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On compensating thermal lensing in high-power lasers using intra-cavity deformable mirrors

机译:在使用内腔可变形镜子中补偿高功率激光器中的热镜头

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Thermal lensing limits the beam quality of high-power lasers and evokes setpoint-dependent disturbances. Since these effects cannot be corrected outside the resonator, intra-cavity deformable mirrors stand to reason. Based on a Gaussian cavity and a disturbance model with distributed parameters, we derive a discrete-time estimation scheme. Due to the nonlinearities of the optical system, estimating and predicting the disturbance is crucial in order to construct a proper compensation. The presented recursive optimization-based approach considers input constraints in an explicit manner. Finally, the performance of the proposed disturbance rejection is demonstrated by simulations. The algorithm reduces the feedback control effort by more than 90% and improves the tracking behavior of the closed loop.
机译:热镜头限制了高功率激光器的光束质量,并唤起设定值依赖性干扰。由于这些效果不能在谐振器之外校正,因此腔内可变形镜具有推理。基于具有分布式参数的高斯腔和扰动模型,我们推出了一种离散时间估计方案。由于光学系统的非线性,估计和预测干扰是至关重要的,以构建适当的补偿。所呈现的基于递归优化的方法以明确的方式考虑输入约束。最后,通过模拟证明了所提出的扰动抑制的性能。该算法通过90%以上减少了反馈控制努力,并提高了闭环的跟踪行为。

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