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Active torque ripple reduction based on an analytical model of torque

机译:基于转矩分析模型的主动转矩波动减小

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摘要

The vibration caused by torque ripple may degrade the performance of drivetrain, thus the reduction of torque ripple are necessary for hybrid electrical vehicle/electrical vehicle application, while an analytical description of torque will be the basis. In this study, two-dimensional Fourier series supplemented by polynomial fitting is introduced to reconstruct the numerical solution of magnetic coenergy (MCE) from finite element analysis. An analytical torque model, which can describe torque ripple precisely at all working points, is derived from the reconstructed MCE. On the basis of the torque model, the expressions of harmonic currents used to reduce torque ripple are obtained. The proposed expression also satisfies the principle of maximum torque per ampere. Then, a feedforward torque controller based on the expression of harmonic currents is introduced. Meanwhile, a feedback torque controller based on a torque observer is developed as a comparison. The results of simulation and experiments show that both two controllers can reduce the torque ripple in steady state, but the feedforward torque controller has obviously better effects when motor speed increases. Furthermore, the feedforward torque controller is also beneficial to decline torque ripple during transient process of torque response.
机译:转矩脉动引起的振动可能会降低动力传动系统的性能,因此降低转矩脉动对于混合动力电动汽车/电动汽车的应用是必要的,而转矩的分析描述将是基础。在这项研究中,引入了二维傅立叶级数并辅以多项式拟合,以从有限元分析中重建磁能(MCE)的数值解。从重构的MCE中得出了可以精确描述所有工作点扭矩波动的分析扭矩模型。在转矩模型的基础上,获得了用于减小转矩脉动的谐波电流表达式。提出的表达式还满足每安培最大扭矩的原理。然后,介绍了一种基于谐波电流表达式的前馈转矩控制器。同时,开发了基于扭矩观测器的反馈扭矩控制器作为比较。仿真和实验结果表明,两种控制器均可减小稳态时的转矩脉动,但当电动机转速提高时,前馈转矩控制器的效果明显更好。此外,前馈转矩控制器还有利于在转矩响应的瞬态过程中降低转矩波动。

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