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      KCI등재 SCIE SCOPUS

      Input-to-state Stability of Impulsive Stochastic Nonlinear Systems Driven by G-Brownian Motion

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      https://www.riss.kr/link?id=A107270593

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      다국어 초록 (Multilingual Abstract)

      This paper studies the input-to-state stability (ISS), stochastic input-to-state stability (SISS) and eλt-weighted input-to-state stability (eλt-ISS) of impulsive stochastic nonlinear systems driven by G-Brownian motion (IGSNSs). If the continuous s...

      This paper studies the input-to-state stability (ISS), stochastic input-to-state stability (SISS) and eλt-weighted input-to-state stability (eλt-ISS) of impulsive stochastic nonlinear systems driven by G-Brownian motion (IGSNSs). If the continuous stochastic systems are not ISS, the impulsive effects can stabilize the system for the fixed dwell-time sequences. However, if the continuous stochastic systems are ISS, the hybrid system can achieve ISS for destabilizing impulses with upper bound of the fixed dwell-time. Moreover, the average dwell-time condition is generalized to guarantee the ISS for IGSNSs based on G-Lyapunov method. Finally, an example is provided to illustrate the effectiveness of theoretical results.

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      참고문헌 (Reference)

      1 V. Lakshmikantham, "Theory of Impulsive Differential Equations" World Scientific 1989

      2 Z. Guan, "Synchronization of complex dynamical networks with time-varying delays via impulsive distributed control" 57 (57): 2182-2195, 2010

      3 S. Peng, "Survey on normal distributions, central limit theorem, Brownian motion and the related stochastic calculus under sublinear expectations" 52 (52): 1391-1411, 2009

      4 X. Li, "Stopping times and related Itös calculus with G-Brownian motion" 121 (121): 1492-1508, 2011

      5 P. Zhao, "Stochastic input-to-state stability of switched stochastic nonlinear systems" 48 (48): 2569-2576, 2012

      6 Ying Cui, "Stochastic Stability for a Class of Discrete-time Switched Neural Networks with Stochastic Noise and Time-varying Mixed Delays" 제어·로봇·시스템학회 16 (16): 158-167, 2018

      7 X. Mao, "Stochastic Differential Equations and Applications" Ellis Horwood 1997

      8 J. Cheng, "Static output feedback control of switched systems with quantization : A nonhomogeneous sojourn probability approach" 29 (29): 5992-6005, 2019

      9 Y. Ren, "Stabilization of stochastic differential equations driven by G-Brownian motion with feedback control based on discrete-time state observation" 95 (95): 146-151, 2018

      10 W. Ren, "Stability analysis of impulsive stochastic nonlinear systems" 62 (62): 4791-4797, 2017

      1 V. Lakshmikantham, "Theory of Impulsive Differential Equations" World Scientific 1989

      2 Z. Guan, "Synchronization of complex dynamical networks with time-varying delays via impulsive distributed control" 57 (57): 2182-2195, 2010

      3 S. Peng, "Survey on normal distributions, central limit theorem, Brownian motion and the related stochastic calculus under sublinear expectations" 52 (52): 1391-1411, 2009

      4 X. Li, "Stopping times and related Itös calculus with G-Brownian motion" 121 (121): 1492-1508, 2011

      5 P. Zhao, "Stochastic input-to-state stability of switched stochastic nonlinear systems" 48 (48): 2569-2576, 2012

      6 Ying Cui, "Stochastic Stability for a Class of Discrete-time Switched Neural Networks with Stochastic Noise and Time-varying Mixed Delays" 제어·로봇·시스템학회 16 (16): 158-167, 2018

      7 X. Mao, "Stochastic Differential Equations and Applications" Ellis Horwood 1997

      8 J. Cheng, "Static output feedback control of switched systems with quantization : A nonhomogeneous sojourn probability approach" 29 (29): 5992-6005, 2019

      9 Y. Ren, "Stabilization of stochastic differential equations driven by G-Brownian motion with feedback control based on discrete-time state observation" 95 (95): 146-151, 2018

      10 W. Ren, "Stability analysis of impulsive stochastic nonlinear systems" 62 (62): 4791-4797, 2017

      11 C. Briat, "Stability analysis and stabilization of stochastic linear impulsive, switched and sampled-data systems under dwell-time constraints" 74 (74): 279-287, 2016

      12 Huamin Wang, "Stability Criterion of Linear Delayed Impulsive Differential Systems with Impulse TimeWindows" 제어·로봇·시스템학회 14 (14): 174-180, 2016

