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基于干扰转换和LWOA-PID的双轴半紧缩稳定平台的自适应控制
Qixuan Huang1,2, Jiaxing Zhou1,2, Xiang Chen3
1School of Electrical Engineering and Automation, Xiamen University of Technology, Xiamen 361024, China.
本研究引入了使用干扰转换的自适应控制方法和鱼优化自适应比例积分导数 (LWOA-PID) 控制器,以提高飞机稳定性. 新系统有效地消除了滚动干扰,提高了视线指向精度.
科学领域:
- 航空航天工程 航空航天工程
- 控制系统 控制系统
- 机器人技术 机器人技术 机器人技术
背景情况:
- 传统的双轴半式稳定平台在飞机中与滚动通道干扰控制作斗争.
- 滚动干扰会对稳定平台的视线准确度产生负面影响.
研究的目的:
- 开发一种适应性控制方法,以消除双轴半紧固稳定平台中的滚动干扰.
- 为了提高飞机感应器定向的视线指向精度和稳定性.
主要方法:
- 实施了干扰转换技术,将滚动干扰整合到斜率和曲率通道中.
- 使用拉丁式超立方体采样设计了一个鱼优化自适应比例积分导数 (LWOA-PID) 控制器.
- 模拟并将拟议的方法与Matlab/Simulink中的经典PID控制器进行比较.
主要成果:
- 干扰转换模块有效消除了滚轴干扰对LOS指向精度的影响.
- 与传统的PID相比,LWOA-PID控制器可以分别减少50%和75%的步进信号和正弦信号的跟踪误差.
- 与标准鱼优化算法PID (WOA-PID) 相比,优化时间减少了37.5%.
结论:
- 拟议的自适应控制方法显著提高了两轴半稳定平台的性能.
- 将干扰转换与LWOA-PID控制器相结合,进一步提高了跟踪精度.
- 这种方法为在动态飞机环境中保持稳定的传感器定位提供了强大的解决方案.
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