IEEE Transactions on Neural Networks and Learning Systems · 2019 · 78 citations · 39 references
The distributed dissipative state estimation issue of Markov jump genetic regulatory networks subject to round-robin scheduling is investigated in this paper. The system parameters randomly change in the light of a Markov chain. Each node in sensor networks communicates with its neighboring nodes in view of the prescribed network topology graph. The round-robin scheduling is employed to arrange the transmission order to lessen the likelihood of the occurrence of data collisions. The main goal of the work is to design a compatible distributed estimator to assure that the distributed error system is strictly (Λ <sub>1</sub>,Λ <sub>2</sub>,Λ <sub>3</sub>) - γ -stochastically dissipative. By applying the Lyapunov stability theory and a modified matrix decoupling way, sufficient conditions are derived by solving some convex optimization problems. An illustrative example is given to verify the validity of the provided method.
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Light-generated oligonucleotide arrays for rapid DNA sequence analysis.
Ann C. Pease, Dennis Solas, Elizabeth J. Sullivan et al. · Proceedings of the National Academy of Sciences · 1994 · 1.4K citations · Full text
Dna, Engineering, Genetics +18
Extended Dissipative State Estimation for Markov Jump Neural Networks With Unreliable Links
Hao Shen, Yanzheng Zhu, Lixian Zhang et al. · IEEE Transactions on Neural Networks and Learning Systems · 2016 · 479 citations
State Estimation, Stochastic Hybrid System, Dissipativity-based State Estimation +14