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Full Actuator Nonlinear Dynamic Inversion for Enhanced Hybrid UAV Control

Research output: Chapter in Book/Conference proceedings/Edited volumeConference contributionScientificpeer-review

Abstract

Expanding the operational capabilities of Micro Air Vehicles (MAVs) hinges on control systems that manage highly nonlinear dynamics across broad flight envelopes. Incremental Nonlinear Dynamic Inversion (INDI) is popular for its simplicity and modest modeling needs, but its assumption of infinitely fast actuators and neglect of state-dependent effects limit performance when actuators have slow or heterogeneous dynamics or when aerodynamic effects are significant. Actuator Nonlinear Dynamic Inversion (ANDI) overcomes these limitations by explicitly incorporating state-dependent dynamics and finite actuator bandwidth into the control law, enabling improved tracking performance across diverse actuator configurations. This work implements the full ANDI stabilization controller on the Cyclone, a hybrid MAV tail-sitter, using cascaded complementary filtering for state estimation. Simulation and flight experiments validate the approach and assess whether this compensation yields practical performance gains, establishing ANDI as a viable, generic control solution for MAVs. Code is available at https://github.com/tudelft/paparazzi/tree/feat_stabilization_andi_controller.

Original languageEnglish
Title of host publication2026 International Conference on Unmanned Aircraft Systems, ICUAS 2026
PublisherIEEE
Pages625-632
Number of pages8
ISBN (Electronic)9798331593162
DOIs
Publication statusPublished - 2026
Event2026 International Conference on Unmanned Aircraft Systems, ICUAS 2026 - Corfu, Greece
Duration: 15 Jun 202618 Jun 2026

Publication series

Name2026 International Conference on Unmanned Aircraft Systems, ICUAS 2026

Conference

Conference2026 International Conference on Unmanned Aircraft Systems, ICUAS 2026
Country/TerritoryGreece
CityCorfu
Period15/06/2618/06/26

Keywords

  • actuator nonlinear dynamic inversion
  • feedback linearization
  • hybrid UAV
  • incremental nonlinear dynamic inversion
  • nonlinear control
  • tail-sitter

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