控制理论(社会学)
计算机科学
控制器(灌溉)
理论(学习稳定性)
频率响应
奈奎斯特稳定性判据
跟踪(教育)
奈奎斯特图
控制系统
跟踪误差
鉴定(生物学)
系统标识
最优化问题
自动频率控制
振幅
系统设计
设计方法
控制工程
优化设计
约束优化
奈奎斯特频率
阶跃响应
系统优化
鲁棒控制
奈奎斯特-香农抽样定理
作者
Qi Yu,H Wu,ZhiHan Hong,Xiangyuan Wang,Limin Zhu
摘要
The achievable performance of the complementary-filter-based parallel control for a compound dual-stage nano-positioning system is limited by its model-based sequential design structure. This study proposes a frequency-response-data-based optimization approach for the simultaneous and systematic design of the complementary-filter-based dual-feedback controller. The design procedure and corresponding Nyquist stability analysis are presented in detail. By directly utilizing frequency response data, the proposed method mitigates the effects of system identification errors. The controller design objective is formulated as a constrained optimization problem to achieve a flat amplitude frequency response with high control bandwidth. Comparative experiments conducted on a dual-stage nano-positioning system verify the effectiveness of the proposed approach. The proposed method reduces the root-mean-square tracking error from 70.6 nm using the baseline integral controller to 21.3 nm at 50 Hz sinusoidal tracking, demonstrating its clear superiority.
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