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Fengling Han

Researcher at RMIT University

Publications -  140
Citations -  3404

Fengling Han is an academic researcher from RMIT University. The author has contributed to research in topics: Sliding mode control & Terminal sliding mode. The author has an hindex of 22, co-authored 111 publications receiving 2540 citations. Previous affiliations of Fengling Han include Central Queensland University & Melbourne Institute of Technology.

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Chattering free full-order sliding-mode control

TL;DR: A systematic design method of full-order sliding-mode control for nonlinear systems is presented, which allows both the chattering and singularity problems to be resolved.
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On nonsingular terminal sliding-mode control of nonlinear systems

TL;DR: A global nonsingular terminal sliding-mode control strategy for nonlinear systems is developed and it is shown that the proposed control strategy can eliminate the singularity, while guaranteeing the finite-time reachability of the systems to the terminal slide-mode surface.
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Generating 3-D multi-scroll chaotic attractors: A hysteresis series switching method

TL;DR: A two-dimensional Poincare return map is rigorously derived and its maximum Lyapunov exponent are applied to verifying the chaotic behaviors of the generated 3-D multi-scroll chaotic attractors.
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High-Order Terminal Sliding-Mode Observer for Parameter Estimation of a Permanent-Magnet Synchronous Motor

TL;DR: This paper proposes a terminal sliding-mode (TSM) observer for estimating the immeasurable mechanical parameters of permanent-magnet synchronous motors (PMSMs) used for complex mechanical systems and shows the effectiveness of the proposed method.
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Public and private blockchain in construction business process and information integration

TL;DR: This paper aims to explore the feasibility of applying both public blockchain and private blockchain technologies in the construction industry using two industry cases and provides insights to researchers and practitioners regarding the adoption of blockchain technology, especially in construction industry.