Zhang Meng, Liu Zhigang, Zhu Yu, Bu Mingfan, Hong Jun
Key Laboratory of Education Ministry for Modern Design and Rotor-Bearing System, Xi'an Jiaotong University, Xi'an 710049, China.
Rev Sci Instrum. 2017 Jul;88(7):075006. doi: 10.1063/1.4993926.
In this paper, a hybrid control system is developed by integrating the closed-loop force feedback and input shaping method to overcome the problem of the hysteresis and dynamic behavior in piezo-based scanning systems and increase the scanning speed of tunable external cavity diode lasers. The flexible hinge and piezoelectric actuators are analyzed, and a dynamic model of the scanning systems is established. A force sensor and an integral controller are utilized in integral force feedback (IFF) to directly augment the damping of the piezoelectric scanning systems. Hysteresis has been effectively eliminated, but the mechanical resonance is still evident. Noticeable residual vibration occurred after the inflection points and then gradually disappeared. For the further control of mechanical resonance, based on the theory of minimum-acceleration trajectory planning, the time-domain input shaping method was developed. The turning sections of a scanning trajectory are replaced by smooth curves, while the linear sections are retained. The IFF method is combined with the input shaping method to control the non-linearity and mechanical resonance in high-speed piezo-based scanning systems. Experiments are conducted, and the results demonstrate the effectiveness of the proposed control approach.
本文通过集成闭环力反馈和输入整形方法开发了一种混合控制系统,以克服基于压电的扫描系统中的滞后和动态行为问题,并提高可调谐外腔二极管激光器的扫描速度。对柔性铰链和压电致动器进行了分析,并建立了扫描系统的动态模型。在积分力反馈(IFF)中使用力传感器和积分控制器来直接增强压电扫描系统的阻尼。滞后已被有效消除,但机械共振仍然明显。在拐点之后出现了明显的残余振动,然后逐渐消失。为了进一步控制机械共振,基于最小加速度轨迹规划理论,开发了时域输入整形方法。扫描轨迹的转弯部分被平滑曲线取代,而线性部分则保留。将IFF方法与输入整形方法相结合,以控制基于高速压电的扫描系统中的非线性和机械共振。进行了实验,结果证明了所提出控制方法的有效性。