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H-infinity and Mixed H2/H-infinity with Pole-Placement Design via ILMI Method for Semi-active Suspension System

机译:半主动式悬架系统的H无限和混合H2 / H无限通过ILMI方法进行极点布置设计

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This paper aims to use H‡ and mixed H2/H‡ techniques with a semi active suspension system to increase the passenger''s ride comfort performance. A two degree of freedom dynamic model of a vehicle semi-active suspension system was presented. The role of H‡ is used to minimize the disturbance effect on the system output whereas H2 is used to improve the transients against random disturbances. The capability of the system of improving comfort of operators has been evaluated through simulations carried out with a validated model of the entire vehicle. The results of this study revealed that the use of mixed H2/H‡ with pole placement for a semi-active suspension system showed a great improvement compared with H‡ systems. In addition, the results of the simulation showed that ride comfortable of the vehicle can be improved effectively by using the semi-active suspension with mixed H2/H‡ control method, and also the mixed H2/H‡ control method more effective than the H‡ control method. Finally, this paper showed a robust use of both H‡ and mixed H2/H‡ problem which can be solved using linear matrix inequality (LMI) techniques.
机译:本文旨在将H•和H2 / H•混合技术与半主动悬挂系统结合使用,以提高乘客的乘坐舒适性。提出了车辆半主动悬架系统的两自由度动力学模型。 H‡的作用是使对系统输出的干扰影响最小化,而H2则用于改善针对随机干扰的瞬变。通过使用整个车辆的经过验证的模型进行的仿真评估了该系统改善操作员舒适度的能力。这项研究的结果表明,与H•‡系统相比,在半主动悬挂系统中混合使用带有极点的H2 / H•混合气体显示出了很大的进步。此外,仿真结果表明,通过使用混合H2 / H‡控制方法的半主动悬架可以有效地改善车辆的乘坐舒适性,并且混合H2 / H‡控制方法比混合H2 / H‡控制方法更有效。 H‡控制方法。最后,本文表明可以同时使用H•和H2 / H•混合问题,这可以使用线性矩阵不等式(LMI)技术解决。

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