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Xiuyu Zhang

Researcher at Electric Power University

Publications -  86
Citations -  1272

Xiuyu Zhang is an academic researcher from Electric Power University. The author has contributed to research in topics: Nonlinear system & Backstepping. The author has an hindex of 18, co-authored 60 publications receiving 860 citations. Previous affiliations of Xiuyu Zhang include Beihang University & Northeast Dianli University.

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Adaptive Estimated Inverse Output-Feedback Quantized Control for Piezoelectric Positioning Stage

TL;DR: The quantized issue due to the use of computer is addressed by introducing a linear time-varying quantizer model where the quantizer parameters can be estimated on-line and the fuzzy approximator is used to avoid the identification of the parameters in the piezoelectric positioning stage.
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Decentralized Adaptive Neural Approximated Inverse Control for a Class of Large-Scale Nonlinear Hysteretic Systems With Time Delays

TL;DR: A decentralized neural adaptive dynamic surface approximated inverse control (DNADSAIC) scheme for a class of large-scale time-delay systems with hysteresis nonlinearities as input and the analysis of stabilities guarantees all the signals of the closed-loop systems are semiglobally uniformly ultimately bounded.
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Remaining Useful Life Prediction of Lithium-Ion Batteries Using Support Vector Regression Optimized by Artificial Bee Colony

TL;DR: A battery degradation model for estimating battery working state and maintaining and replacing equipment in a timely manner to ensure a stable operation is built using experimental historical data.
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Adaptive Neural Network Dynamic Surface Control for a Class of Time-Delay Nonlinear Systems With Hysteresis Inputs and Dynamic Uncertainties

TL;DR: It is proved that the proposed scheme can guarantee semiglobal stability of the closed-loop system and achieves the L∞ performance of the tracking error.
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Nonlinear Control of Systems Preceded by Preisach Hysteresis Description: A Prescribed Adaptive Control Approach

TL;DR: This paper will attempt to demonstrate a solution in which a stable controller can be designed for nonlinear systems that couple with Preisach hysteresis model, by utilizing the so-calledpreisach plane, which is reexpressed into a control-oriented form.