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Adaptive Control for Reducing the Effect of Damping on the Output Signal of Microgyroscopes

机译:减少阻尼对微型陀螺仪输出信号影响的自适应控制

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It is a commonly used approach to employ control algorithms with force feedback loop for increasing the sensitivity and robustness of inertial sensors. However, such control strategies do not take into account variations or fluctuations of external parameters such as air pressure and humidity, which influence the dynamical behavior of the mechanical transducer elements and, hence, the sensor output signal. In order to compensate such disturbing effects, it seems very promising to use adaptive algorithms for the control of the drive and actuator elements, so that the impact of fluctuating ambient conditions on the output signal can be largely compensated by a proper corrective adjustment of the respective operating conditions.
机译:这是一种采用带有力反馈回路的控制算法来提高惯性传感器的灵敏度和鲁棒性的常用方法。但是,这样的控制策略没有考虑诸如空气压力和湿度之类的外部参数的变化或波动,这些变化或波动影响机械换能器元件的动态行为,并因此影响传感器输出信号。为了补偿这种干扰影响,使用自适应算法来控制驱动器和执行器元件似乎非常有前途,因此可以通过对相应环境进行适当的校正调整,在很大程度上补偿波动的环境条件对输出信号的影响。运行条件。

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