考虑实际因素影响的永磁励磁直流换向器电机动力学模型

A. Shestakov
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引用次数: 0

摘要

永磁体励磁的直流换向电机由于其高能量、高质量的特性,目前仍广泛应用于各种系统的受控电驱动中。在这方面,这些电机的优化设计问题仍然是相关的。对永磁体励磁直流换向电机进行瞬态仿真是优化其质量尺寸、能量和动态特性的一种方法。为了解决这一问题,本文基于直流电机的微分方程组,建立了永磁体驱动的直流电机的动力学模型。在该系统中,为了考虑开关电枢反应对产生的气隙磁通的影响,以及考虑饱和对电枢沿交叉轴的电感的影响,建议使用由双曲函数近似的直流电机的非线性磁化曲线。建模结果证实了所提出的模型在优化永磁体驱动直流电机的动力学、能量和质量参数方面的能力和应用的可能性。
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Dynamic Model of DC Commutator Motor Excited by Permanent Magnets, with Due Regard for the Influence of Real Factors
DC commutator motors excited by permanent magnets, are still widely used in controlled electric drives of various systems due to their high energy and mass-dimensional characteristics. In this regard, the problem of optimal design of these motors remains relevant. One way to optimize the mass-dimensional, energy and dynamic characteristics of DC commutator motors excited by permanent magnets is to simulate transients. To solve this problem, this paper proposes a dynamic model of a DC motor exited by permanent magnets, based on a system of differential equations of a DC machine. In this system, to account for the effect of the switching armature reaction on the resulting airgap flux, as well as to account for the effect of saturation on the inductance of the armature along the cross axis, it is proposed to use a nonlinear magnetization curve of a DC machine approximated by a hyperbolic function. The results of the modelling established the ability of the model proposed and the possibility of its application to optimize the dynamic, energy and mass-dimensional parameters of DC motors exited by permanent magnets.
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