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One special current waveform of toothed pole doubly salient permanent magnet machine for marine current energy conversion system

机译:用于海洋电流能量转换系统的齿杆双凸阳磁铁机的一种特殊电流波形

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Marine current energy becomes more and more attractive because of its remarkable advantages. In this paper, one toothed pole doubly salient permanent magnet (DSPM) machine is proposed for marine current energy conversion system. This kind of machine has a simple structure, good fault tolerance, reliable operation, and high power density, which make it very suitable for marine tidal current applications. However, DSPM machine is conventionally operated by means of current chopping control and angle position control in a different region due to the trapezoidal back electromotive force (EMF) waveform. While for this toothed pole DSPM machine, the PM flux-linkage, inductance, and back EMF have more sinusoidal waveforms, which make the sinusoidal current be possible. Unfortunately, the classic sinusoidal current generates a relatively large torque ripple owing to the special inductance. Consequently, the primary purpose of this paper was to design one special current waveform to further reduce the torque ripple. Firstly, the model of the toothed pole DSPM machine is presented. Secondly, the torque distribution theory is proposed without taking into account mutual inductance effect. The mathematic expressions of the currents are deduced subsequently. Thirdly, several fitting currents are analyzed and compared based on the theoretical currents. Moreover, the simulation results verify the torque distribution theory and allow proposing the optimal current waveform (fundamental and second harmonic) in comprehensive consideration of the voltage, powers, and torque ripple. Finally, some robustness analysis is also presented to show the good performances of this current.
机译:海洋当前能量因其显着优势而变得越来越有吸引力。本文提出了一种齿形杆双阳光永磁体(DSPM)机器,用于海洋电流能量转换系统。这种机器结构简单,容错耐受性,可靠的操作和高功率密度,使其非常适合海洋潮流应用。然而,由于梯形背部电动势(EMF)波形,通过电流斩波控制和角度位置控制通常通过电流斩波控制和角度位置控制操作。虽然对于该齿形杆DSPM机器,PM磁通连杆,电感和反电动积有更多的正弦波形,这使得正弦电流是可能的。不幸的是,经典的正弦电流由于特殊电感而产生相对大的扭矩脉动。因此,本文的主要目的是设计一种特殊的电流波形,以进一步减小扭矩脉动。首先,提出了齿形杆DSPM机的模型。其次,提出了在不考虑互感效应的情况下提出扭矩分布理论。随后推导出电流的数学表达式。第三,基于理论电流分析并比较了几种拟合电流。此外,仿真结果验证了扭矩分布理论,并允许在综合考虑电压,功率和扭矩波动方面提出最佳电流波形(基本和二次谐波)。最后,还提出了一些稳健性分析以展示该电流的良好性能。

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