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首页> 外文期刊>International Journal of Control, Automation, and Systems >Dynamic Output-Feedback H-infinity Control for Active Half-vehicle Suspension Systems with Time-varying Input Delay
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Dynamic Output-Feedback H-infinity Control for Active Half-vehicle Suspension Systems with Time-varying Input Delay

机译:时变输入延迟的主动半车辆悬架系统的动态输出反馈H无限控制

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摘要

This paper addresses the new output-feedback H-infinity control problem for active half-vehicle suspension systems with time-varying input delay. By introducing multi-objective synthesis, a new dynamic output-feedback H-infinity controller is designed such that the closed-loop suspension system is asymptotically stable with guaranteed robust performance in the H-infinity sense. The proposed controller is formulated in terms of linear matrix inequality (LMI) based on the auxiliary function-based integral inequality method and the reciprocally convex approach. A new delay-dependent sufficient condition for the desired controller offers a wider range of control input delay. Numerical examples are provided to validate the effectiveness of the proposed design method.
机译:本文针对具有时变输入延迟的主动半车辆悬架系统解决了新的输出反馈H无限控制问题。通过引入多目标综合,设计了一种新的动态输出反馈H-infinity控制器,使得闭环悬挂系统渐近稳定,并在H-infinity方面保证了鲁棒的性能。基于基于辅助函数的积分不等式方法和双向凸方法,根据线性矩阵不等式(LMI)来制定控制器。针对所需控制器的依赖于延迟的新的充分条件提供了更大范围的控制输入延迟。数值算例验证了所提出设计方法的有效性。

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