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A new type of harmonic current excited brushless synchronous machine based on an open winding pattern

机译:一种基于开放式绕组模式的新型谐波电流励磁无刷同步机

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In an open-winding machine, the three-phase stator currents can be controlled to contain the same harmonic current components like the third harmonics. This paper introduces a new harmonic current excitation principle in synchronous machines based on open winding controls. Unlike existing harmonic excitation technologies which utilizing the third harmonic components of rotor magnetic fields, this brushless harmonic excitation principle is realized by injecting the third harmonic current component or high frequency single-phase current component or DC component into the three phase stator open windings, to generate a time pulsating magnetic field which can induce back-EMFs in the specially designed rotor harmonic coils. Through rectification, the induced back-EMFs are used to supply DC current to the rotor excitation winding. To verify the above principle, theoretical analysis, magnetic field calculations by FEA and experiments were carried out. The significance of this harmonic excitation principle is to provide a new brushless machine option in place of increasingly expensive permanent magnet machines in some applications.
机译:在开放式绕线机中,可以控制三相定子电流,以包含像第三谐波的相同谐波电流分量。本文介绍了一种基于开放式绕组控制的同步机的新谐波电流励磁原理。与利用转子磁场的第三次谐波分量的现有谐波激励技术不同,通过将第三谐波电流分量或高频单相电流分量或DC分量注入三相定子开口绕组来实现这种无刷谐波激励原理。生成时间脉动磁场,其可以在专门设计的转子谐波线圈中引起反电动势。通过整流,诱导的反电动势用于向转子激励绕组提供DC电流。为了验证上述原理,进行理论分析,进行了FEA和实验的磁场计算。这种谐波激励原理的意义是提供一种新的无刷机器,代替一些应用中越来越昂贵的永磁机。

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