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Active Vibration Isolation Control: Comparison of Feedback and Feedforward Control Strategies Applied to Coriolis Mass-Flow Meters (I)

机译:主动隔振控制:用于科里奥利质量流量计的反馈和前馈控制策略的比较(I)

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摘要

In this paper we describe the design, implementation and results of multi degree of freedom (DOF) active vibration control for a Coriolis mass-flow meter (CMFM). Without vibration control, environmental vibrational disturbances results in nanometre movement of the fluid-conveying tube which causes erroneous mass-flow measurements. In order to reduce the transmissibility from external vibrations to the internal tube displacement active vibration control is applied.udA comparison of a feedback control strategy (adding virtual mass and skyhook damping) and an adaptive feedforward control strategy is made, taking into account the sensor noise levels. Theoretic results are validated with a multi-DOF experimental setup, showing up to 40 dB reduction of the influence of external vibrations. The amount of reduction is limited by the sensor noise levels.
机译:在本文中,我们描述了科里奥利质量流量计(CMFM)的多自由度(DOF)主动振动控制的设计,实现和结果。如果没有振动控制,环境振动干扰会导致流体输送管发生纳米运动,从而导致错误的质量流量测量。为了减少从外部振动到内部管位移的传递率,应用了主动振动控制。 ud比较了反馈控制策略(添加虚拟质量和天钩阻尼)和自适应前馈控制策略,并考虑了传感器噪音水平。理论结果已通过多自由度实验设置进行了验证,可以将外部振动的影响降低多达40 dB。减少量受传感器噪声水平的限制。

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