Evolution of anchor chain tension over time under event-triggered control scheme.

<p>Evolution of anchor chain tension over time under event-triggered control scheme.</p>

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Príomhchruthaitheoir: Chengliang Chao (22676651) (author)
Rannpháirtithe: Yang Liu (4829) (author), Zongkai Wang (20488603) (author)
Foilsithe / Cruthaithe: 2025
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author Chengliang Chao (22676651)
author2 Yang Liu (4829)
Zongkai Wang (20488603)
author2_role author
author
author_facet Chengliang Chao (22676651)
Yang Liu (4829)
Zongkai Wang (20488603)
author_role author
dc.creator.none.fl_str_mv Chengliang Chao (22676651)
Yang Liu (4829)
Zongkai Wang (20488603)
dc.date.none.fl_str_mv 2025-11-24T18:33:05Z
dc.identifier.none.fl_str_mv 10.1371/journal.pone.0337290.g008
dc.relation.none.fl_str_mv https://figshare.com/articles/figure/Evolution_of_anchor_chain_tension_over_time_under_event-triggered_control_scheme_/30697517
dc.rights.none.fl_str_mv CC BY 4.0
info:eu-repo/semantics/openAccess
dc.subject.none.fl_str_mv Biophysics
Biotechnology
Biological Sciences not elsewhere classified
Mathematical Sciences not elsewhere classified
unique operating environments
strategic parameter scheduling
platform &# 8217
multiple performance metrics
extreme performance optimization
traditional control methods
rigorous stability analysis
real fop system
fault handling capabilities
edf dual finite
triggered dynamic mechanism
time convergence paradigm
control system
time convergence
fop systems
driven mechanism
control design
tolerant strategy
time learning
study proposes
study introduces
study designs
results demonstrate
preset finite
often ineffective
offline phase
nonlinear error
mixed uncertainties
directly impacts
based generator
asymptotic stability
achieve finite
dc.title.none.fl_str_mv Evolution of anchor chain tension over time under event-triggered control scheme.
dc.type.none.fl_str_mv Image
Figure
info:eu-repo/semantics/publishedVersion
image
description <p>Evolution of anchor chain tension over time under event-triggered control scheme.</p>
eu_rights_str_mv openAccess
id Manara_e1c89f22a1913214c132b852721986e4
identifier_str_mv 10.1371/journal.pone.0337290.g008
network_acronym_str Manara
network_name_str ManaraRepo
oai_identifier_str oai:figshare.com:article/30697517
publishDate 2025
repository.mail.fl_str_mv
repository.name.fl_str_mv
repository_id_str
rights_invalid_str_mv CC BY 4.0
spelling Evolution of anchor chain tension over time under event-triggered control scheme.Chengliang Chao (22676651)Yang Liu (4829)Zongkai Wang (20488603)BiophysicsBiotechnologyBiological Sciences not elsewhere classifiedMathematical Sciences not elsewhere classifiedunique operating environmentsstrategic parameter schedulingplatform &# 8217multiple performance metricsextreme performance optimizationtraditional control methodsrigorous stability analysisreal fop systemfault handling capabilitiesedf dual finitetriggered dynamic mechanismtime convergence paradigmcontrol systemtime convergencefop systemsdriven mechanismcontrol designtolerant strategytime learningstudy proposesstudy introducesstudy designsresults demonstratepreset finiteoften ineffectiveoffline phasenonlinear errormixed uncertaintiesdirectly impactsbased generatorasymptotic stabilityachieve finite<p>Evolution of anchor chain tension over time under event-triggered control scheme.</p>2025-11-24T18:33:05ZImageFigureinfo:eu-repo/semantics/publishedVersionimage10.1371/journal.pone.0337290.g008https://figshare.com/articles/figure/Evolution_of_anchor_chain_tension_over_time_under_event-triggered_control_scheme_/30697517CC BY 4.0info:eu-repo/semantics/openAccessoai:figshare.com:article/306975172025-11-24T18:33:05Z
spellingShingle Evolution of anchor chain tension over time under event-triggered control scheme.
Chengliang Chao (22676651)
Biophysics
Biotechnology
Biological Sciences not elsewhere classified
Mathematical Sciences not elsewhere classified
unique operating environments
strategic parameter scheduling
platform &# 8217
multiple performance metrics
extreme performance optimization
traditional control methods
rigorous stability analysis
real fop system
fault handling capabilities
edf dual finite
triggered dynamic mechanism
time convergence paradigm
control system
time convergence
fop systems
driven mechanism
control design
tolerant strategy
time learning
study proposes
study introduces
study designs
results demonstrate
preset finite
often ineffective
offline phase
nonlinear error
mixed uncertainties
directly impacts
based generator
asymptotic stability
achieve finite
status_str publishedVersion
title Evolution of anchor chain tension over time under event-triggered control scheme.
title_full Evolution of anchor chain tension over time under event-triggered control scheme.
title_fullStr Evolution of anchor chain tension over time under event-triggered control scheme.
title_full_unstemmed Evolution of anchor chain tension over time under event-triggered control scheme.
title_short Evolution of anchor chain tension over time under event-triggered control scheme.
title_sort Evolution of anchor chain tension over time under event-triggered control scheme.
topic Biophysics
Biotechnology
Biological Sciences not elsewhere classified
Mathematical Sciences not elsewhere classified
unique operating environments
strategic parameter scheduling
platform &# 8217
multiple performance metrics
extreme performance optimization
traditional control methods
rigorous stability analysis
real fop system
fault handling capabilities
edf dual finite
triggered dynamic mechanism
time convergence paradigm
control system
time convergence
fop systems
driven mechanism
control design
tolerant strategy
time learning
study proposes
study introduces
study designs
results demonstrate
preset finite
often ineffective
offline phase
nonlinear error
mixed uncertainties
directly impacts
based generator
asymptotic stability
achieve finite