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Multi-axis vibration testing of an aerodynamically excited structure

机译:空气动力学兴奋结构的多轴振动测试

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Missile vibration testing has undergone significant advances in the past decade. This has been the result of improvements in signal processing and test specification development, but more recently due to the implementation of Multi-Input Multi-Output (MIMO) testing. To date, much of the focus of MIMO testing has been on either a twin-shaker, single-axis configuration or multi-axis testing on a 3 or 6 Degree of Freedom (DOF) shaker system. There has been little attention to replication of the 3-dimensional operating deflection shapes that a missile system experiences during its carriage or operation. This paper presents a systematic approach to 3-axis vibration testing, using current MIMO rectangular controller technology, and demonstrates through an experimental setup a near-3 fold improvement in matching the vibration response of the item under test over the more traditional single axis SISO and MIMO test methods.
机译:导弹振动测试在过去十年中经历了重要进展。 这是信号处理和测试规范开发的改进的结果,但最近由于实现了多输入多输出(MIMO)测试。 迄今为止,MIMO测试的大部分焦点一直是双振动器,单轴配置或多轴测试,在3或6自由度(DOF)振动器系统上。 在运输或操作期间的导弹系统经验几乎没有关注三维操作偏转形状的复制。 本文介绍了使用当前MIMO矩形控制器技术的3轴振动测试的系统方法,并通过实验设置逐步逐步提高,在更传统的单轴SISO和更传统的单轴下进行的物品的振动响应相匹配。 MIMO测试方法。

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