      13 E. Sontag, "Smooth stabilization implies coprime factorization" 34 (34): 435-443, 1989

      14 S. He, "Robust H sliding mode controller design of a class of time-delayed discrete conic-type nonlinear systems" 2018

      15 W. Yin, "Quasi-sure exponential stabilization of stochastic systems induced by G-Brownian motion with discrete time feedback control" 474 (474): 276-289, 2019

      16 J. Cheng, "Quantized nonstationary filtering of network-based Markov switching RSNSs: A multiple hierarchical structure Strategy" 2019

      17 W. He, "Pinning-controlled synchronization of delayed neural networks with distributed-delay coupling via impulsive control" 85 : 1-9, 2017

      18 F. Gao, "Pathwise properties and homeomorphic flows for stochastic differential equations driven by G-Brownian motion" 119 (119): 3356-3382, 2009

      19 P. Cheng, "Observerbased asynchronous fault detection for conic-type nonlinear jumping systems and its application to separately excited DC motor" 67 (67): 951-962, 2020

      20 J. Cheng, "Nonstationary l2-l∞ filtering for Markov switching repeated scalar nonlinear systems with randomly occurring nonlinearities" 365 (365): 124714-, 2020

      21 S. Peng, "Nonlinear expectations and stochastic calculus under uncertainty"

      22 S. Peng, "Multi-dimension G-Brownian motion and related stochastic calculus under G-expectation" 118 (118): 2223-2253, 2008

      23 X. Li, "Lyapunov-type conditions and stochastic differential equations driven by G-Brownian motion" 439 (439): 235-255, 2016

      24 S. Dashkovskiy, "Input-to-state stability of nonlinear impulsive systems" 51 (51): 1962-1987, 2013

      25 X. Wu, "Input-to-state stability of impulsive stochastic delayed systems under linear assumptions" 66 : 195-204, 2016

      26 Yan Zhao, "Input-to-state Stability of Nonlinear Positive Systems" 제어·로봇·시스템학회 17 (17): 3058-3068, 2019

      27 T. Yang, "Impulsive stabilization for control and synchronization of chaotic systems : Theory and application to secure communication" 44 (44): 976-988, 1997

      28 B. Liu, "Impulsive consensus for complex dynamical networks with nonidentical nodes and coupling time-delays" 49 (49): 315-338, 2011

      29 T. Yang, "Impulsive Control Theory" Springer-Verlag 2001

      30 S. Peng, "G-Brownian Motion and Related Stochastic Calculus of Itô Type in Stochastic Analysis and Applications" Springer 2007

      31 L. Denis, "Function spaces and capacity related to a sublinear expectation : application to GBrownian motion paths" 34 (34): 139-161, 2011

      32 Y. Ren, "Exponential stability of solutions to impulsive stochastic differential equations driven by G-Brownian motion" 20 (20): 2157-2169, 2015

      33 L. Pan, "Exponential stability of impulsive stochastic functional differential equations" 382 (382): 672-685, 2011

      34 S. He, "Adaptive optimal control for a class of nonlinear systems : The online policy iteration approach" 31 (31): 549-558, 2020

      35 J. Lu, "A unified synchronization criterion for impulsive dynamical networks" 46 (46): 1215-1221, 2010

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      학술지 이력

      학술지 이력
      연월일 이력구분 이력상세 등재구분
      2023 평가예정 해외DB학술지평가 신청대상 (해외등재 학술지 평가)
      2020-01-01 평가 등재학술지 유지 (해외등재 학술지 평가) KCI등재
      2010-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2009-12-29 학회명변경 한글명 : 제어ㆍ로봇ㆍ시스템학회 -> 제어·로봇·시스템학회 KCI등재
      2008-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2007-10-29 학회명변경 한글명 : 제어ㆍ자동화ㆍ시스템공학회 -> 제어ㆍ로봇ㆍ시스템학회
      영문명 : The Institute Of Control, Automation, And Systems Engineers, Korea -> Institute of Control, Robotics and Systems
      KCI등재
      2005-01-01 평가 등재학술지 선정 (등재후보2차) KCI등재
      2004-01-01 평가 등재후보 1차 PASS (등재후보1차) KCI등재후보
      2002-07-01 평가 등재후보학술지 선정 (신규평가) KCI등재후보
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      학술지 인용정보
      기준연도 WOS-KCI 통합IF(2년) KCIF(2년) KCIF(3년)
      2016 1.35 0.6 1.07
      KCIF(4년) KCIF(5년) 중심성지수(3년) 즉시성지수
      0.88 0.73 0.388 0.04
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