Research on the control method of the structural stability of the precision tiled-grating

IF 0.5 Q4 ENGINEERING, MULTIDISCIPLINARY
Yunfei Liao, Bo Tan
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引用次数: 0

Abstract

In a chirped pulse amplification device, tiled grating is a key component for compressing ultrashort pulse laser. The control system of the grating tiling device is essential for maintaining the stability of the array grating. In this study, a proportional-integral-derivative algorithm based on the latch compensation method and four-point center difference method is proposed for a truss-type 2 × 1 grating tiling device. Numerical analyses show that this method avoids the saturation loss in the stability control process of the array grating, effectively suppresses noise interference, and ensures the stability of the array grating. The prototype experiment shows that the use of this control algorithm can significantly improve the convergence speed and stability of the grating tiling device. Specifically, compared with a mechanism without a control algorithm, the time to reach the reference position for the first time is reduced by 39.1%, and the stability of the grating device is improved by 58.5%.
精密平铺光栅结构稳定性控制方法研究
在啁啾脉冲放大装置中,平铺光栅是压缩超短脉冲激光的关键部件。光栅平铺装置的控制系统是保证阵列光栅稳定工作的关键。针对桁架式2 × 1光栅平铺装置,提出了一种基于锁存补偿法和四点中心差分法的比例-积分-导数算法。数值分析表明,该方法避免了阵列光栅稳定控制过程中的饱和损失,有效地抑制了噪声干扰,保证了阵列光栅的稳定性。样机实验表明,采用该控制算法可以显著提高光栅平铺装置的收敛速度和稳定性。具体而言,与没有控制算法的机构相比,首次到达参考位置的时间缩短了39.1%,光栅装置的稳定性提高了58.5%。
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来源期刊
CiteScore
0.80
自引率
0.00%
发文量
152
期刊介绍: The major goal of the Journal of Computational Methods in Sciences and Engineering (JCMSE) is the publication of new research results on computational methods in sciences and engineering. Common experience had taught us that computational methods originally developed in a given basic science, e.g. physics, can be of paramount importance to other neighboring sciences, e.g. chemistry, as well as to engineering or technology and, in turn, to society as a whole. This undoubtedly beneficial practice of interdisciplinary interactions will be continuously and systematically encouraged by the JCMSE.
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