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Improvement of power generation performance in a doubly salient permanent magnet generator with a capacitive energy recovery converter

机译:具有电容式能量回收转换器的双凸极永磁发电机的发电性能提高

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In order to improve the power generation performance of a doubly salient permanent magnet generator (DSPMG), this study proposes a new converter called capacitive energy recovery converter (CERC), together with the corresponding control strategy. The CERC is composed of controllable devices, uncontrollable devices, and an energy storage circuit. The control strategy has been designed based on analysis of the electromagnetic characteristics of the DSPMG. With the proposed control strategy, the winding current of each phase can be controlled and increased separately, thus yielding large negative electromagnetic torque against the prime mover in a complete electric cycle. At the same time, the excitation sources are independent of the load part. As a result, power generation performance of the DSPMG with CERC is improved compared to that with a traditional three-phase full-bridge converter. A multi-objective optimisation problem is formulated to find the optimal turn-on and turn-off angles of two systems, which are used as control parameters in this comparison. Besides the lower voltage and torque ripples, the dynamic and fault-tolerant performance of the DSPMG with CERC is also superior. Both simulations and experiments have been conducted to verify the validity of the proposed converter and the control strategy.
机译:为了提高双凸极永磁发电机(DSPMG)的发电性能,本研究提出了一种新的称为电容式能量回收转换器(CERC)的转换器,以及相应的控制策略。 CERC由可控设备,不可控设备和能量存储电路组成。控制策略是基于对DSPMG电磁特性的分析而设计的。利用所提出的控制策略,可以分别控制和增加每相的绕组电流,从而在完整的电周期中对原动机产生较大的负电磁转矩。同时,激励源与负载部分无关。结果,与传统的三相全桥转换器相比,具有CERC的DSPMG的发电性能得到了改善。制定了一个多目标优化问题,以找到两个系统的最佳开启和关闭角度,在此比较中将其用作控制参数。除了较低的电压和转矩纹波外,带有CERC的DSPMG的动态和容错性能也非常出色。已经进行了仿真和实验,以验证所提出的转换器和控制策略的有效性。

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