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A robust adaptive control scheme for an active mount using a dynamic engine model

机译:使用动态引擎模型的主动式悬架的鲁棒自适应控制方案

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摘要

In this study, a robust adaptive control method is employed for an active engine mount in a six-degree-of-freedom model of the engine on the mounts to improve vibration behavior of the engine. The vibration isolation performance and robustness of the employed robust adaptive controller are compared with a robust and an adaptive control technique. In addition, effectiveness of the robust adaptive control is evaluated in transient conditions (accelerating and gear change conditions). In this regard, a dynamic model for the engine supported by rubber and active mounts and its governing equations are presented. Then, a robust adaptive control, namely the robust Model Reference Adaptive Control (robust MRAC) technique, based on the gradient method with sigma-modification, is designed by selecting a proper reference model. Moreover, a robust control, namely the H control scheme and an adaptive control, namely MRAC, are employed for the active mount. Simulation results show that the robust MRAC has a better control performance (in reducing the transmitted force to the chassis) as compared with the H scheme. In addition, in the face of large uncertainties, MRAC may diverge and become unstable. However, the robust MRAC is robust in the presence of large uncertainties. Also, robust MRAC is effective not only in constant engine speeds, but also in transient conditions.
机译:在这项研究中,一种鲁棒的自适应控制方法被用于发动机在安装座上的六自由度模型中的主动发动机安装座,以改善发动机的振动性能。将所采用的鲁棒自适应控制器的隔振性能和鲁棒性与鲁棒和自适应控制技术进行了比较。另外,在瞬态条件下(加速和换档条件)评估了鲁棒自适应控制的有效性。在这方面,提出了由橡胶和主动支座支撑的发动机的动力学模型及其控制方程。然后,通过选择合适的参考模型,设计了一种基于sigma-modification梯度方法的鲁棒自适应控制,即鲁棒模型参考自适应控制(robust MRAC)技术。此外,主动安装采用鲁棒控制,即H控制方案和自适应控制,即MRAC。仿真结果表明,与H方案相比,鲁棒的MRAC具有更好的控制性能(减少了传递到底盘的力)。此外,面对巨大的不确定性,MRAC可能会发散并变得不稳定。但是,健壮的MRAC在存在大量不确定性的情况下也是健壮的。同样,强大的MRAC不仅在恒定的发动机转速下有效,而且在瞬态条件下也有效。

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