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A convex approach solving simultaneous mechanical structure and control system design problems with multiple closed-loop performance specifications

机译:一种凸方法,可以同时解决具有多个闭环性能规格的机械结构和控制系统设计问题

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摘要

In this paper, a new integrated design method, referred to as the extended multiple simultaneous specification (EMSS) method, is proposed to solve simultaneous mechanical structure and control system design problems in which a set of n multiple closed-loop performance specifications must be simultaneously satisfied. To utilize this approach, all closed-loop performance specifications considered must have the property that the), are convex with respect to the closed-loop system transfer matrix. With the proposed approach, a simply implemented two-stage design approach is used to determine a set of open-loop mechanical system design parameters and a closed-loop controller which simultaneously satisfies a set of n closed-loop performance specifications. In the first stage, for each closed-loop performance specification, one "sample system," i.e., the closed-loop system with one set (of mechanical design parameters with a closed-loop controller chosen from the set of all linear controllers, is determined by trial and error, such that the specification is satisfied. In the second stage, the transfer matrix of the filial system, which satisfies all n performance specifications, is determined through the convex combination of the transfer matrices of n. sample systems. A linear programming problem is solved to give the combination vector for this convex combination. With the closed-loop transfer matrix given, the mechanical design parameters, the closed-loop controller structure and its gains, are solved algebraically. In this paper we establish conditions for the existence of a solution to this integrated design problem as well as prove that the EMSS approach retains the stability, properties of the sample systems. Experimental results of the EMSS method, carried out on a linear positioning system are given, verifying the effectiveness of the proposed method. We note that the proposed EMSS method works well when the number of design parameters to be determined is small. Further, the proposed EMSS method also has some utility as a controller design method, to determine a closed-loop controller that satisfies a set of n multiple closed-loop performance specifications, given a fixed mechanical system structure.
机译:本文提出了一种新的集成设计方法,称为扩展多重同时规格(EMSS)方法,以解决同时机械结构和控制系统设计问题,其中必须同时设置一组n个多个闭环性能规格。满意。为了利用这种方法,所考虑的所有闭环性能规范必须具有相对于闭环系统传递矩阵为凸的性质。利用所提出的方法,使用简单实施的两阶段设计方法来确定一组开环机械系统设计参数和一个闭环控制器,其同时满足一组n个闭环性能规格。在第一阶段,对于每个闭环性能规格,一个“样本系统”,即具有一组(具有从所有线性控制器的集合中选择的闭环控制器的机械设计参数)的闭环系统。在第二阶段中,通过n个样本系统的传递矩阵的凸组合来确定满足所有n个性能指标的孝道系统的传递矩阵。解决线性规划问题以给出该凸组合的组合矢量,在给出闭环传递矩阵的情况下,代数求解机械设计参数,闭环控制器结构及其增益,为此我们建立了条件。该集成设计问题的解决方案的存在,并证明EMSS方法保留了样品系统的稳定性和性能。给出了在线性定位系统上进行的EMSS方法,验证了该方法的有效性。我们注意到,当要确定的设计参数数量很少时,建议的EMSS方法效果很好。此外,所提出的EMSS方法还具有作为控制器设计方法的实用性,在给定固定的机械系统结构的情况下,确定满足一组n个多个闭环性能规格的闭环控制器。

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