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Internal resonances and their bifurcations of a rigid-flexible space antenna

机译:刚柔空间天线的内部共振及其分叉

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The nonlinear dynamics of a flexible space antenna supported by a serial of two rigid arms mounted on a heavy satellite is studied under the conditions of 2:1 or 3:1 internal resonances. The nonlinear dynamic equations of the in-plane vibration of the antenna system of three degrees of freedom are derived first via the method of assumed modes. Then, the resonance and non-resonance regions are determined in terms of the dimensionless parameters of a rigid arm and a torsional spring in the antenna system. Afterwards, the approximate analytic solutions of frequency-amplitude response of the antenna system under 2:1 or 3:1 internal resonances are derived by using the method of multiple scales. Furthermore, the topologic description for the bifurcation of each internal resonance with respect to unfolding parameters is studied by means of the theory of singularity. Finally, the accuracy of the approximate analytic solutions is validated via the numerical solutions. The study shows that the internal resonances exist over a wide range of the detuning parameter. In addition, the 3:1 internal resonance exhibits much more complicated bifurcation topology than the 2:1 internal resonance. The approximate analytic solutions of internal resonances and their bifurcation analysis results provide an essential reference for designing the antenna system of concern.
机译:在2:1或3:1内部共振的条件下,研究了由安装在重型卫星上的两个刚性臂系列支撑的柔性空间天线的非线性动力学。首先通过假定模式的方法,推导了三自由度天线系统平面内振动的非线性动力学方程。然后,根据天线系统中的刚性臂和扭转弹簧的无量纲参数来确定谐振和非谐振区域。然后,采用多尺度法推导了天线系统在2:1或3:1内部共振条件下的频率-幅度响应的近似解析解。此外,借助奇异性理论研究了每个内部共振相对于展开参数的分歧的拓扑描述。最后,通过数值解验证了近似解析解的准确性。研究表明,内部谐振存在于很大范围的失谐参数中。此外,3:1内部共振比2:1内部共振表现出更为复杂的分叉拓扑。内部共振的近似解析解及其分叉分析结果为设计相关天线系统提供了重要参考。

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