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Huanhuan Yuan

Researcher at Beijing Institute of Technology

Publications -  8
Citations -  535

Huanhuan Yuan is an academic researcher from Beijing Institute of Technology. The author has contributed to research in topics: Optimal control & Control system. The author has an hindex of 5, co-authored 6 publications receiving 349 citations. Previous affiliations of Huanhuan Yuan include Yanshan University.

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Resilient Control of Networked Control System Under DoS Attacks: A Unified Game Approach

TL;DR: Considering the attack-induced packet dropout, optimal control strategies with multitasking and central-tasking structures are developed using game theory in the delta domain, respectively, and a optimality criteria and algorithms for both cyber defenders and DoS attackers are proposed.
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Optimal control for networked control systems with disturbances: a delta operator approach

TL;DR: This study deals with the optimal control problem for a class of delta-domain networked control systems subjected to both matched and unmatched disturbances, and an upper bound for the ϵ -optimum is provided explicitly, and convex optimisation algorithms are given to compute such upper bound.
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Resilient Control of Wireless Networked Control System Under Denial-of-Service Attacks: A Cross-Layer Design Approach

TL;DR: The resilient control problem is investigated for a class of wireless networked control systems (WNCS) under a denial-of-service (DoS) attack and the coupled-design problem is solved which aims to drive the underlying control performance to the desired security region by dynamically manipulating the cyber-layer pricing parameters.
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Resilient State Estimation of Cyber-Physical System With Multichannel Transmission Under DoS Attack

TL;DR: A myopic policy and a long-term online interaction strategy under varying network environment are investigated and compared by solving a two-player zero-sum game and a Markov game, respectively.
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Multi-tasking optimal control of networked control systems: A delta operator approach

TL;DR: The multi-tasking optimal control strategies are developed and the upper bound for the e-Nash equilibrium is provided explicitly and some simulation results on the two-area load frequency control system are given to show the validity and applicability of the proposed method.