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Robust damage-mitigating control of mechanical structures: experimental verification on a test apparatus

机译:机械结构的减轻损坏的鲁棒控制:在测试设备上进行实验验证

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The goal of damage-mitigating control is to achieve high performance of operating machinery without overstraining the mechanical structures and the potential benefit is an increase in the component service life with no significant loss of performance. This paper presents the design of a test apparatus, the synthesis of a damage-mitigating control system, and the results of experimentation where the objective is to demonstrate the concent of fatigue damage reduction as an extension of multivariable robust feedback control. The test apparatus is built upon a three-degree-of-freedom, two-input three-output mechanical structure. The methodology of the damage-mitigating control synthesis is built upon the principles of: (i) frequency-domain identification of the plant dynamics and modeling of uncertiainties in the state-space setting; and (ii) robust control based on the H_infinity approach by taking both plant dynamic performance and material degradation of structural components into consideration. Cae studies on the test apparatus indicate that fatigue life of specimens can be substantially extended with no appreciable degradation in the dynamic performance of the mechanical system.
机译:减轻损害的控制的目标是在不过度拉伸机械结构的情况下实现运行机械的高性能,并且潜在的好处是在不显着降低性能的情况下增加组件的使用寿命。本文介绍了测试设备的设计,减轻损害的控制系统的综合以及实验结果,其目的是证明疲劳损伤的减轻程度是多变量鲁棒反馈控制的扩展。该测试设备建立在三自由度,两输入三输出的机械结构上。减轻损害的控制综合的方法基于以下原则:(i)在状态空间设置中对植物动力学进行频域识别和不确定性建模; (ii)基于H_infinity方法的鲁棒控制,同时考虑了工厂的动态性能和结构部件的材料降解。在测试设备上进行的cae研究表明,试样的疲劳寿命可以大大延长,而机械系统的动态性能却没有明显下降。

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