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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part D. Journal of Automobile Engineering >Research on bifurcation and control of electromechanical coupling torsional vibration for wheel-side direct-driven transmission system
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Research on bifurcation and control of electromechanical coupling torsional vibration for wheel-side direct-driven transmission system

机译:轮侧直流传动系统机电耦合扭转振动分岔与控制研究

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摘要

Aiming to the torsional vibration destabilization phenomenon of the wheel-side transmission system direct-driven by the high-power motor, the system torsional vibration bifurcation characteristics and control strategy are analyzed. Through defining the system electromechanical coupling relationship between the electrical link and the mechanical link, the dynamic model of the wheel-side direct-driven transmission system is constructed. Then, based on the Routh-Hurwitz stability criterion, the system Hopf bifurcation characteristics caused by the change of the wheel-ground friction during driving are revealed. Furthermore, with the nonlinear feedback controller and the Washout filter combined, the system torsional vibration stabilization controller is constructed by introducing the system torsional vibration signals into the motor control voltage. The results show that the linear part of the torsional vibration stabilization controller can effectively change the system stability region, as well as the cubic nonlinear part of the torsional vibration stabilization controller can control the stability of the system bifurcation points and suppress the limit cycle amplitude. The research results can provide theoretical basis and technical support for the performance improvement and integrated application of the wheel-side direct-driven transmission system in the electric bus.
机译:针对大功率电机直接驱动轮侧传动系统的扭振失稳现象,分析了系统扭振分岔特性及控制策略。通过定义电气连杆和机械连杆之间的系统机电耦合关系,建立了轮侧直驱传动系统的动力学模型。然后,基于Routh-Hurwitz稳定性判据,揭示了由于行驶过程中车轮-地面摩擦变化引起的系统Hopf分岔特性。此外,通过将系统扭振信号引入电机控制电压,将非线性反馈控制器和冲刷滤波器相结合,构造了系统扭振稳定控制器。结果表明,扭振稳定控制器的线性部分可以有效地改变系统的稳定域,而三次非线性部分可以控制系统分岔点的稳定性,抑制极限环幅值。研究结果可为电动客车轮侧直驱传动系统的性能改进和综合应用提供理论依据和技术支持。

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