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Xiaoguang Zhang

Researcher at North China University of Technology

Publications -  72
Citations -  2410

Xiaoguang Zhang is an academic researcher from North China University of Technology. The author has contributed to research in topics: Model predictive control & Torque. The author has an hindex of 11, co-authored 46 publications receiving 1233 citations. Previous affiliations of Xiaoguang Zhang include Harbin Institute of Technology.

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Nonlinear Speed Control for PMSM System Using Sliding-Mode Control and Disturbance Compensation Techniques

TL;DR: In this article, a sliding-mode control method based on one novel slidingmode reaching law (SMRL) is presented, which allows chattering reduction on control input while maintaining high tracking performance of the controller.
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Deadbeat Predictive Current Control of Permanent-Magnet Synchronous Motors with Stator Current and Disturbance Observer

TL;DR: A composite control method combining the DPCC part and current prediction and feedforward compensation part based on SCDO, called DPCC + SCDO method, is developed and a novel sliding-mode exponential reaching law is proposed to further improve the performance of the proposed current control approach.
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Model Predictive Current Control for PMSM Drives With Parameter Robustness Improvement

TL;DR: Simulation and experimental results both show that the proposed method can effectively eliminate the influence of the parameter mismatches on the control performance and reduce the parameter sensitivity of the MPCC method.
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Double Vectors Model Predictive Torque Control Without Weighting Factor Based on Voltage Tracking Error

TL;DR: An improved MPTC algorithm without the use of weighting factor is proposed, based on the deadbeat direct torque and flux control, where the reference voltage vector is predicted to avoid testing all feasible voltage vectors, hence reducing the computation burden of conventional MPTC.
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A New Reaching Law for Antidisturbance Sliding-Mode Control of PMSM Speed Regulation System

TL;DR: In this article, in order to optimize the dynamic performance of the permanent magnet synchronous motor (PMSM) speed regulation system, a nonlinear speed-control algorithm for the PMSM control systems using sliding-mode control is developed.