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Advantages of Multiple-Input Multiple-Output (MIMO) testing using low level excitation systems

机译:使用低电平激励系统进行多输入多输出(MIMO)测试的优点

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Multiple-Input Multiple-Output (MIMO) measurement techniques are a well-proven and well-established method for collecting FRF data sets. Despite that, the idea of using multi-references and multiple shakers can be intimidating for an inexperienced modal test engineer. MIMO methods offer some distinct advantages for the measurement and extraction of basic modal parameters especially while testing larger structures. Compared to Single-Input, Single-Output (SISO) techniques, MIMO allows for more uniformly distributed energy across the structure, force levels can be kept lower, modal test data can be taken in one single shot, while nonlinearities are less likely to be excited. Experimental data was taken using single and multiple shakers on an aeronautical structure and results were compared to illustrate the basic principles behind the MIMO technique. Practical aspects of shaker set up, reciprocity checks and the capability of MIMO to resolve closely spaced modes and repeated roots are highlighted throughout the example.
机译:多输入多输出(MIMO)测量技术是一种经过良好的验证和良好的方法,用于收集FRF数据集。尽管如此,使用多引用和多个振动器的想法可能会对缺乏经验的模态测试工程师来恐吓。 MIMO方法特别为测量和提取基本模态参数,特别是在测试更大的结构的同时提供一些明显的优势。与单输入,单输出(SISO)技术相比,MIMO允许穿过结构更均匀的分布能量,力水平可以保持较低,模态测试数据可以在单一拍摄中拍摄,而非线性不太可能是兴奋的。在航空结构上使用单一的多个振动器进行实验数据,并将结果进行了比较,以说明MIMO技术背后的基本原理。在整个示例中突出了振动筛的实际方面,互惠检查和MIMO的能力,以解决紧密间隔的模式和重复的根。

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