This paper presents a robust mixed-sensitivity H controller design via loop-shaping methodology for a class of multiple-input multiple-output (MIMO) uncertain nonlinear systems. In order to design this controller, the nonlinear plant is first modeled as several linear subsystems by Takagi and Sugeno's (T–S) fuzzy approach. Both loop-shaping methodology and mixed-sensitivity problem are then introduced to formulate frequency-domain specifications. Afterward for each linear subsystem, a regional pole-placement output-feedback H controller is employed by using linear matrix inequality (LMI) approach. The parallel distributed compensation (PDC) is then used to design the controller for the overall system. Several experimental results show that the proposed method can effectively meet the performance requirements like robustness, good load disturbance rejection, and both tracking and fast transient responses even in the presence of parameter variations and load disturbance for the three-phase interior permanent-magnet synchronous motor (IPMSM). Finally, the superiority of the proposed control scheme is approved in comparison with the input–output linearization (I/O linearization) and the H2/H controller methods.

References

1.
Lin
,
C.-K.
,
Liu
,
T.-H.
, and
Yang
,
S.-H.
,
2008
, “
Nonlinear Position Controller Design With Input–Output Linearisation Technique for an Interior Permanent Magnet Synchronous Motor Control System
,”
IET Trans. Power Electron.
,
1
(
1
), pp.
14
26
.10.1049/iet-pel:20070177
2.
Yang
,
S. S.
, and
Zhong
,
Y. S.
,
2007
, “
Robust Speed Tracking of Permanent Magnet Synchronous Motor Servo Systems by Equivalent Disturbance Attenuation
,”
IET Control Theory
,
1
(
3
), pp.
595
603
.10.1049/iet-cta:20060165
3.
Su
,
Y. X.
,
Zheng
,
C. H.
, and
Duan
,
B. Y.
,
2005
, “
Automatic Disturbances Rejection Controller for Precise Motion Control of Permanent-Magnet Synchronous Motors
,”
Ind. Electron. IEEE Trans.
,
52
(
3
), pp.
814
823
.10.1109/TIE.2005.847583
4.
Chou
,
M.-C.
, and
Liaw
,
C.-M.
,
2009
, “
Development of Robust Current 2-DOF Controllers for a Permanent Magnet Synchronous Motor Drive With Reaction Wheel Load
,”
IEEE Trans. Power Electron.
,
24
(
5
), pp.
1304
1320
.10.1109/TPEL.2009.2012713
5.
Lin
,
C.-K.
,
Liu
,
T.-H.
, and
Fu
,
L.-C.
,
2011
, “
Adaptive Back Stepping PI Sliding-Mode Control for Interior Permanent Magnet Synchronous Motor Drive Systems
,”
Proceedings of American Control Conference
.
6.
Azimi
, V
.
,
Nekoui
,
M. A.
, and
Fakharian
,
A.
,
2012
,”
Robust Multi-Objective H2/H∞ Tracking Control Based on T-S Fuzzy Model for a Class of Nonlinear Uncertain Drive Systems
,”
Proc. Inst. Mech. Eng. Part I: J. Syst. Control Eng.
,
226
(
8
), pp.
1107
1118
.10.1177/0959651812443925
7.
Laghrouche
,
S.
,
Plestan
,
F.
, and
Glumineau
,
A.
,
2004
, “
A Higher Order Sliding Mode Controller for a Class of MIMO Nonlinear Systems: Application to PM Synchronous Motor Control
,”
Proceedings of American Control Conference
.
8.
Foo
,
G.
, and
Rahman
,
M. F.
,
2010
, “
Sensorless Sliding-Mode MTPA Control of an IPM Synchronous Motor Drive Using a Sliding-Mode Observer and HF Signal Injection
,”
IEEE Trans. Ind. Electron.
,
57
(
4
), pp.
1270
1278
.10.1109/TIE.2009.2030820
9.
Chen
,
B.-S.
, and
Wu
,
C.-H.
,
2010
, “
Robust Optimal Reference-Tracking Design Method for Stochastic Synthetic Biology Systems: T-S Fuzzy Approach
IEEE Trans. Fuzzy Syst.
,
18
(
6
), pp.
1144
1159
.10.1109/TFUZZ.2010.2070842
10.
Wai
,
R.-J.
, and
Yang
,
Z.-W.
,
2008
, “
Adaptive Fuzzy Neural Network Control Design via a T-S Fuzzy Model for a Robot Manipulator Including Actuator Dynamics
,”
IEEE Trans. Syst., Man, Cybern., Part B: Cybern.
,
38
(
5
), pp.
1326
1346
.10.1109/TSMCB.2007.913600
11.
Shayeghi
,
H.
