Research on the Mechanical Zero Position Capture and Transfer of Steering Gear Based on Machine Vision

Mingfei Li, Haibin Liu, Donglai Xu, Chaowei Lu
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Abstract

The steering gear is a very critical component in the control system of the aircraft with steering gear. In order to achieve a high-precision rudder deviation command, it is necessary to detect the mechanical zero position of the steering gear. Based on machine vision, a non-contact method for capturing the mechanical zero position of the gas steering gear was proposed, which aimed to transmit the position of the mechanical zero position to the encoder, and saved it to the system. The method includes three parts: identification, capture and transmission of the center of the mechanical zero position. The edge detection method was used to identify the center of the mechanical zero position which was captured by overlapping the center of the mechanical zero position with the pixel reference point in the pixel coordinate system. To complete the transmission of the reference, according to the relative position of the pixel reference point and the mechanical zero position to be tested, the angle inverse method was used to calculate the encoder value corresponding to the mechanical zero position. This study provides a reliable basis for the calculation of rudder deflection angle and electrical compensation value.
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基于机器视觉的舵机机械零位捕获与传递研究
舵机是舵机飞机控制系统中一个非常关键的部件。为了实现高精度的舵偏指令,需要对舵机的机械零位进行检测。提出了一种基于机器视觉的非接触捕捉气体舵机机械零位的方法,将机械零位的位置信息传递给编码器,并保存到系统中。该方法包括三个部分:机械零位中心的识别、捕捉和传递。利用边缘检测方法,将机械零位中心与像素坐标系中的像素参考点重叠,识别机械零位中心。为了完成参考点的传输,根据像素参考点与待测机械零位的相对位置,采用角度逆法计算机械零位对应的编码器值。该研究为舵机偏转角和电补偿值的计算提供了可靠的依据。
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