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A step-versus-short-pulse input technique to demonstrate acceleration response using an LDV

机译:使用LDV演示加速度响应的步进与短脉冲输入技术

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This technique for extracting acceleration-like signals from a laser Doppler vibrometer (LDV) depends on comparing the responses of structures to specific impulsive inputs. What is compared here is the derivative-like response of a sufficiently short pulse to that of a step input. This is derivative-like because the pulse itself consists of an abrupt up-thrust followed shortly by an identical, but inverted down-thrust. The short pulse response emulates the negative numerator of the derivative definition in analog fashion. Certain structures excited by long pulses with equal widely-spaced rising and falling step inputs, respond such that the up and down-thrusts responses are exact inverted copies of each other regardless of the structural modes excited. Adjusting this pulse-width to be much smaller than the period of the highest frequency response component forms this derivative response. Three validation tests are discussed. A consistency check shows the LDV pulse response is close to that of the finite difference scan of the LDV step response. The next test compares LDV pulse responses relative to differing input pulse-widths. The last test correlates the step input response of a mounted accelerometer on a test fixture to that of the pulse input response of an LDV focused on top. This technique should be helpful in comparing the LDV-to-accelerometer responses in mechanical setups where this derivative character of impulse inputs is valid. Since this comparison encompasses multiple excited modes, one can check or validate device calibrations at these different frequencies. It may be useful in some tests as an analog means of simulating acceleration using the velocity output of a no-mass-load LDV.
机译:从激光多普勒振动计(LDV)提取类似加速度的信号的这项技术取决于比较结构对特定脉冲输入的响应。此处比较的是足够短的脉冲对阶跃输入的微分响应。这是类似导数的,因为脉冲本身由突然的上推力组成,接着是相同但反向的下推力。短脉冲响应以模拟方式模拟微分定义的负分子。由长脉冲激发的具有相等的宽间隔上升和下降阶跃输入的某些结构会做出响应,以使上下推力响应是彼此精确的反向复制,而与激发的结构模式无关。将该脉冲宽度调整为比最高频率响应分量的周期小得多,就可以形成这种微分响应。讨论了三个验证测试。一致性检查显示LDV脉冲响应接近LDV阶跃响应的有限差分扫描。下一个测试比较了相对于不同输入脉冲宽度的LDV脉冲响应。最后一个测试将测试夹具上安装的加速度计的阶跃输入响应与聚焦在顶部的LDV的脉冲输入响应相关联。在脉冲输入的此导数特性有效的机械设置中,该技术应有助于比较LDV对加速度计的响应。由于这种比较包含多种激发模式,因此可以检查或验证在这些不同频率下的设备校准。在某些测试中,使用无质量LDV的速度输出来模拟加速度的模拟方法可能很有用。

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