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Comparing Two Voltage Observers in a Sensorsystem using Repetitive Control

机译:使用重复控制比较传感器系统中的两个电压观察者

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In sensor systems one of the most crucial issues is represented by the insensibility of the sensors with respect to the disturbances to obtain precision in the detected measurements. This paper proposes two different observers to identify an input voltage disturbance in sensors for ferromagnetic particle monitoring. The disturbance is identified together with the state variables which can be used for a controller. Because of a sinusoidal function being chosen to be the reference signal of the sensor, the repetitive controller is proposed to make robust this periodic work function of the sensor. The tracking of this working point is realised using a classical feed-forward control, which is made robust using a resonant control loop. The resonant control loop provides not only for the robustness but in the meantime minimises the energy needed for the sensor. The resonance is maintained by using the repetitive controller. In this sense the resonance region of the system guarantees a structural robustness and optimality. The repetitive control provides a tracking throughout the cycles. Computer simulations are devoted to compare the obtained results and conclusion closes the paper.
机译:在传感器系统中,最重要的问题之一是通过传感器关于在检测到的测量中获得精度的扰动的不敏感性来表示。本文提出了两种不同的观察者,以识别用于铁磁性粒子监测的传感器中的输入电压干扰。与可用于控制器的状态变量一起识别干扰。由于正弦函数被选择为传感器的参考信号,所以提出了重复控制器,以使传感器的这种周期性工作功能进行稳健。使用经典前馈控制来实现该工作点的跟踪,其使用谐振控制回路进行稳健。谐振控制回路不仅为稳健性提供,但在此时,同时最小化传感器所需的能量。通过使用重复控制器保持谐振。在这意义上,系统的共振区域可确保结构稳健性和最优性。重复控制在整个周期中提供了跟踪。计算机模拟致力于比较所获得的结果和结论结束。

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