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The use of multibody system modeling and multivariable system decoupling techniques in vehicle ride control

机译:多体系统建模和多变量系统解耦技术在车辆行驶控制中的应用

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This paper describes the use of realistic analytical techniques to address automotive ride control. Multibody system (MBS) modeling techniques were used to develop a full vehicle model with suspension system representation, which was subsequentlyvalidated against experimental data. The resultant multivariable ride control problem was then decoupled in the frequency domain by the application of equivalence transformation techniques. it is shown that diagonalization can be achieved for the range of primary ride frequencies, and that the decoupled system then consists of three single-input/single-output (SISO) systems, one for each of the sprung mass modes. Finally, feedback control design for each sprung mass mode loop is illustrated by theapplication of modal damping.
机译:本文介绍了使用现实的分析技术来解决汽车行驶控制问题。多体系统(MBS)建模技术用于开发具有悬架系统表示的完整车辆模型,随后针对实验数据对其进行了验证。然后,通过应用等效变换技术,在频域中解耦由此产生的多变量行驶控制问题。结果表明,在主要行驶频率范围内可以实现对角化,并且解耦后的系统由三个单输入/单输出(SISO)系统组成,每个弹簧质量模式一个。最后,通过模态阻尼的应用说明了每个弹簧质量模态回路的反馈控制设计。

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