• Tidak ada hasil yang ditemukan

CONTROLLER DESIGN OF CHUAS CIRCUIT BY SLIDING MODE CONTROL AND LMI

N/A
N/A
Protected

Academic year: 2024

Membagikan "CONTROLLER DESIGN OF CHUAS CIRCUIT BY SLIDING MODE CONTROL AND LMI"

Copied!
10
0
0

Teks penuh

(1)

CONTROLLER DESIGN OF CHUAS CIRCUIT BY SLIDING

MODE CONTROL AND LMI

by Tamaji Tamaji

Submission date: 07-Feb-2019 12:45AM (UTC-0500) Submission ID: 1074346694

File name: LLER_DESIGN_OF_CHUAS_CIRCUIT_BY_SLIDING_MODE_CONTROL_AND_LMI.pdf (153.7K) Word count: 2513

Character count: 10798

(2)
(3)
(4)
(5)
(6)
(7)

76

%

SIMILARIT Y INDEX

71

%

INT ERNET SOURCES

29

%

PUBLICAT IONS

4

%

ST UDENT PAPERS

1

58

%

2

5

%

3

5

%

4

3

%

5

2

%

CONTROLLER DESIGN OF CHUAS CIRCUIT BY SLIDING MODE CONTROL AND LMI

ORIGINALITY REPORT

PRIMARY SOURCES

elektro.widyakartika.ac.id

Int ernet Source

Tiwari, Juhi. "Dynamic sliding mode control of four dimensional hyperchaotic systems using LMI", 2014 International Conference on

Advances in Engineering & Technology Research (ICAETR - 2014), 2014.

Publicat ion

www.docstoc.com

Int ernet Source

Hua Wang, Zheng-zhi Han, Qi-yue Xie, Wei Zhang. "Sliding mode control for chaotic systems based on LMI", Communications in Nonlinear Science and Numerical Simulation, 2009

Publicat ion

Wang, H.. "Sliding mode control for chaotic systems based on LMI", Communications in Nonlinear Science and Numerical Simulation,

(8)

6

1

%

7

1

%

8

< 1

%

9

< 1

%

10

< 1

%

11

< 1

%

12

< 1

%

200904

Publicat ion

Saleh Mobayen, Dumitru Baleanu, Fairouz Tchier. "Second-order fast terminal sliding mode control design based on LMI for a class of non-linear uncertain systems and its

application to chaotic systems", Journal of Vibration and Control, 2016

Publicat ion

Jay P Singh, Binoy K Roy. "Second order

adaptive time varying sliding mode control for synchronization of hidden chaotic orbits in a new uncertain 4-D conservative chaotic

system", Transactions of the Institute of Measurement and Control, 2017

Publicat ion

www.mlab.ice.uec.ac.jp

Int ernet Source

lincs.delen.polito.it

Int ernet Source

www7.in.tum.de

Int ernet Source

pt.scribd.com

Int ernet Source

tel.archives-ouvertes.fr

Int ernet Source

(9)

13

< 1

%

Exclude quotes Of f Exclude bibliography Of f

Exclude matches Of f

Evis Këllezi. "Valuing Bermudan options when asset returns are Lévy processes", Quantitative Finance, 2/1/2004

Publicat ion

(10)

FINAL GRADE

/0

CONTROLLER DESIGN OF CHUAS CIRCUIT BY SLIDING MODE CONTROL AND LMI

GRADEMARK REPORT

GENERAL COMMENTS

Instructor

PAGE 1 PAGE 2 PAGE 3 PAGE 4 PAGE 5

Referensi

Dokumen terkait

In this paper, a control parameter selection algorithm is proposed by genetic algorithm to select the gain switching (k) and sliding surface constant parameter (s) so that

Umoh Robust Global Synchronization of a Hyperchaotic System with Wide Parameter Space via Integral Sliding Mode Control Technique Discussion When the ISMC laws are applied

Rolande Tsapla Fotsa Microcontroller Implementation, Chaos Control, Synchronization and Antisynchronization of Josephson Junction Model Therefore, the hidden chaotic attractor found

A sliding mode algorithm for antilock braking/traction control of EVs  Minh Ngoc Vu  Minh Cao Ta Center for Technology Innovation, Hanoi University of Science and Technology,

In this study, we propose a novel adaptive robust slid- ing mode controller for position tracking control of robot manipulators ensuring a prescribed asymptotic performance.. A

1 New integral fast terminal sliding mode I-FTSM manifolds are introduced to achieve fast convergence and high accuracy of synchronization; 2 The combination of the new I-FTSM and the

A nonlinear adaptive back-stepping controller design based on the fourth order power system model including the unknown parameters for multi-machine power systems proposed in [16].. In

8: Changes in state variable G t after applying controller The results of this section show that back stepping method based on sliding mode observer proposed in this paper is able to