,
Jalili
,
A.
, and
Shayanfar
,
H. A.
,
2008
, “
A Robust Mixed H2/H∞ Based LFC of a Deregulated Power System Including SMES
,”
Energy Convers. Manage.
,
49
(
10
), pp.
2656
2668
.10.1016/j.enconman.2008.04.006
12.
Iqbal
,
A.
,
Wu
,
Z.
, and
Amara
,
F. B.
,
2010
, “
Mixed-Sensitivity Hinf Control of Magnetic-Fluid-Deformable Mirrors
,”
IEEE/ASME Trans. Mechatron.
,
15
(
4
), pp.
548
556
.10.1109/TMECH.2010.2051452
13.
Ortega
,
M. G.
,
Vargas
,
M.
,
Castano
,
F.
, and
Rubio
,
F. R.
,
2006
, “
Improved Design of the Weighting Matrices for the S/KS/T Mixed Sensitivity Problem-Application to a Multivariable Thermodynamic System
,”
IEEE Trans. Control Syst. Technol.
,
14
(
1
), pp.
82
90
.10.1109/TCST.2005.860518
14.
Assawinchaichote
,
W.
,
Nguang
,
S. K.
, and
Shi
,
P.
,
2006
,
Fuzzy Control and Filter Design for Uncertain Fuzzy Systems
,
Springer-Verlag
,
Berlin/Heidelberg
.
15.
Tanaka
,
K.
, and
Wang
,
H. O.
,
2001
,
Fuzzy Control Systems Design and Analysis
,
John Wiley & Sons, Inc.
, New York.
16.
Hua
,
Ch.
,
Wang
,
Q.-G.
, and
Guan
,
X.
,
2009
, “
Robust Adaptive Controller Design for Nonlinear Time-Delay Systems vis T-S Fuzzy Approach
,”
IEEE Trans. fuzzy Syst.
,
17
(
4
), pp.
901
910
.10.1109/TFUZZ.2008.924351
17.
Zheng
,
F.
,
Wang
,
Q.-G.
, and
Lee
,
T. H.
,
2004
, “
Adaptive and Robust Controller Design for Uncertain Nonlinear Systems via Fuzzy Modeling Approach
,”
IEEE Trans. Syst., Man Cybern.,Part B: Cybern.
,
34
(
1
), pp.
166
178
.10.1109/TSMCB.2003.811757
18.
Lee
,
G.
,
You
,
K.
,
Kang
,
T.
,
Yoon
,
K. J.
,
Lee
,
J. O.
, and
Park
,
J. K.
,
2010
, “
Modeling and Design of H∞ Controller for Piezoelectric Actuator LIPCA
,”
J. Bion. Eng.
,
7
(
2
), pp.
168
174
.10.1016/S1672-6529(09)60198-0
19.
Yue
,
D.
, and
Lam
,
J.
,
2004
, “
Suboptimal Robust Mixed H2/H∞ Controller Design for Uncertain Descriptor Systems With Distributed Delays
,”
Comput. Math. Appl.
,
47
(
6–7
), pp.
1041
1055
.10.1016/S0898-1221(04)90085-5
20.
Li
,
T.-H.
,
Tsai
,
S. H.
,
Lee
,
J. Z.
,
Hsiao
,
M. Y.
, and
Chao
,
C. H.
,
2008
, “
Robust H∞ Fuzzy Control for a Class of Uncertain Discrete Fuzzy Bilinear Systems
,”
IEEE Trans. Syst., Man, Cybern., Part B: Cybern.
,
38
(
2
), pp.
510
527
.10.1109/TSMCB.2007.914706
21.
El-Mahallawy
,
A. A.
,
Yousefb
,
H. A.
,
El-Singabyc
,
M. I.
,
Madkoura
,
A. A.
, and
Youssefa
,
A. M.
,
2011
, “
Robust Flight Control System Design Using H∞ Loop-Shaping and Recessive Trait Crossover Genetic Algorithm
,”
Expert Syst. Appl.
,
38
(
1
), pp.
169
174
.10.1016/j.eswa.2010.06.035
22.
Alavi
,
S. M. M.
, and
Hayes
,
M. J.
,
2009
, “
Robust Active Queue Management Design: A Loop-Shaping Approach
,”
Comput. Commun.
,
32
(
2
), pp.
324
331
.10.1016/j.comcom.2008.11.004
23.
Patra
,
S.
,
Sen
,
S.
, and
Ray
,
G.
,
2008
, “
Design of Static H∞ Loop Shaping Controller in Four-Block Framework Using LMI Approach
,”
Automatica
,
44
(
8
), pp.
2214
2220
.10.1016/j.automatica.2008.01.008
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