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Robust energy-absorbing compensators for the ACTEX II test article

机译:用于ACTEX II测试制品的鲁棒能量吸收补偿器

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The paper addresses the problem of satellite solar panel vibration. A multi-layer vibration control scheme is investigated using a flight test article. Key issues in the active control portion are presented in the paper. The paper discusses the primary control design drivers, which are the time variations in modal frequencies due to configuration and thermal changes. A local control design approach is investigated, but found to be unworkable due to sensor/actuator non-collocation. An alternate design process uses linear robust control techniques, by describing the modal shifts as uncertainties. Multiple modal design, alpha- shifted multiple model, and a feedthrough compensation scheme are examined. Ground and simulation tests demonstrate that the resulting controllers provide significant vibration reduction in the presence of expected system variations.
机译:本文解决了卫星太阳能电池板振动的问题。使用飞行试验制品研究了多层振动控制方案。本文提出了主动控制部分中的关键问题。本文讨论了主要控制设计驱动程序,这是由于配置和热变化引起的模态频率的时间变化。研究了局部控制设计方法,但由于传感器/执行器非搭配,发现是不可行的。替代设计过程使用线性鲁棒控制技术,通过描述模态移位作为不确定性。检查多种模态设计,α移位多模型和馈通补偿方案。地面和仿真试验表明,所得控制器在存在预期的系统变化的情况下提供显着的减振。

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