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Seat Structure Comfort Evaluation Using Pink Noise and Human/Dummy Transmissibility Correlation

机译:座椅结构使用粉红色噪声和人/伪传播性相关性评估

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Vehicle floor vibration is the resultant of different road inputs damped through various transfer paths. Seat comfort, which depends on these floor vibrations, can be evaluated with a single input signal "Pink noise"; which constitutes various road inputs. Transmissibility of seat structure on a vibration shaker with pink noise input includes all possible responses of road inputs. Still, transmissibility profile at vehicle end and component level varies. This is due to the utilization of "dummy" on component level testing on vibration shaker, which acts as a dead weight with dissimilar damping characteristics of human. A transmissibility correlation between human and dummy is attained by replacing the dummy in place of human and actuating it to find the difference in contribution between them for different class of vehicles. This contribution extrapolation from the damping effects of human and dummy is applied on dummy transmissibility. This results in a complete solution for attaining real time vehicle level seat structure transmissibility at component level testing.
机译:车辆地板振动是通过各种转移路径阻尼的不同道路输入的所得到的。座椅舒适度取决于这些地板振动,可以用单个输入信号“粉红色噪声”来评估;这构成了各种道路投入。具有粉红色噪声输入的振动振动器上的座椅结构的传感器包括道路输入的所有可能的响应。仍然,车辆端和组件水平的传感器轮廓变化。这是由于在振动振动器上使用“虚拟”对组件水平测试的影响,其用作人类不同的阻尼特性的反重。通过替换虚拟物体来实现人和虚拟之间的传感器相关性,并致力于在不同类车辆中找到它们之间的贡献差异来实现。这种贡献从人和假人的阻尼效果外推应用于虚拟传导性。这导致完整的解决方案,用于在元件级测试处获得实时车辆级座椅结构传递性。

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