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Acceleration feedback control (AFC) enhanced by disturbance observation and compensation (DOC) for high precision tracking in telescope systems 被引量:3
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作者 Qiang Wang Hua-Xiang Cai +8 位作者 Yong-Mei Huang Liang Ge Tao Tang Yan-Rui Su Xiang Liu Jin-Ying Li Dong He Sheng-Ping Du Yu Ling 《Research in Astronomy and Astrophysics》 SCIE CAS CSCD 2016年第8期51-60,共10页
Abstract In this paper, a cascade acceleration feedback control (AFC) enhanced by a disturbance observa- tion and compensation (DOC) method is proposed to improve the tracking precision of telescope systems. Teles... Abstract In this paper, a cascade acceleration feedback control (AFC) enhanced by a disturbance observa- tion and compensation (DOC) method is proposed to improve the tracking precision of telescope systems. Telescope systems usually suffer some uncertain disturbances, such as wind load, nonlinear friction and other unknown disturbances. To ensure tracking precision, an acceleration feedback loop which can in- crease the stiffness of such a system is introduced. Moreover, to further improve the tracking precision, we introduce the DOC method which can accurately estimate the disturbance and compensate it. Furthermore, the analysis of tracking accuracy used by this method is proposed. Finally, a few comparative experimental results show that the proposed control method has excellent performance for reducing the tracking error of a telescope system. 展开更多
关键词 telescopes -- instrumentation control method - instrumentation miscellaneous high angularresolution - instrumentation detector -- control software
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Acceleration feedback of a current-following synchronized control algorithm for telescope elevation axis 被引量:1
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作者 Tao Tang Tong Zhang +2 位作者 Jun-Feng Du Ge Ren Jing Tian 《Research in Astronomy and Astrophysics》 SCIE CAS CSCD 2016年第11期7-12,共6页
This paper proposes a dual-motor configuration to enhance closed-loop performance of a telescope control system. Two identical motors are mounted on each side of a U-type frame to drive the telescope elevation axis in... This paper proposes a dual-motor configuration to enhance closed-loop performance of a telescope control system. Two identical motors are mounted on each side of a U-type frame to drive the telescope elevation axis instead of a single motor drive, which is usually used in a classical design. This new configuration and mechanism can reduce the motor to half the size used in the former design, and it also provides some other advantages. A master-slave current control mode is employed to synchronize the two motors. Acceleration feedback control is utilized to further enhance the servo performance. Extensive experiments are used to validate the effectiveness of the proposed control algorithm in synchronization, disturbance attenuation and low-velocity tracking. 展开更多
关键词 telescopes -- instrumentation control method-- instrumentation miscellaneous: high angularresolution -- instrumentation detector -- control software
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A general observatory control software framework design for existing small and mid-size telescopes
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作者 Liang Ge Xiao-Meng Lu Xiao-Jun Jiang 《Research in Astronomy and Astrophysics》 SCIE CAS CSCD 2015年第7期1077-1088,共12页
A general framework for observatory control software would help to improve the efficiency of observation and operation of telescopes, and would also be advantageous for remote and joint observations. We describe a gen... A general framework for observatory control software would help to improve the efficiency of observation and operation of telescopes, and would also be advantageous for remote and joint observations. We describe a general framework for observatory control software, which considers principles of flexibility and inheritance to meet the expectations from observers and technical personnel. This framework includes observation scheduling, device control and data storage. The design is based on a finite state machine that controls the whole process. 展开更多
关键词 telescopes -- instrumentation detectors -- control software
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