Three-channel Autopilot Design for Spinning Missile

Si Wang, Jiayuan Shan

Research output: Chapter in Book/Report/Conference proceedingConference contributionpeer-review

1 Citation (Scopus)

Abstract

A kind of decoupling control method with roll rate feedback for spinning missile is proposed to eliminate the coupling effect between pitching and yawing channels, which can settle the problem of control precision decrease due to roll rate variation. The three-channel motion model of the spinning missile is established, in which the aerodynamic coupling, inertia coupling and control coupling between the pitching and yawing channels are fully taken into account. Then the three-channel autopilot is designed based on differential geometry method. The autopilot is applied on a spinning missile with a pair of canards. Simulation results indicate that the designed three-channel autopilot can effectively eliminate or greatly reduce the coupling effect between the lateral channels. The control precision can keep high level even when the roll rate changes. Compared to the conventional double-channel autopilot designed under the precondition of constant roll rate, the three-channel autopilot has better adaptability to roll rate variation.

Original languageEnglish
Title of host publicationProceedings of 2020 IEEE 5th Information Technology and Mechatronics Engineering Conference, ITOEC 2020
EditorsBing Xu, Kefen Mou
PublisherInstitute of Electrical and Electronics Engineers Inc.
Pages952-960
Number of pages9
ISBN (Electronic)9781728143224
DOIs
Publication statusPublished - Jun 2020
Event5th IEEE Information Technology and Mechatronics Engineering Conference, ITOEC 2020 - Chongqing, China
Duration: 12 Jun 202014 Jun 2020

Publication series

NameProceedings of 2020 IEEE 5th Information Technology and Mechatronics Engineering Conference, ITOEC 2020

Conference

Conference5th IEEE Information Technology and Mechatronics Engineering Conference, ITOEC 2020
Country/TerritoryChina
CityChongqing
Period12/06/2014/06/20

Keywords

  • control and navigation technology of aircraft
  • decoupling control
  • differential geometry
  • spinning missile

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