H/sub /spl infin// vibration control of active suspension for automotive application

A. Kanbolat, Y. Okuyama, F. Takemori, L. Gianone, S. Horvat, J. Bokor
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引用次数: 5

Abstract

This paper deals with simultaneous control of acceleration transmission, wheel load fluctuation, suspension deflection and sprung mass displacement. The control theory is based on the robust H/sub /spl infin// control theory with the consideration of the modeling errors lumped into an unstructured uncertainty acting on the unperturbed plant. The design method is new and powerful for electronic car suspension's control systems, as it presents a new approach to the designers for the computation of a controller maintaining robust stability while guaranteeing the performance in a wide frequency range, even in the case of the controller is applied to the actual plant. Additionally, the paper emphasizes that the assumptions in the modeling step may lead to unrealistic control designs and, as an example, the effect of the rigidity assumption on the behavior of the open loop system is discussed.
汽车主动悬架的H/sub /spl振动控制
本文研究了加速度传递、轮载波动、悬架挠度和簧载质量位移的同时控制问题。该控制理论以鲁棒H/sub /spl / in//控制理论为基础,考虑了建模误差集中为作用于无摄动对象的非结构化不确定性。该设计方法对于电子汽车悬架控制系统来说是一种新颖而有力的设计方法,它为设计人员提供了一种新的方法,使控制器在实际应用的情况下,既能在较宽的频率范围内保持鲁棒稳定性,又能保证其性能。此外,本文强调建模步骤中的假设可能导致不切实际的控制设计,并作为一个例子,讨论了刚度假设对开环系统行为的影响。
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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