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Enhanced Tracking for Nanopositioning Systems Using Feedforward/Feedback Multivariable Control Design

机译:使用前馈/反馈多变量控制设计的纳米定位系统的增强跟踪

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摘要

This paper proposes a systematic synthesis methodology\udfor a combined feedforward/feedback architecture to\udcontrol multiple-input, multiple-output nanopositioning systems. Coprime factorization of the open loop model is used to design the reference and feedforward filters of the proposed control scheme to achieve enhanced tracking, eliminate the limitation of the feedback on tracking performance, and increase the bandwidth of the\udclosed-loop system. Two types of coprime factorization, namely inner–outer factorization and normalized coprime factorization are discussed. A case study based on hardware experiment is presented to analyze the proposed control architecture and demonstrate its superiority over feedback-only control. In addition to the no-load case, the performance of the system is also tested with loads on the nanopositioning stage.
机译:本文为前馈/反馈组合架构提出了一种系统的综合方法\ ud,以控制多输入多输出纳米定位系统。开环模型的互质分解用于设计所提出控制方案的参考和前馈滤波器,以实现增强的跟踪,消除对跟踪性能的反馈的限制,并增加闭环系统的带宽。讨论了互素分解的两种类型,即内外分解和归一化互素分解。提出了一个基于硬件实验的案例研究,以分析所提出的控制架构,并证明其优于仅反馈控制的优势。除空载情况外,还对纳米定位平台上的负载进行了系统性能测试。

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