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Multidisciplinary optimization for the design and control of uncertain dynamical systems.

机译:用于不确定动力系统设计和控制的多学科优化。

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摘要

This dissertation considers an integrated approach to system design and controller design based on analyzing limits of system performance. Historically, plant design methodologies have not incorporated control relevant considerations. Such an approach could result in a system that might not meet its specifications (or one that requires a complex control architecture to do so). System and controller designers often go through several iterations in order to converge to an acceptable plant and controller design. The focus of this dissertation is on the design and control an air-breathing hypersonic vehicle using such an integrated system-control design framework. The goal is to reduce the number of system-control design iterations (by explicitly incorporate control considerations in the system design process), as well as to influence the guidance/trajectory specifications for the system. Due to the high computational costs associated with obtaining a dynamic model for each plant configuration considered, approximations to the system dynamics are used in the control design process. By formulating the control design problem using bilinear and polynomial matrix inequalities, several common control and system design constraints can be simultaneously incorporated into a vehicle design optimization. Several design problems are examined to illustrate the effectiveness of this approach (and to compare the computational burden of this methodology against more traditional approaches).
机译:本文在分析系统性能极限的基础上,考虑了系统设计和控制器设计的集成方法。从历史上看,工厂设计方法没有纳入控制方面的考虑。这种方法可能会导致系统可能不符合其规范(或要求其具有复杂控制体系结构的系统)。系统和控制器设计人员通常会经历几次迭代,以便收敛到可接受的工厂和控制器设计。本文的重点是利用这种集成的系统控制设计框架设计和控制呼吸高超音速飞行器。目的是减少系统控制设计的迭代次数(通过在系统设计过程中明确纳入控制因素),并影响系统的制导/弹道规范。由于为所考虑的每种工厂配置获取动态模型都需要较高的计算成本,因此在控制设计过程中会使用系统动态的近似值。通过使用双线性和多项式矩阵不等式来表述控制设计问题,可以将几种常见的控制和系统设计约束条件同时纳入车辆设计优化中。研究了几个设计问题,以说明该方法的有效性(并将该方法的计算负担与更传统的方法进行比较)。

著录项

  • 作者

    Sridharan, Srikanth.;

  • 作者单位

    Arizona State University.;

  • 授予单位 Arizona State University.;
  • 学科 Engineering System Science.;Engineering Aerospace.
  • 学位 Ph.D.
  • 年度 2014
  • 页码 187 p.
  • 总页数 187
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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