Practical methods for aircraft and rotorcraft flight control design : an optimization-based approach

Author(s)

    • Berger, Tom
    • Ivler, Christina M.
    • Mansur, Mohammadreza H.
    • Cheung, Kenny K.
    • Soong, Jonathan Y.

Bibliographic Information

Practical methods for aircraft and rotorcraft flight control design : an optimization-based approach

Mark. B. Tischler ... [et al.]

(AIAA education series)

American Institute of Aeronautics and Astronautics, c2017

Available at  / 2 libraries

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Note

Includes bibliographical references and index

Other editors: Tom Berger, Christina M. Ivler, Mohammadreza H. Mansur, Kenny K. Cheung, Jonathan Y. Soong

Description and Table of Contents

Description

Reducing the theoretical methods of flight control to design practice, Practical Methods for Aircraft and Rotorcraft Flight Control Design: An Optimization-Based Approach compiles the authors' extensive experience and lessons learned into a single comprehensive resource for both academics and working flight control engineers.

Table of Contents

  • Introduction
  • Fundamentals of Control System Design Methodology Based on Multi-Objective Parametric Optimization
  • Overview of CONDUIT(R) Software
  • Description of XV-15 Design Case Studies
  • Quantitative Design Requirements for Flight Control
  • Simulation Requirements for Flight Control Design
  • Conceptual and Preliminary Design
  • Design Optimization
  • Sensitivity and Robustness Analyses of Design
  • Design Trade-offs and Piloted Feedback
  • Practical Application of Multi-Objective Parameter Optimization to Hover/Low-Speed Control Laws for a Conventional Helicopter
  • Practical Application of Multi-Objective Parameter Optimization to Longitudinal Control Law for A Business Jet Flight Control System
  • Alternative Design Methods Using Conduit
  • Appendices.

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