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首页> 外文期刊>Mathematical Problems in Engineering >Static Output-Feedback Control for Vehicle Suspensions: A Single-Step Linear Matrix Inequality Approach
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Static Output-Feedback Control for Vehicle Suspensions: A Single-Step Linear Matrix Inequality Approach

机译:车辆悬架的静态输出反馈控制:单步线性矩阵不等式方法

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摘要

In this paper, a new strategy to design static output-feedback controllers for a class of vehicle suspension systems is presented. A theoretical background on recent advances in output-feedback control is first provided, which makes possible an effective synthesis of static output-feedback controllers by solving a single linear matrix inequality optimization problem. Next, a simplified model of a quarter-car suspension system is proposed, taking the ride comfort, suspension stroke, road holding ability, and control effort as the main performance criteria in the vehicle suspension design. The new approach is then used to design a static output-feedback H-infinity controller that only uses the suspension deflection and the sprung mass velocity as feedback information. Numerical simulations indicate that, despite the restricted feedback information, this static output-feedback H-infinity controller exhibits an excellent behavior in terms of both frequency and time responses, when compared with the corresponding state-feedback H-infinity controller.
机译:本文提出了一种为一类车辆悬架系统设计静态输出反馈控制器的新策略。首先提供了输出反馈控制最新进展的理论背景,通过解决单个线性矩阵不等式优化问题,可以有效地合成静态输出反馈控制器。接下来,提出了四分之一汽车悬架系统的简化模型,其中将乘坐舒适性,悬架行程,道路抓地能力和控制力作为车辆悬架设计的主要性能标准。然后使用新方法设计静态输出反馈H无限控制器,该控制器仅将悬架挠度和弹簧质量速度用作反馈信息。数值模拟表明,尽管反馈信息受到限制,但与相应的状态反馈H-infinity控制器相比,此静态输出-反馈H-infinity控制器在频率和时间响应方面均表现出出色的性能。

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