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首页> 外文期刊>IEEE Transactions on Control Systems Technology >Convex Integrated Design (CID) Method and Its Application to the Design of a Linear Positioning System
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Convex Integrated Design (CID) Method and Its Application to the Design of a Linear Positioning System

机译:凸集成设计(CID)方法及其在线性定位系统设计中的应用

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摘要

In this paper, a methodology is presented to solve an integrated mechanical structure and control system design problem, with a set of n prespecified closed-loop performance specifications. Utilizing the convex integrated design (CID) method proposed here, the transfer matrix of the closed-loop system is first determined such that the set of n conflicting closed-loop performance specifications is simultaneously satisfied. However, the mechanical structure parameters and the control system gain parameter choices that comprise the closed-loop system transfer matrix are not uniquely determined. While arbitrary choices of these parameters could be made, the authors propose an approach to determine these design parameters by solving an equality-constrained optimization problem. The merit functions to the optimization problem are the closed-loop performance criteria. With this approach, the mechanical structure parameters, the controller structure and the control gains, are simultaneously determined and the closed-loop system performance is further improved beyond that required by the set of n closed-loop performance specifications. This method is demonstrated with a four-specification linear positioning system design. Experimental results verify the effectiveness of this method.
机译:在本文中,提出了一种方法来解决集成的机械结构和控制系统设计问题,其中包含一组n个预先指定的闭环性能规格。利用此处提出的凸集成设计(CID)方法,首先确定闭环系统的传递矩阵,以便同时满足n个有冲突的闭环性能规范的集合。但是,构成闭环系统传递矩阵的机械结构参数和控制系统增益参数选择不是唯一确定的。尽管可以对这些参数进行任意选择,但作者提出了一种通过解决等式约束优化问题来确定这些设计参数的方法。优化问题的优值函数是闭环性能标准。通过这种方法,可以同时确定机械结构参数,控制器结构和控制增益,并且进一步提高了闭环系统性能,使其超过了一组n个闭环性能规范所要求的性能。四种规格的线性定位系统设计证明了该方法。实验结果证明了该方法的有效性。

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