Attack-Resilient State Estimation for Uncertain Complex Networks with Fading Measurements and Encoding-Decoding Strategy under Bitrate Constraints

In this paper, the attack-resilient state estimation problem is investigated for uncertain complex networks (UCNs) with fading measurements and encoding-decoding scheme under bitrate constrains (EDSBC). First of all, the phenomenon of fading measurements is described by the attenuation coefficient m...

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Vydáno v:Proceedings (IEEE ... International Conference on Control Science and Systems Engineering. Online) s. 325 - 330
Hlavní autoři: Cao, Zhipeng, Jia, Chaoqing, Hu, Jun, Luo, Ruonan
Médium: Konferenční příspěvek
Jazyk:angličtina
Vydáno: IEEE 16.06.2023
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ISSN:2832-1871
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Abstract In this paper, the attack-resilient state estimation problem is investigated for uncertain complex networks (UCNs) with fading measurements and encoding-decoding scheme under bitrate constrains (EDSBC). First of all, the phenomenon of fading measurements is described by the attenuation coefficient matrix governed by uniform distributed random variables within a given interval. Subsequently, the false data injection attack (FDIA) is modeled by a bounded signal sequence and an encoding-decoding scheme subject to bitrate constrains is employed to schedule data through a bandwidth-limited channel. An EDSBC-dependent state estimation method against FDIA and fading measurements for UCNs is developed such that an upper bound of error covariance of state estimation is obtained and the state estimator gain is determined in the sense of mean-square error (MSE). Finally, the derived results are demonstrated by a numerical simulation with respect to effectiveness and feasibility.
AbstractList In this paper, the attack-resilient state estimation problem is investigated for uncertain complex networks (UCNs) with fading measurements and encoding-decoding scheme under bitrate constrains (EDSBC). First of all, the phenomenon of fading measurements is described by the attenuation coefficient matrix governed by uniform distributed random variables within a given interval. Subsequently, the false data injection attack (FDIA) is modeled by a bounded signal sequence and an encoding-decoding scheme subject to bitrate constrains is employed to schedule data through a bandwidth-limited channel. An EDSBC-dependent state estimation method against FDIA and fading measurements for UCNs is developed such that an upper bound of error covariance of state estimation is obtained and the state estimator gain is determined in the sense of mean-square error (MSE). Finally, the derived results are demonstrated by a numerical simulation with respect to effectiveness and feasibility.
Author Hu, Jun
Jia, Chaoqing
Luo, Ruonan
Cao, Zhipeng
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  givenname: Chaoqing
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  organization: School of Automation Harbin University of Science and Technology,Harbin,China
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  givenname: Ruonan
  surname: Luo
  fullname: Luo, Ruonan
  email: 21209000004@stu.hrbust.edu.cn
  organization: Harbin University of Science and Technology,Department of Mathematics,Harbin,China
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Snippet In this paper, the attack-resilient state estimation problem is investigated for uncertain complex networks (UCNs) with fading measurements and...
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StartPage 325
SubjectTerms Bit rate
bitrate constrains
Complex networks
cyber-attack
encoding-decoding scheme
Fading channels
Measurement uncertainty
Schedules
state estimation
Systems engineering and theory
uncertain complex networks
Upper bound
Title Attack-Resilient State Estimation for Uncertain Complex Networks with Fading Measurements and Encoding-Decoding Strategy under Bitrate Constraints
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