁性材料的可控变压器型(CRT)电抗器的构造,并且基于磁积分技术的构造被用于减弱控制绕组之间的磁耦合效应并消除了串联限流电抗的要求。最后,基于所提出的集成磁结构等效电路,利用MATLAB / SIMULINK建立了仿真模型。绕组电流和控制特性的仿真分析表明,该结构满足“高阻抗弱耦合”的设计要求,工作绕组的谐波含量小,还可以实现平稳的无功功率调节和高响应。速度。仿真结果证明了构造的正确性和仿真模型的正确性。这种多重磁性材料集成方法为复杂电磁设备的集成提供了参考。

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