Time convergence estimation of a perturbed double integrator: Family of continuous sliding mode based output feedback synthesis

In this paper mechanical systems of relative degree two, i.e. a perturbed double integrator is under study. A sliding mode based algorithm is under study using strict non smooth Lyapunov functions, such that compensation of growing perturbations together with state variables is shown. Indeed, the we...

Full description

Saved in:
Bibliographic Details
Published in2013 European Control Conference (ECC) pp. 3764 - 3769
Main Author Santiesteban, Raul
Format Conference Proceeding
LanguageEnglish
Published EUCA 01.07.2013
Subjects
Online AccessGet full text
DOI10.23919/ECC.2013.6669641

Cover

Abstract In this paper mechanical systems of relative degree two, i.e. a perturbed double integrator is under study. A sliding mode based algorithm is under study using strict non smooth Lyapunov functions, such that compensation of growing perturbations together with state variables is shown. Indeed, the well known twisting algorithm and a generalized smooth family of this algorithm are considered. A strict non-smooth Lyapunov function is proposed allowing to design tuning rules for the gains of a family of controllers such that global exact finite time stability of the origin is shown. The proposed methodology estimate an upper bound for convergence time of the closed loop system in spite of growing perturbation with respect to the state. To illustrate performance and robustness properties a numerical experiment is presented, using one-link pendulum as a test bed.
AbstractList In this paper mechanical systems of relative degree two, i.e. a perturbed double integrator is under study. A sliding mode based algorithm is under study using strict non smooth Lyapunov functions, such that compensation of growing perturbations together with state variables is shown. Indeed, the well known twisting algorithm and a generalized smooth family of this algorithm are considered. A strict non-smooth Lyapunov function is proposed allowing to design tuning rules for the gains of a family of controllers such that global exact finite time stability of the origin is shown. The proposed methodology estimate an upper bound for convergence time of the closed loop system in spite of growing perturbation with respect to the state. To illustrate performance and robustness properties a numerical experiment is presented, using one-link pendulum as a test bed.
Author Santiesteban, Raul
Author_xml – sequence: 1
  givenname: Raul
  surname: Santiesteban
  fullname: Santiesteban, Raul
  email: raulcos@mexico.com
  organization: Dept. of Metal-Mec., Instituo Tecnol. de Culiacan, Culiacan, Mexico
BookMark eNotkMFKAzEYhCMoqHUfQLzkBVqTTTZpvMnSVqHgpZ5LsvlTo7tJSbJCT766KxYGvsvMwMwtugwxAEL3lCxqpqh6XLXtoiaULYQQSnB6gSoll4ywSUrU6hpVOX8SQqiUVDTNDfrZ-QFwF8M3pAOEDjDk4gddfAw4OqzxEVIZkwGLbRxND9iHAoekS0xPeK0H35_-jFNF8WGMY8a599aHAx6iBWx0nqJxLMexYAdgje6-cD6F8gHZ5zt05XSfoTpzht7Xq137Mt--bV7b5-3cU9mUuVtKZknHOTFKguFayw6ocZaSphaGMUoIk6ZxE7mVonGMGSed4JwR1RE2Qw__vR4A9sc0TUyn_fkm9gtLNmHT
ContentType Conference Proceeding
DBID 6IE
6IL
CBEJK
RIE
RIL
DOI 10.23919/ECC.2013.6669641
DatabaseName IEEE Electronic Library (IEL) Conference Proceedings
IEEE Xplore POP ALL
IEEE Xplore All Conference Proceedings
IEEE Electronic Library (IEL)
IEEE Proceedings Order Plans (POP All) 1998-Present
DatabaseTitleList
Database_xml – sequence: 1
  dbid: RIE
  name: IEEE Electronic Library (IEL)
