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Nonorthogonal Aerial Optoelectronic Platform Based on Triaxial and Control Method Designed for Image Sensors

机译:基于三轴和控制方法的非正交航空光电平台图像传感器设计

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摘要

A traditional aerial optoelectronic platform consists of inside and outside multilayer gimbals, while an internal gimbal and drive components occupy the internal space where optical sensors are located. In order to improve the replaceability of optical sensors and to increase their available space, this paper introduces a nonorthogonal aerial optoelectronic platform based on three axes; we carried out research on its drive control method. A three-dimensional structure of an aerial optoelectronic platform was designed. A noncontact drive of a linear voice coil motor was introduced, and a drive control scheme of a proportional integral and a disturbance observer was adopted. Finally, simulations and experiments were carried out. Results showed that the aerial optoelectronic platform could effectively release three times the image sensor space, and the servo bandwidth was 60.2 Hz, which was much better than that of traditional two-axis and four-gimbal platforms. The stability accuracy of the system reached 4.9958 micron rad, which was obviously better than that of traditional gimbals. This paper provides a reference for the design of new optoelectronic platforms.
机译:传统的空中光电平台由内部和外部多层云台组成,而内部云台和驱动组件占据了光学传感器所在的内部空间。为了提高光学传感器的可替换性并增加其可用空间,本文介绍了一种基于三轴的非正交航空光电平台。我们对其驱动控制方法进行了研究。设计了航空光电平台的三维结构。介绍了线性音圈电机的非接触驱动,并采用比例积分和扰动观测器的驱动控制方案。最后,进行了仿真和实验。结果表明,航空光电平台可以有效释放图像传感器空间的三倍,且伺服带宽为60.2 Hz,远优于传统的两轴四支架平台。该系统的稳定性精度达到4.9958微米弧度,明显优于传统的云台。本文为新型光电平台的设计提供了参考。

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