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Laser Beam Pointing and Stabilization by Fractional-Order PID Control : Tuning Rule and Experiments

机译:通过分数级PID控制来指向和稳定激光束指向和稳定:调整规则和实验

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This paper studies the problem of high-precision positioning of laser beams by using a robust Fractional-Order Proportional-Integral-Derivative (FOPID) controller. The control problem addressed in laser beams aims to maintain the position of the laser beam on a Position Sensing Device (PSD) despite the effects of noise and active disturbances. The FOPID controller is well known for its simplicity with better tuning flexibility along with robustness to noise and output disturbance rejections. Thus, a control strategy based on FOPID to achieve the control objectives has been proposed. The FOPID gains and differentiation orders are optimally tuned in order to fulfill the robustness design specifications by solving a nonlinear optimization problem. A comparison to the conventional Proportional-Integral-Derivative (PID) and robust PID is also provided from simulation and experiment set-up. Due to sensor noise, practical PID controllers that filter the position signal before taking the derivative have been also proposed. Experimental results show that the requirements are totally met for the laser beam platform to be stabilized.
机译:本文研究了通过使用稳健的分数比例积分 - 积分 - 积分衍生物(FoPID)控制器来解决激光束的高精度定位问题。在激光束中寻址的控制问题旨在将激光束在位置感测装置(PSD)上的位置保持在噪声和主动扰动的影响。 FoPID控制器的简单性是众所周知的,具有更好地调谐灵活性以及噪声和输出干扰抑制的鲁棒性。因此,已经提出了基于FOPID实现控制目标的控制策略。 FoPID增益和差异化订单可通过解决非线性优化问题来满足稳健性设计规范。还提供了与常规比例积分衍生物(PID)和鲁棒PID的比较,从仿真和实验设置提供。由于传感器噪声,还提出了在采用衍生物之前过滤位置信号的实用PID控制器。实验结果表明,待稳定的激光束平台完全满足要求。

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