  url: https://proxy.k.utb.cz/login?url=https://ieeexplore.ieee.org/
  sourceTypes: Publisher
DeliveryMethod fulltext_linktorsrc
Discipline Engineering
EISBN 9783033039629
3033039626
EndPage 3769
ExternalDocumentID 6669641
Genre orig-research
GroupedDBID 6IE
6IF
6IK
6IL
6IN
AAJGR
AAWTH
ADFMO
ALMA_UNASSIGNED_HOLDINGS
BEFXN
BFFAM
BGNUA
BKEBE
BPEOZ
CBEJK
IEGSK
IERZE
OCL
RIE
RIL
ID FETCH-LOGICAL-i175t-f873d0c440b97eb4aa7ce1bfd10526b3310037b5f1004d765f33bf7f644309c03
IEDL.DBID RIE
IngestDate Wed Aug 27 02:49:57 EDT 2025
IsPeerReviewed false
IsScholarly false
Language English
LinkModel DirectLink
MergedId FETCHMERGED-LOGICAL-i175t-f873d0c440b97eb4aa7ce1bfd10526b3310037b5f1004d765f33bf7f644309c03
PageCount 6
ParticipantIDs ieee_primary_6669641
PublicationCentury 2000
PublicationDate 2013-July
PublicationDateYYYYMMDD 2013-07-01
PublicationDate_xml – month: 07
  year: 2013
  text: 2013-July
PublicationDecade 2010
PublicationTitle 2013 European Control Conference (ECC)
PublicationTitleAbbrev ECC
PublicationYear 2013
Publisher EUCA
Publisher_xml – name: EUCA
SSID ssj0001771655
Score 1.5596648
Snippet In this paper mechanical systems of relative degree two, i.e. a perturbed double integrator is under study. A sliding mode based algorithm is under study using...
SourceID ieee
SourceType Publisher
StartPage 3764
SubjectTerms Algorithm design and analysis
Closed loop systems
Convergence
Equations
Estimation
Lyapunov function
Lyapunov methods
Second-order sliding modes
Stability analysis
Title Time convergence estimation of a perturbed double integrator: Family of continuous sliding mode based output feedback synthesis
URI https://ieeexplore.ieee.org/document/6669641
hasFullText 1
inHoldings 1
isFullTextHit
isPrint
link http://utb.summon.serialssolutions.com/2.0.0/link/0/eLvHCXMwjV09T8MwFLRKJ1j4aBHf8sBIUqeO44S1alUhFTFQqVsV289SVZRUTTLAwl_HL-kHIAa2KEpky4lyF7-7e4TcqxQS9-2NPcs0eKHVwlPGRJ7j9g5sWawZR7_z5DkaT8OnmZi1yMPOCwMAtfgMfDysa_km1xVulfUc1U4idKkfyDhqvFr7_RTpmL8QTeGyz5Mg6Q0HA9RucX9z348GKjV-jI7JZDtyIxtZ-lWpfP3xK5Txv1M7Id29U4--7DDolLQgOyNH30IGO-QTXR60VpfXRkugGKzROBZpbmlKV7B2wKPAUJNX6g3oNkMiXz_SpjMGXoiq9kVW5VVBHTnF8Sj20aEIhIbmVbmqSmrdTFSql7R4zxy3LBZFl0xHw9fB2Nu0XfAWjkuUno0lN0yHIVOJBBWmqdQQKGsCzIZRHEsCXCphMWzOyEhYzpWV1jErzhL3cM9JO8szuCAURMxsHIdCOhR03DPpp0a7f8qApRxi0Jekg0s5XzXJGvPNKl79ffqaHPbrZhQolr0h7XJdwa2jBKW6q9-FL_kGuZ8
linkProvider IEEE
linkToHtml http://utb.summon.serialssolutions.com/2.0.0/link/0/eLvHCXMwjV09T8MwFLSqMgALHy3iGw-MJE1qu0lYq1YF2oqhlbpVsf0sVUVJ1SYDLPx1_JJ-AGJgi6JEtpwod_G7u0fIvYwhst_e0DGeAocbJRypdcux3N6CrRcqj6HfeTBs9cb8eSImFfKw9cIAQCE-AxcPi1q-TlWOW2UNS7WjFrrU9wTnXJRurd2OSmC5vxBl6bLJIj9qdNptVG8xd33njxYqBYJ0j8hgM3YpHJm7eSZd9fErlvG_kzsm9Z1Xj75uUeiEVCA5JYffYgZr5BN9HrTQlxdWS6AYrVF6FmlqaEwXsLTQI0FTnebyDegmRSJdPtKyNwZeiLr2WZKn-YpaeorjUeykQxEKNU3zbJFn1NiZyFjN6eo9sexyNVvVybjbGbV7zrrxgjOzbCJzTBgw7SnOPRkFIHkcBwp8abSP6TCSYVGABVIYjJvTQUsYxqQJjOVWzIvs4z0j1SRN4JxQEKFnwpCLwOKgZZ9RM9bK_lX6XswgBHVBariU00WZrTFdr-Ll36fvyH5vNOhP-0_Dlyty0CxaU6B09ppUs2UON5YgZPK2eC--ANrtvOw
openUrl ctx_ver=Z39.88-2004&ctx_enc=info%3Aofi%2Fenc%3AUTF-8&rfr_id=info%3Asid%2Fsummon.serialssolutions.com&rft_val_fmt=info%3Aofi%2Ffmt%3Akev%3Amtx%3Abook&rft.genre=proceeding&rft.title=2013+European+Control+Conference+%28ECC%29&rft.atitle=Time+convergence+estimation+of+a+perturbed+double+integrator%3A+Family+of+continuous+sliding+mode+based+output+feedback+synthesis&rft.au=Santiesteban%2C+Raul&rft.date=2013-07-01&rft.pub=EUCA&rft.spage=3764&rft.epage=3769&rft_id=info:doi/10.23919%2FECC.2013.6669641&rft.externalDocID=6669641