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A Novel Disturbance Estimation and Compensation Approach Applied to Three-axis Inertially Stabilized Platform

机译:一种新的扰动估计和补偿方法应用于三轴惯性稳定平台

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Three-axis inertially stabilized platform (ISP) is a key technology in airborne remote sensing system, which is used to support an optical imaging sensor and hold the line of sight (LOS) of the sensor vertical to the earth, whose accuracy has a great effect on the remote sensing image quality. Presently the control method for ISP is mostly focused on conventional PID control, which has disadvantages of low accuracy, bad disturbance rejection capacity. A novel disturbance observer (DOB) is devised in this paper aiming to attenuate the influence of the disturbing torque and enhance the accuracy for the ISP, in which the disturbing torque is calculated according to the gimbal angular acceleration estimated from the angular rate information and the motor current, then the equivalent compensation current is calculated and added into the input of the current loop to compensate disturbances. The proposed approach has the advantage of high accuracy, strong disturbance rejection capacity and strong practicality in engineering. Simulations and vehicle experiments prove that, compared to conventional PID and DOB based on PID, the proposed approach can enhance the accuracy of the ISP significantly.
机译:三轴惯性稳定平台(ISP)是空中遥感系统的关键技术,用于支撑光学成像传感器并将传感器的视线(LOS)保持在地球上,其精度具有很大的精度对遥感图像质量的影响。目前,ISP的控制方法主要集中在传统的PID控制上,其具有低精度,扰动抑制容量的缺点。在本文中设计了一种新的扰动观察者(DOB),其旨在衰减扰动扭矩的影响并提高ISP的精度,其中根据从角速率信息估计的吉比角加速度计算干扰扭矩。电机电流,然后计算等效补偿电流并将其添加到电流回路的输入中以补偿干扰。该方法具有高精度,强烈的扰动能力和强大的工程实用性的优势。仿真和车辆实验证明,与基于PID的传统PID和DOB相比,所提出的方法可以显着提高ISP的准确性。

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