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A new velocity measurement method using linear type Hall-effect sensor for an electro-mechanical fin actuator

机译:一种新型速度测量方法,采用直线型霍尔效应传感器进行机械鳍式执行器

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The objective of this paper is to propose a new velocity measurement method for an electro-mechanical fin actuator. The model of the electro-mechanical fin actuator includes uncertainties such as unknown disturbances and parameter variations in flight condition. In this paper, Model Following Sliding Mode Controller(MFSMC) is used as a position controller of the electro-mechanical fin actuator, due to the robustness against these uncertainties. MFSMC requires not only position information but also velocity information. Usually, analog tachometers have been used for velocity feedback in an electro-mechanical fin actuator. However, using these types of sensors have problems such as the cost, space, and malfunction. These problems lead to propose a new velocity measurement method using linear type Hall-effect sensor. In order to verify the proposed method, several experiments are performed with a fin actuator. It is shown that the MFSMC with a new velocity measurement method using linear type Hall-effect sensor can satisfy the requirements without using of velocity sensor.
机译:本文的目的是提出一种用于机电鳍致动器的新速度测量方法。电力机械鳍致动器的模型包括不确定性,例如未知的扰动和飞行条件的参数变化。在本文中,由于对这些不确定性的鲁棒性,将滑模控制器(MFSMC)之后的模型用作机电鳍致动器的位置控制器。 MFSMC不仅需要定位信息,还需要速度信息。通常,模拟动力学仪已用于电动机械鳍式执行器中的速度反馈。但是,使用这些类型的传感器具有诸如成本,空间和故障之类的问题。这些问题导致使用线性型霍尔效应传感器提出了一种新的速度测量方法。为了验证所提出的方法,用鳍致动器进行若干实验。结果表明,具有使用线性型霍尔效应传感器的新速度测量方法的MFSMC可以满足不使用速度传感器的要求。

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