Title :
Tunable impedance: A semi-passive approach to practical motion control of insect-inspired MAVs
Author :
Mahjoubi, Hosein ; Byl, Katie
Author_Institution :
Dept. of Electr. & Comput. Eng., Univ. of California at Santa Barbara, Santa Barbara, CA, USA
Abstract :
Research on insect-inspired flapping-wing micro-aerial vehicles (FWMAV) has grown steadily in the past decade, aiming to address unique challenges in morphological construction, force production, and control strategy. In particular, effective methods for motion control still remain an open problem. This paper analyzes the mechanical impedance properties of the joint and their role in rotation of the wing and force production. The results suggest that in addition to previously observed relationship between set point and drag [1], the average lift force is also related to the stiffness of the joint. Furthermore, as long as changes in impedance properties are small, net lift and drag production are almost independent. These relationships are the basis of `tunable impedance´ technique, a new approach to force/motion control in FWMAVs. A simple controller designed based on this method is used to simulate various flight maneuvers. The simulated MAV demonstrates exceptional performance, even in presence of measurement noise. This technique requires a fixed stroke profile for both wings, thus allowing to use a single stroke actuator - in a real MAV - with a bandwidth as low as the frequency of flapping. Impedance actuators also prove to have low bandwidth requirements.
Keywords :
actuators; aerospace components; aerospace control; autonomous aerial vehicles; control system synthesis; force control; microrobots; mobile robots; motion control; robot dynamics; FWMAV; control strategy; fixed stroke profile; flapping frequency; flight maneuvers; force control; force production; force production rotation; impedance actuators; insect-inspired MAV; insect-inspired flapping-wing microaerial vehicles; measurement noise; mechanical impedance properties; morphological construction; motion control; semi-passive approach; single stroke actuator; tunable impedance; wing production rotation; Aerodynamics; Drag; Force; Impedance; Joints; Production; Vehicles; Aerial Robotics; Bio-inspired MAVs; Flapping-Wing Flight; Maneuverability; Microrobotics; Passive Dynamics; Tunable Impedance; Wing Rotation;
Conference_Titel :
Robotics and Automation (ICRA), 2012 IEEE International Conference on
Conference_Location :
Saint Paul, MN
Print_ISBN :
978-1-4673-1403-9
Electronic_ISBN :
1050-4729
DOI :
10.1109/ICRA.2012.6224577