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Analysis and demonstration of PID algorithm based on arranging the transient process for adaptive optics 被引量:4

Analysis and demonstration of PID algorithm based on arranging the transient process for adaptive optics
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摘要 The fastness and robustness of a control algorithm are highly important in the performance of adaptive optics systems. The proportional-integral-derivative control with arranging the transient process, which is designed using a tracking differentiator, is applied into an adaptive optics system. This control algorithm greatly improves the dynamic properties of the control system. To identify the underlying reasons for these improvements, the influence of the control algorithm is theoretically discussed. The control algorithm is verified by a simple adaptive optics system for tip/tilt correction. The experimental results demonstrate that the control algorithm is fast and robust. The fastness and robustness of a control algorithm are highly important in the performance of adaptive optics systems. The proportional-integral-derivative control with arranging the transient process, which is designed using a tracking differentiator, is applied into an adaptive optics system. This control algorithm greatly improves the dynamic properties of the control system. To identify the underlying reasons for these improvements, the influence of the control algorithm is theoretically discussed. The control algorithm is verified by a simple adaptive optics system for tip/tilt correction. The experimental results demonstrate that the control algorithm is fast and robust.
出处 《Chinese Optics Letters》 SCIE EI CAS CSCD 2013年第11期1-4,共4页 中国光学快报(英文版)
基金 supported by the Dedicated Operation Funding for Astronomical Observation Stations and Facilities from the Chinese Academy of Sciences(CAS) the National Natural Science Foundation of China(No.11203052) the Special Funding for Young Researcher of Nanjing Institute of Astronomical Optics&Technology,CAS
关键词 Adaptive optics Transmission line theory Adaptive optics Transmission line theory
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参考文献14

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