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Brushless Induction Excited Synchronous Generator With Induction Machine Operating in Plugging Mode

机译:带有感应电机的无刷感应励磁同步发电机,以堵塞模式运行

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摘要

This paper describes a new brushless and magnet-less synchronous generator where an induction machine (IM) is embedded in a synchronous machine (SM) to provide the excitation. Hence, this machine is named as brushless induction excited synchronous generator (BINSYG). To avoid the magnetic interaction between both IM and SM, they are configured for different number of pole pairs. A rotating uncontrolled rectifier (mounted on the shaft) is proposed to be used to rectify the rotor voltage of the IM to provide the excitation to the SM. Thus, by controlling the IM from stator side, field current of the SM can be controlled smoothly. As an example, in this work, SM and IM are configured for two pole and six pole, respectively. Practical winding-design-challenges and mutual interaction between IM and SM fields are analyzed briefly for 2/6 (SM poles/IM poles) pole BINSYG. Extensive finite element simulations of the proposed machine have been conducted using Maxwell-2D and these simulated results are obeying the theoretical analysis. A 3 kVA laboratory prototype of 2/6 pole BINSYG has been developed to evaluate the performance when IM is operated in the plugging mode for definite advantages. While a brushless configuration is proposed, brushes and slip-rings are used for the experimental machine, such that, rotor side windings of SM and IM can be accessed for the better understanding of the performance. Experimental results from this prototype confirm the theoretical and finite element method predictions.
机译:本文介绍了一种新型的无刷无磁铁同步发电机,其中,感应电机(IM)嵌入在同步电机(SM)中以提供激励。因此,该机器被称为无刷感应励磁同步发电机(BINSYG)。为了避免IM和SM两者之间发生磁相互作用,它们被配置为使用不同数量的极对。建议使用旋转的不受控制的整流器(安装在轴上)来整流IM的转子电压,从而为SM提供激励。因此,通过从定子侧控制IM,可以平滑地控制SM的励磁电流。例如,在这项工作中,SM和IM分别配置为两极和六极。简要分析了2/6(SM极/ IM极)BINSYG极的实际绕组设计挑战以及IM和SM场之间的相互影响。使用Maxwell-2D对所提出的机器进行了广泛的有限元模拟,这些模拟结果服从了理论分析。为了确定优势,已经开发了2/6极BINSYG的3 kVA实验室原型,以评估IM在插入模式下运行时的性能。虽然提出了无刷配置,但实验机器使用了电刷和滑环,因此可以访问SM和IM的转子侧绕组,以更好地了解其性能。该原型的实验结果证实了理论和有限元方法的预测。

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