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Modeling and Control of a Modular Iron Bird
- Source :
- Aerospace, Vol 8, Iss 39, p 39 (2021), Aerospace, Volume 8, Issue 2
- Publication Year :
- 2021
- Publisher :
- MDPI AG, 2021.
-
Abstract
- This paper describes the control architecture and the control laws of a new concept of Modular Iron Bird aimed at reproducing flight loads to test mobile aerodynamic control surface actuators for small and medium size aircraft and Unmanned Aerial Vehicles. The iron bird control system must guarantee the actuation of counteracting forces. On one side, a hydraulic actuator simulates the hinge moments acting on the mobile surface due to aerodynamic and inertial effects during flight<br />on the other side, the actuator to be tested applies an active hinge moment to control the angular position of the same surface. Reference aerodynamic and inertial loads are generated by a flight simulation module to reproduce more realistic conditions arising during operations. The design of the control action is based on a dynamic model of the hydraulic plant used to generate loads. This system is controlled using a Proportional Integral Derivative control algorithm tuned with an optimization algorithm taking into account the closed loop dynamics of the actuator under testing, uncertainties and disturbances in the controlled plant. Numerical simulations are presented to show the effectiveness of the proposed architecture and control laws.
- Subjects :
- 0209 industrial biotechnology
Computer science
Flight simulator
Force control
Hydraulic system
Iron bird
PID control
lcsh:Motor vehicles. Aeronautics. Astronautics
hydraulic system
Hinge
Aerospace Engineering
PID controller
02 engineering and technology
flight simulator
Computer Science::Robotics
020901 industrial engineering & automation
0203 mechanical engineering
Control theory
Hydraulic machinery
business.industry
Aerodynamics
Modular design
force control
iron bird
Hydraulic cylinder
020303 mechanical engineering & transports
lcsh:TL1-4050
business
Actuator
Subjects
Details
- Language :
- English
- ISSN :
- 22264310
- Volume :
- 8
- Issue :
- 39
- Database :
- OpenAIRE
- Journal :
- Aerospace
- Accession number :
- edsair.doi.dedup.....50075293b3769da49e2b659e8b1bd9a5