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Modeling and Steady-State Analysis of a Rotary Transformer-Based Field Excitation System for Wound Rotor Synchronous Machine

机译:基于卷绕转子同步机的旋转变压器励磁励磁系统的建模与稳态分析

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Wound rotor synchronous motors are gaining attention as an alternative to the permanent magnet-based synchronous motors for electric vehicle traction. Rotary transformers have been proposed for the field excitation of these motors to avoid the disadvantages of the slip rings and brushes arrangement. Conventional rotary transformers use small airgap and as a result can be limited in operating speed unless costly high precision manufacturing is used. This paper proposes a novel rotary transformer-based excitation system that overcomes these disadvantages. Modeling and analysis of the proposed system is provided. Simulation results using the developed model and PLECs shows very good agreement for fundamental frequency. Furthermore, a steady state study of the field excitation system using harmonic balance technique is carried out to show dependencies of the output controlled variables on the input variables in the presence of system parameter variations. With series resonant compensations, the open-loop control of the proposed excitation system is robust against variation of field winding resistance with temperature.
机译:缠绕转子同步电动机正在关注用于电动车辆牵引的永磁同步电动机的替代品。已经提出了旋转变压器,用于这些电动机的现场激励,以避免滑动环和刷子布置的缺点。传统的旋转变压器使用小气块,并且除非使用昂贵的高精度制造,否则可以限制操作速度。本文提出了一种克服这些缺点的新型旋转变压器的激励系统。提供了所提出的系统的建模与分析。使用开发的模型和PLEC的仿真结果显示了基本频率非常良好。此外,执行使用谐波平衡技术的场励磁系统的稳态研究,以在存在系统参数变化的情况下显示在输入变量上的输出控制变量的依赖性。利用串联谐振补偿,拟议的激励系统的开环控制是抗真空绕组阻力的稳健性。

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