DocumentCode
3141762
Title
Control of a One-Legged Hopping Robot using a Hybrid Neuro-PD Controller
Author
Naik, Kuldip Gopal ; Mehrandezh, Mehran ; Barden, John M.
Author_Institution
Ind. Syst. Eng., Regina Univ., Sask.
fYear
2006
fDate
38838
Firstpage
1530
Lastpage
1533
Abstract
Primary simulation results of the control of a pneumatically actuated hopping robot along with the mathematical model are presented in. This paper presents the next phase of the research: design of a robust controller for an experimental hopper. Dynamic stability of the hopping robot is investigated using an artificial neural network (ANN)-based proportional-derivative (PD) controller. The hopper´s model (i.e. the transfer function of the plant) is identified with the help of an ANN, and then the PD controller is integrated with the trained ANN, so that the plant´s output follows a pre-specified reference trajectory. It is evident through computer simulations and experimental results that the proposed controller effectively meets the system´s performance requirements, i.e. achieving a user-defined constant jumping height after a number of hops. It is noteworthy that a near zero steady state error and a shorter settling time in the presence of unmodeled system dynamics can be achieved by incorporating an inverse dynamics paradigm into the proposed PD controller in conjunction with an ANN
Keywords
PD control; control system synthesis; legged locomotion; neurocontrollers; pneumatic actuators; robust control; artificial neural network-based proportional-derivative controller; dynamic stability; hopper model; hybrid neuro-PD controller; inverse dynamics paradigm; mathematical model; pneumatically-actuated one-legged hopping robot control; robust controller design; steady state error; Artificial neural networks; Computer simulation; Mathematical model; PD control; Proportional control; Robots; Robust control; Stability; System performance; Transfer functions; Inverse dynamics; Neural Networks; PD controller; Pneumatically actuated hopping robot; Pulse Width Modulation (PWM);
fLanguage
English
Publisher
ieee
Conference_Titel
Electrical and Computer Engineering, 2006. CCECE '06. Canadian Conference on
Conference_Location
Ottawa, Ont.
Print_ISBN
1-4244-0038-4
Electronic_ISBN
1-4244-0038-4
Type
conf
DOI
10.1109/CCECE.2006.277578
Filename
4054932
Link To Document