Modeling and control of a hydraulic unit for direct yaw moment control in an automobile

Seung-Han You, J. Hahn, H. Kim, Y. Cho, Kyo-Il Lee
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引用次数: 20

Abstract

This paper deals with feedback control of a hydraulic unit for direct yaw moment control, which actively maintains the dynamic stability of an automobile. The uncertain parameters and complex structure naturally call for empirical modeling of the hydraulic unit, which lead to a high-fidelity input/output model. The identified model is cross-validated against experimental data under various conditions, which helps to establish a stringent model uncertainty. Then, the H/sub /spl infin// optimization technique is employed to synthesize a controller with guaranteed robust stability and performance against the model uncertainty. The superb performance of the synthesized controller is experimentally verified, which shows the viability of the proposed approach in a real-world vehicle safety application.
汽车直接偏航力矩控制液压装置的建模与控制
本文研究了用于直接偏航力矩控制的液压单元的反馈控制,该控制主动地保持了汽车的动态稳定性。液压单元参数的不确定性和结构的复杂性自然要求对其进行经验建模,从而实现高保真的输入/输出模型。在不同条件下,通过实验数据对模型进行交叉验证,建立了严格的模型不确定度。然后,采用H/sub /spl / in//优化技术合成具有鲁棒稳定性和抗模型不确定性性能的控制器。实验验证了该综合控制器的优良性能,证明了该方法在实际车辆安全应用中的可行性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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