Novel electro-hydraulic position control system for primary mirror supporting system

Author:

Peng Xiongbin1,Gong Guofang1,Yang Huayong1,Lou Haiyang1,Liao Xiangping1,Wu Weiqiang1

Affiliation:

1. State Key Laboratory of Fluid Power Transmission and Control, Zhejiang University, Hangzhou, China

Abstract

In the field of modern large-scale telescope, primary mirror supporting system technology faces the difficulties of theoretically uniform output force request and bias compensation. Therefore, a novel position control system combining hydraulic system with servo motor system is introduced. The novel system ensures uniform output force on supporting points without complicating the mechanical structure. The structures of both primary mirror supporting system and novel position system are described. Then, the mathematical model of novel position control system is derived for controller selection. A proportional–derivative controller is adopted for simulations and experiments of step response and triangle path tracking. The results show that proportional–derivative controller guarantees the system with micrometer-level positioning ability. A modified proportional–derivative controller is utilized to promote system behavior with faster response overshoot. The novel position control system is then applied on primary mirror supporting system. Coupling effect is observed among actuator partitions, and relocation of virtual pivot supporting point is chosen as the decoupling measurement. The position keeping ability of the primary mirror supporting system is verified by rotating the mirror cell at a considerably high rate. The experiment results show that the decoupled system performs better with smaller bias and shorter recovery time.

Publisher

SAGE Publications

Subject

Mechanical Engineering

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