Title
A Model Reference Adaptive Control/PID Compound Scheme on Disturbance Rejection for an Aerial Inertially Stabilized Platform.
Abstract
This paper describes a method to suppress the effect of nonlinear and time-varying mass unbalance torque disturbance on the dynamic performances of an aerial inertially stabilized platform (ISP). To improve the tracking accuracy and robustness of the ISP, a compound control scheme based on both of model reference adaptive control (MRAC) and PID control methods is proposed. The dynamic model is first developed which reveals the unbalance torque disturbance with the characteristic of being nonlinear and time-varying. Then, the MRAC/PID compound controller is designed, in which the PID parameters are adaptively adjusted based on the output errors between the reference model and the actual system. In this way, the position errors derived from the prominent unbalance torque disturbance are corrected in real time so that the tracking accuracy is improved. To verify the method, the simulations and experiments are, respectively, carried out. The results show that the compound scheme has good ability in mass unbalance disturbance rejection, by which the system obtains higher stability accuracy compared with the PID method.
Year
DOI
Venue
2016
10.1155/2016/7964727
JOURNAL OF SENSORS
Field
DocType
Volume
Control theory,Torque,Nonlinear system,Reference model,PID controller,Control theory,Robustness (computer science),Control engineering,Adaptive control,Engineering
Journal
2016
ISSN
Citations 
PageRank 
1687-725X
1
0.37
References 
Authors
5
3
Name
Order
Citations
PageRank
Xiangyang Zhou182.32
Chao Yang25112.05
Tongtong Cai310.37