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Hao Shen

Researcher at Anhui University of Technology

Publications -  296
Citations -  12245

Hao Shen is an academic researcher from Anhui University of Technology. The author has contributed to research in topics: Computer science & Control theory. The author has an hindex of 54, co-authored 225 publications receiving 8681 citations. Previous affiliations of Hao Shen include Nanjing University of Science and Technology & Yeungnam University.

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Dissipativity-based state estimation for Markov jump discrete-time neural networks with unreliable communication links

TL;DR: This paper investigates the problem of dissipativity-based state estimator design for Markov jump discrete-time neural networks, where the communication links between the neural network and estimator are assumed to be imperfect.
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Non-fragile mixed H∞ and passive asynchronous state estimation for Markov jump neural networks with randomly occurring uncertainties and sensor nonlinearity

TL;DR: By using an optimize matrix decoupling approach and Lyapunov-Krasovskii methodology, some sufficient conditions for the existence of non-fragile mixed H ∞ and passive asynchronous state estimator are proposed.
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Coding-decoding-based sliding mode control for networked persistent dwell-time switched systems

TL;DR: The sliding mode control (SMC) problem for a class of discrete‐time networked switched systems under the coding‐decoding communication protocol (CDCP) is studied and the effectiveness and feasibility of the proposed SMC scheme are demonstrated by a numerical example.
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Robust ℋ ∞ tracking control for uncertain Markovian jumping systems with interval time-varying delay

TL;DR: In this article, the problem of robust H∞ tracking control for a class of uncertain Markovian jump systems with interval time-varying delay is investigated and an augmented Lyapunov-Krasovskii functional with triple integral term is investigated, achieving delay-dependent conditions for the existence of desired controller.
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An Improved Result on $H_{\infty }$ Load Frequency Control for Power Systems With Time Delays

TL;DR: This article explores the LFC problem of power systems in consideration of constant, and time-varying delays using the Lyapunov stability theory, and an improved inequality technique, and shows certain advantages of the method presented in this article over the existing literature.