자료유형 | 학위논문 |
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서명/저자사항 | Successive Convexification & High Performance Feedback Control for Agile Flight. |
개인저자 | Szmuk, Michael. |
단체저자명 | University of Washington. Aeronautics and Astronautics. |
발행사항 | [S.l.]: University of Washington., 2019. |
발행사항 | Ann Arbor: ProQuest Dissertations & Theses, 2019. |
형태사항 | 193 p. |
기본자료 저록 | Dissertations Abstracts International 81-03B. Dissertation Abstract International |
ISBN | 9781085715836 |
학위논문주기 | Thesis (Ph.D.)--University of Washington, 2019. |
일반주기 |
Source: Dissertations Abstracts International, Volume: 81-03, Section: B.
Advisor: Acikmese, Behcet. |
이용제한사항 | This item must not be sold to any third party vendors.This item must not be added to any third party search indexes. |
요약 | The topic of this dissertation is successive convexification and high performance feedback control for agile flight. This document is divided into three primary branches. The first branch (Chapter 2) is focused on successive convexification-sequential convex programming approach that lends itself well to real-time applications requiring advanced feed-forward guidance. This branch uses a complex rocket landing application to showcase the versatility and computational capabilities of successive convexification.The second branch (Chapters 3-5) applies convexification techniques to quad-rotor motion planning problems. Using flight test results, the work detailed in these chapters shows that convexification techniques like successive convexification can generate trajectories that are trackable by quad-rotors in real-time.The third branch (Chapter 6) is dedicated to developing a high performance feedback control architecture for multi-rotor vehicles. This architecture is designed to complement a variety of feed-forward guidance methodologies by enhancing the system's robustness to model uncertainties and external disturbances. The core of this architecture relies on a fusion between advanced classical control techniques and convex optimization in order to systematically handle actuator saturation and feedback maximization. |
일반주제명 | Aerospace engineering. Engineering. |
언어 | 영어 |
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