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Control Method for High-Accuracy Fine Steering Mirror Based on Slow Sampling Rate of Tracking Sensor Signal

机译:跟踪传感器信号慢采样率的高精度精细转向镜控制方法

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In the acquisition, tracking and pointing subsystem of free space laser communication system the tracking accuracy and the bandwidth of rejection frequency response are directly determined by the performances ofthe fine steering mirror of the compound axis tracking and pointing system. The slow sampling rate of the tracking sensor CCD signal currently limits the close loop bandwidth of the fine steering mirror. Based on the analysis of the slow sampling rate of the fine steering mirror, a multi-frequency sampling system of the fine steering mirror is designed, and the deviated mirror position signal is fused with the tracking sensor CCD signal, thus improving the close loop bandwidth ofthe mirror system and the rejection bandwidth. The simulation results have shown that the method can makes the bandwidth of the rejection frequency response enlarged, the close loop bandwidth frequency of the fine steering mirror approaches to the sampling frequency of the tracking sensor CCD signal, and the tracking accuracy is obviously improved in comparison to the original tracking sensor with slow sampling rate.
机译:在自由空间激光通信系统的获取,跟踪和指向子系统中,跟踪精度和抑制频率响应的带宽直接取决于复合轴跟踪和指向系统的精细转向镜的性能。跟踪传感器CCD信号的低采样率目前限制了精细转向镜的闭环带宽。在分析精细转向镜慢速采样率的基础上,设计了精细转向镜的多频采样系统,将偏离镜位置信号与跟踪传感器CCD信号融合,提高了闭环带宽。镜系统的反射率和抑制带宽。仿真结果表明,该方法可以使抑制频率响应的带宽增大,精细转向镜的闭环带宽频率接近跟踪传感器CCD信号的采样频率,与之相比,跟踪精度明显提高。采样率较低的原始跟踪传感器。

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