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刘相秋 王聪 邹振祝. 失谐弱耦合卫星天线结构振动分析及预测控制[J]. 力学学报, 2009, 41(6): 967-973. DOI: 10.6052/0459-1879-2009-6-2008-683
引用本文: 刘相秋 王聪 邹振祝. 失谐弱耦合卫星天线结构振动分析及预测控制[J]. 力学学报, 2009, 41(6): 967-973. DOI: 10.6052/0459-1879-2009-6-2008-683
Xiangqiu Liu, Cong Wang, Zhenzhu Zou. Vibration restrain of disordered weak coupling antenna structure in satellite by applying predictive control method[J]. Chinese Journal of Theoretical and Applied Mechanics, 2009, 41(6): 967-973. DOI: 10.6052/0459-1879-2009-6-2008-683
Citation: Xiangqiu Liu, Cong Wang, Zhenzhu Zou. Vibration restrain of disordered weak coupling antenna structure in satellite by applying predictive control method[J]. Chinese Journal of Theoretical and Applied Mechanics, 2009, 41(6): 967-973. DOI: 10.6052/0459-1879-2009-6-2008-683

失谐弱耦合卫星天线结构振动分析及预测控制

Vibration restrain of disordered weak coupling antenna structure in satellite by applying predictive control method

  • 摘要: 为了研究弱耦合卫星天线结构的振动控制,建立了该结构的简化计算模型,并针对该模型研究了弱耦合卫星天线结构动力学性能的特殊性:结构失谐时的振动模态局部化现象;针对失谐前后的结构,采用预测控制方法进行了振动控制,并与二次线性最优控制(LQR)方法的振动抑制效果进行了对比. 仿真结果表明:弱耦合星载天线结构参数的微小失谐会导致结构振动产生明显的模态局部化;采用预测控制方法进行结构振动控制的效果明显优于LQR控制方法,且在失谐导致的模型失配时,预测控制方法对结构振动亦有较好的抑制;在进行此种结构的振动主动控制时必须考虑到结构失谐的影响.

     

    Abstract: In order to research the vibration control ofweak-coupling antenna structures in satellite, a simplified dynamicsstructure model is established in the present study. The vibration modeslocalization in the structures is investigated. Active vibration control ofthe structures is studied by applying predictive control method and LinearQuadratic Regulator (LQR) control method, respectively. The simulationresults show that small disorder of the weak-coupling antenna structures caninduce remarkable localization of vibration modes. The vibration controleffects predicted with the present method are superior to those with LQRmethod. The results also show that the predictive control method has perfectperformance in vibration control analysis while the models are mismatcheddue to the structure disorder. Therefore, the disorder must be consideredseriously in active vibration control of weak coupling antenna structures.

     

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