基于自抗扰技术的高精度机载SAR稳定平台设计

Minghan Zhao, Junshan Chen, G. Zhao, Lu Zhou, Xiajing Li
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引用次数: 0

摘要

针对合成孔径雷达(SAR)成像中指向舰载机的天线波束运动造成的运动扰动,设计了一种基于自抗扰技术的天线稳定平台。分析了稳定平台和伺服机构中不可避免的摩擦扰动力矩,利用扩展状态观测器对扰动力矩进行补偿,提高了指向精度。通过数字仿真和半物理实验验证了该算法的有效性。试验结果表明,采用自抗扰技术设计的机载SAR稳定平台能有效提高SAR天线的指向精度,性能提高30%以上。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design of High-precision Airborne SAR Stabilization Platform Based on Active Disturbance Rejection Technology
An antenna stabilization platform based on active disturbance rejection (ADRC) technology is designed to compensate for the motion disturbance caused by the movement of the antenna beam pointing at the carrier aircraft in synthetic aperture radar (SAR) imaging. In this paper, the unavoidable friction disturbance torque in the stable platform and servo mechanism is analyzed, and the extended state observer is used to compensate for the disturbance torque so as to improve the pointing accuracy. The effectiveness of the algorithm is verified by digital simulation and semi-physical tests. The test results show that the airborne SAR stabilization platform designed with active disturbance rejection technology can effectively improve the pointing accuracy of the SAR antenna, and the performance is improved by more than 30%.
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