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Characterization of Root-Mean-Square Acceleration Errors in Flexible Structures undergoing Vibration Testing

机译:柔性结构中的根均方加速误差表征振动测试

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A methodology is described to evaluate the Root-Mean-Square (RMS) errors in acceleration response during the vibration testing of flexible structures like missile and rockets. Simulation studies are carried out on a free-free uniform beam to characterize the error estimations in the desired and achieved acceleration spectra at different locations of the structure. Equal and unequal desired spectra are also considered at different locations of the structure and individual error in the achieved spectrum, as well as overall error is computed. The simulation results are obtained for traversing a single input along the length of the structure with three control sensors at different locations. The variation of the force requirement at different locations of the control sensor and the normalized RMS error for each control sensor is computed. The investigations show that the force requirement is less when the control sensors are placed at the far ends of the structure. It is also observed that the force requirement is increased marginally for the increased number of control sensors, whereas the overall error between the desired and achieved spectrum is reduced with the increase in the number of control sensors.
机译:描述了一种方法来评估柔性结构的振动测试期间加速响应中的根均方(RMS)误差,如导体和火箭。在无自由均匀光束上进行仿真研究,以表征所需和实现的结构的加速度谱中的误差估计。在结构的不同位置和所达到的频谱中的不同位置也考虑等于和不平等的所需光谱,并且计算总体误差。获得模拟结果,用于沿着在不同位置的三个控制传感器的结构的长度沿着结构的长度横穿单个输入。计算控制传感器的不同位置处的力要求的变化和每个控制传感器的归一化RMS误差。该研究表明,当控制传感器放置在结构的远端时,力要求较少。还观察到,对于增加的控制传感器的数量,力要求略微增加,而所需和达到的光谱之间的总误差随着控制传感器的数量的增加而减小。

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